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Listed by Classification


2.16 Chiasma and retrochiasmal central nervous system (1168 abstracts found)


94247 Summation of Temporal L-Cone- and M-Cone-Contrast in the Magno- and Parvocellular Retino-Geniculate Systems in Glaucoma
Huchzermeyer C
Investigative Ophthalmology and Visual Science 2021; 62: 17 (IGR: 22-2)


94333 Functional Dynamics of Deafferented Early Visual Cortex in Glaucoma
Prabhakaran GT
Frontiers in neuroscience 2021; 15: 653632 (IGR: 22-2)


94546 Altered spontaneous cortical activity in mild glaucoma: A quantitative EEG study
Samanchi R
Neuroscience Letters 2021; 759: 136036 (IGR: 22-2)


94733 Cerebral Modifications in Glaucoma and Macular Degeneration: Analysis of Current Evidence in Literature and Their Implications on Therapeutic Perspectives
Nuzzi R
Eye and brain 2021; 13: 159-173 (IGR: 22-2)


94333 Functional Dynamics of Deafferented Early Visual Cortex in Glaucoma
Al-Nosairy KO
Frontiers in neuroscience 2021; 15: 653632 (IGR: 22-2)


94546 Altered spontaneous cortical activity in mild glaucoma: A quantitative EEG study
Prakash Muthukrishnan S
Neuroscience Letters 2021; 759: 136036 (IGR: 22-2)


94733 Cerebral Modifications in Glaucoma and Macular Degeneration: Analysis of Current Evidence in Literature and Their Implications on Therapeutic Perspectives
Vitale A
Eye and brain 2021; 13: 159-173 (IGR: 22-2)


94333 Functional Dynamics of Deafferented Early Visual Cortex in Glaucoma
Al-Nosairy KO
Frontiers in neuroscience 2021; 15: 653632 (IGR: 22-2)


94247 Summation of Temporal L-Cone- and M-Cone-Contrast in the Magno- and Parvocellular Retino-Geniculate Systems in Glaucoma
Horn F
Investigative Ophthalmology and Visual Science 2021; 62: 17 (IGR: 22-2)


94546 Altered spontaneous cortical activity in mild glaucoma: A quantitative EEG study
Dada T
Neuroscience Letters 2021; 759: 136036 (IGR: 22-2)


94247 Summation of Temporal L-Cone- and M-Cone-Contrast in the Magno- and Parvocellular Retino-Geniculate Systems in Glaucoma
Lämmer R
Investigative Ophthalmology and Visual Science 2021; 62: 17 (IGR: 22-2)


94333 Functional Dynamics of Deafferented Early Visual Cortex in Glaucoma
Tempelmann C; Wagner M
Frontiers in neuroscience 2021; 15: 653632 (IGR: 22-2)


94546 Altered spontaneous cortical activity in mild glaucoma: A quantitative EEG study
Sihota R
Neuroscience Letters 2021; 759: 136036 (IGR: 22-2)


94247 Summation of Temporal L-Cone- and M-Cone-Contrast in the Magno- and Parvocellular Retino-Geniculate Systems in Glaucoma
Mardin C; Kremers J
Investigative Ophthalmology and Visual Science 2021; 62: 17 (IGR: 22-2)


94333 Functional Dynamics of Deafferented Early Visual Cortex in Glaucoma
Thieme H
Frontiers in neuroscience 2021; 15: 653632 (IGR: 22-2)


94546 Altered spontaneous cortical activity in mild glaucoma: A quantitative EEG study
Kaur S
Neuroscience Letters 2021; 759: 136036 (IGR: 22-2)


94333 Functional Dynamics of Deafferented Early Visual Cortex in Glaucoma
Hoffmann MB
Frontiers in neuroscience 2021; 15: 653632 (IGR: 22-2)


94546 Altered spontaneous cortical activity in mild glaucoma: A quantitative EEG study
Sharma R
Neuroscience Letters 2021; 759: 136036 (IGR: 22-2)


92667 Progression of Visual Pathway Degeneration in Primary Open-Angle Glaucoma: A Longitudinal Study
Haykal S
Frontiers in human neuroscience 2021; 15: 630898 (IGR: 22-1)


92670 White matter alterations in glaucoma and monocular blindness differ outside the visual system
Hanekamp S
Scientific reports 2021; 11: 6866 (IGR: 22-1)


92123 Mitochondrial function is impaired in the primary visual cortex in an experimental glaucoma model
Hvozda Arana AG
Archives of Biochemistry and Biophysics 2021; 701: 108815 (IGR: 22-1)


92795 Fractional amplitude of low-frequency fluctuation in patients with neovascular glaucoma: a resting-state functional magnetic resonance imaging study
Zhang YQ
Quantitative imaging in medicine and surgery 2021; 11: 2138-2150 (IGR: 22-1)


91967 Use of rsfMRI-fALFF for the detection of changes in brain activity in patients with normal-tension glaucoma
Li HL
Acta radiologica (Stockholm, Sweden : 1987) 2021; 62: 414-422 (IGR: 22-1)


92022 Transneuronal Degeneration in the Brain During Glaucoma
You M
Frontiers in aging neuroscience 2021; 13: 643685 (IGR: 22-1)


92209 Altered spontaneous brain activity patterns in patients with neovascular glaucoma using amplitude of low-frequency fluctuations: A functional magnetic resonance imaging study
Peng ZY
Brain and behavior 2021; 11: e02018 (IGR: 22-1)


92022 Transneuronal Degeneration in the Brain During Glaucoma
You M
Frontiers in aging neuroscience 2021; 13: 643685 (IGR: 22-1)


92123 Mitochondrial function is impaired in the primary visual cortex in an experimental glaucoma model
Lasagni Vitar RM
Archives of Biochemistry and Biophysics 2021; 701: 108815 (IGR: 22-1)


92209 Altered spontaneous brain activity patterns in patients with neovascular glaucoma using amplitude of low-frequency fluctuations: A functional magnetic resonance imaging study
Liu YX
Brain and behavior 2021; 11: e02018 (IGR: 22-1)


92022 Transneuronal Degeneration in the Brain During Glaucoma
Rong R
Frontiers in aging neuroscience 2021; 13: 643685 (IGR: 22-1)


92670 White matter alterations in glaucoma and monocular blindness differ outside the visual system
Ćurčić-Blake B
Scientific reports 2021; 11: 6866 (IGR: 22-1)


91967 Use of rsfMRI-fALFF for the detection of changes in brain activity in patients with normal-tension glaucoma
Chou XM
Acta radiologica (Stockholm, Sweden : 1987) 2021; 62: 414-422 (IGR: 22-1)


92667 Progression of Visual Pathway Degeneration in Primary Open-Angle Glaucoma: A Longitudinal Study
Jansonius NM
Frontiers in human neuroscience 2021; 15: 630898 (IGR: 22-1)


92795 Fractional amplitude of low-frequency fluctuation in patients with neovascular glaucoma: a resting-state functional magnetic resonance imaging study
Peng MY; Wu SN
Quantitative imaging in medicine and surgery 2021; 11: 2138-2150 (IGR: 22-1)


92667 Progression of Visual Pathway Degeneration in Primary Open-Angle Glaucoma: A Longitudinal Study
Cornelissen FW
Frontiers in human neuroscience 2021; 15: 630898 (IGR: 22-1)


91967 Use of rsfMRI-fALFF for the detection of changes in brain activity in patients with normal-tension glaucoma
Liang Y
Acta radiologica (Stockholm, Sweden : 1987) 2021; 62: 414-422 (IGR: 22-1)


92022 Transneuronal Degeneration in the Brain During Glaucoma
Zeng Z
Frontiers in aging neuroscience 2021; 13: 643685 (IGR: 22-1)


92123 Mitochondrial function is impaired in the primary visual cortex in an experimental glaucoma model
Reides CG
Archives of Biochemistry and Biophysics 2021; 701: 108815 (IGR: 22-1)


92670 White matter alterations in glaucoma and monocular blindness differ outside the visual system
Caron B
Scientific reports 2021; 11: 6866 (IGR: 22-1)


92209 Altered spontaneous brain activity patterns in patients with neovascular glaucoma using amplitude of low-frequency fluctuations: A functional magnetic resonance imaging study
Li B; Ge QM
Brain and behavior 2021; 11: e02018 (IGR: 22-1)


92795 Fractional amplitude of low-frequency fluctuation in patients with neovascular glaucoma: a resting-state functional magnetic resonance imaging study
Yu CY
Quantitative imaging in medicine and surgery 2021; 11: 2138-2150 (IGR: 22-1)


92022 Transneuronal Degeneration in the Brain During Glaucoma
Xia X
Frontiers in aging neuroscience 2021; 13: 643685 (IGR: 22-1)


92670 White matter alterations in glaucoma and monocular blindness differ outside the visual system
McPherson B
Scientific reports 2021; 11: 6866 (IGR: 22-1)


91967 Use of rsfMRI-fALFF for the detection of changes in brain activity in patients with normal-tension glaucoma
Pan T
Acta radiologica (Stockholm, Sweden : 1987) 2021; 62: 414-422 (IGR: 22-1)


92123 Mitochondrial function is impaired in the primary visual cortex in an experimental glaucoma model
Calabró V
Archives of Biochemistry and Biophysics 2021; 701: 108815 (IGR: 22-1)


92795 Fractional amplitude of low-frequency fluctuation in patients with neovascular glaucoma: a resting-state functional magnetic resonance imaging study
Chen SY
Quantitative imaging in medicine and surgery 2021; 11: 2138-2150 (IGR: 22-1)


92123 Mitochondrial function is impaired in the primary visual cortex in an experimental glaucoma model
Marchini T
Archives of Biochemistry and Biophysics 2021; 701: 108815 (IGR: 22-1)


92209 Altered spontaneous brain activity patterns in patients with neovascular glaucoma using amplitude of low-frequency fluctuations: A functional magnetic resonance imaging study
Liang RB
Brain and behavior 2021; 11: e02018 (IGR: 22-1)


92670 White matter alterations in glaucoma and monocular blindness differ outside the visual system
Timmer A
Scientific reports 2021; 11: 6866 (IGR: 22-1)


91967 Use of rsfMRI-fALFF for the detection of changes in brain activity in patients with normal-tension glaucoma
Zhou Q
Acta radiologica (Stockholm, Sweden : 1987) 2021; 62: 414-422 (IGR: 22-1)


92022 Transneuronal Degeneration in the Brain During Glaucoma
Ji D
Frontiers in aging neuroscience 2021; 13: 643685 (IGR: 22-1)


92123 Mitochondrial function is impaired in the primary visual cortex in an experimental glaucoma model
Lerner SF
Archives of Biochemistry and Biophysics 2021; 701: 108815 (IGR: 22-1)


92795 Fractional amplitude of low-frequency fluctuation in patients with neovascular glaucoma: a resting-state functional magnetic resonance imaging study
Tan SW
Quantitative imaging in medicine and surgery 2021; 11: 2138-2150 (IGR: 22-1)


92209 Altered spontaneous brain activity patterns in patients with neovascular glaucoma using amplitude of low-frequency fluctuations: A functional magnetic resonance imaging study
Li QY
Brain and behavior 2021; 11: e02018 (IGR: 22-1)


92670 White matter alterations in glaucoma and monocular blindness differ outside the visual system
Prins D
Scientific reports 2021; 11: 6866 (IGR: 22-1)


91967 Use of rsfMRI-fALFF for the detection of changes in brain activity in patients with normal-tension glaucoma
Pei CG
Acta radiologica (Stockholm, Sweden : 1987) 2021; 62: 414-422 (IGR: 22-1)


92123 Mitochondrial function is impaired in the primary visual cortex in an experimental glaucoma model
Evelson PA
Archives of Biochemistry and Biophysics 2021; 701: 108815 (IGR: 22-1)


92795 Fractional amplitude of low-frequency fluctuation in patients with neovascular glaucoma: a resting-state functional magnetic resonance imaging study
Shao Y
Quantitative imaging in medicine and surgery 2021; 11: 2138-2150 (IGR: 22-1)


91967 Use of rsfMRI-fALFF for the detection of changes in brain activity in patients with normal-tension glaucoma
Jiang J
Acta radiologica (Stockholm, Sweden : 1987) 2021; 62: 414-422 (IGR: 22-1)


92209 Altered spontaneous brain activity patterns in patients with neovascular glaucoma using amplitude of low-frequency fluctuations: A functional magnetic resonance imaging study
Shi WQ
Brain and behavior 2021; 11: e02018 (IGR: 22-1)


92670 White matter alterations in glaucoma and monocular blindness differ outside the visual system
Boucard CC; Yoshida M
Scientific reports 2021; 11: 6866 (IGR: 22-1)


92209 Altered spontaneous brain activity patterns in patients with neovascular glaucoma using amplitude of low-frequency fluctuations: A functional magnetic resonance imaging study
Yu YJ
Brain and behavior 2021; 11: e02018 (IGR: 22-1)


92123 Mitochondrial function is impaired in the primary visual cortex in an experimental glaucoma model
Ferreira SM
Archives of Biochemistry and Biophysics 2021; 701: 108815 (IGR: 22-1)


92795 Fractional amplitude of low-frequency fluctuation in patients with neovascular glaucoma: a resting-state functional magnetic resonance imaging study
Zhou Q
Quantitative imaging in medicine and surgery 2021; 11: 2138-2150 (IGR: 22-1)


91967 Use of rsfMRI-fALFF for the detection of changes in brain activity in patients with normal-tension glaucoma
Li B
Acta radiologica (Stockholm, Sweden : 1987) 2021; 62: 414-422 (IGR: 22-1)


92209 Altered spontaneous brain activity patterns in patients with neovascular glaucoma using amplitude of low-frequency fluctuations: A functional magnetic resonance imaging study
Shao Y
Brain and behavior 2021; 11: e02018 (IGR: 22-1)


91967 Use of rsfMRI-fALFF for the detection of changes in brain activity in patients with normal-tension glaucoma
Shao Y
Acta radiologica (Stockholm, Sweden : 1987) 2021; 62: 414-422 (IGR: 22-1)


92670 White matter alterations in glaucoma and monocular blindness differ outside the visual system
Ida M; Hunt D; Jansonius NM; Pestilli F; Cornelissen FW
Scientific reports 2021; 11: 6866 (IGR: 22-1)


91245 Glaucoma as Neurodegeneration in the Brain
Chan JW
Eye and brain 2021; 13: 21-28 (IGR: 21-4)


91690 Assessment of Cerebral Vasomotor Reactivity in Patients With Primary Open-angle Glaucoma and Ocular Hypertension Using the Breath-Holding Index
Arslan GD
Journal of Glaucoma 2021; 30: 157-163 (IGR: 21-4)


91071 Prospective Clinical Study of Non-Invasive Intracranial Pressure Measurements in Open-Angle Glaucoma Patients and Healthy Subjects
Deimantavicius M
Medicina (Kaunas, Lithuania) 2020; 56: (IGR: 21-4)


91221 Double trouble with the disc - Hickam's dictum versus Occam's razor!
Kadambi SV
Indian Journal of Ophthalmology 2020; 68: 2605-2607 (IGR: 21-4)


91816 Optic Disc Cupping Due to Dolichoectatic Internal Carotid Artery Optic Nerve Compression
Micieli JA
Journal of Neuro-Ophthalmology 2021; 41: e560-e565 (IGR: 21-4)


91511 Neuronal and Synaptic Plasticity in the Visual Thalamus in Mouse Models of Glaucoma
Van Hook MJ; Monaco C
Frontiers in cellular neuroscience 2020; 14: 626056 (IGR: 21-4)


91816 Optic Disc Cupping Due to Dolichoectatic Internal Carotid Artery Optic Nerve Compression
Margolin EA
Journal of Neuro-Ophthalmology 2021; 41: e560-e565 (IGR: 21-4)


91071 Prospective Clinical Study of Non-Invasive Intracranial Pressure Measurements in Open-Angle Glaucoma Patients and Healthy Subjects
Hamarat Y
Medicina (Kaunas, Lithuania) 2020; 56: (IGR: 21-4)


91245 Glaucoma as Neurodegeneration in the Brain
Chan NCY
Eye and brain 2021; 13: 21-28 (IGR: 21-4)


91690 Assessment of Cerebral Vasomotor Reactivity in Patients With Primary Open-angle Glaucoma and Ocular Hypertension Using the Breath-Holding Index
Olgun A
Journal of Glaucoma 2021; 30: 157-163 (IGR: 21-4)


91221 Double trouble with the disc - Hickam's dictum versus Occam's razor!
Lingam V; Praveen S
Indian Journal of Ophthalmology 2020; 68: 2605-2607 (IGR: 21-4)


91511 Neuronal and Synaptic Plasticity in the Visual Thalamus in Mouse Models of Glaucoma
Bierlein ER
Frontiers in cellular neuroscience 2020; 14: 626056 (IGR: 21-4)


91690 Assessment of Cerebral Vasomotor Reactivity in Patients With Primary Open-angle Glaucoma and Ocular Hypertension Using the Breath-Holding Index
Ozcan D
Journal of Glaucoma 2021; 30: 157-163 (IGR: 21-4)


91071 Prospective Clinical Study of Non-Invasive Intracranial Pressure Measurements in Open-Angle Glaucoma Patients and Healthy Subjects
Lucinskas P
Medicina (Kaunas, Lithuania) 2020; 56: (IGR: 21-4)


91245 Glaucoma as Neurodegeneration in the Brain
Sadun AA
Eye and brain 2021; 13: 21-28 (IGR: 21-4)


91221 Double trouble with the disc - Hickam's dictum versus Occam's razor!
Priyadarshini D
Indian Journal of Ophthalmology 2020; 68: 2605-2607 (IGR: 21-4)


91071 Prospective Clinical Study of Non-Invasive Intracranial Pressure Measurements in Open-Angle Glaucoma Patients and Healthy Subjects
Zakelis R
Medicina (Kaunas, Lithuania) 2020; 56: (IGR: 21-4)


91511 Neuronal and Synaptic Plasticity in the Visual Thalamus in Mouse Models of Glaucoma
Smith JC
Frontiers in cellular neuroscience 2020; 14: 626056 (IGR: 21-4)


91690 Assessment of Cerebral Vasomotor Reactivity in Patients With Primary Open-angle Glaucoma and Ocular Hypertension Using the Breath-Holding Index
Gökcal E
Journal of Glaucoma 2021; 30: 157-163 (IGR: 21-4)


91221 Double trouble with the disc - Hickam's dictum versus Occam's razor!
George R
Indian Journal of Ophthalmology 2020; 68: 2605-2607 (IGR: 21-4)


91690 Assessment of Cerebral Vasomotor Reactivity in Patients With Primary Open-angle Glaucoma and Ocular Hypertension Using the Breath-Holding Index
Guven D
Journal of Glaucoma 2021; 30: 157-163 (IGR: 21-4)


91071 Prospective Clinical Study of Non-Invasive Intracranial Pressure Measurements in Open-Angle Glaucoma Patients and Healthy Subjects
Bartusis L; Siaudvytyte L
Medicina (Kaunas, Lithuania) 2020; 56: (IGR: 21-4)


91690 Assessment of Cerebral Vasomotor Reactivity in Patients With Primary Open-angle Glaucoma and Ocular Hypertension Using the Breath-Holding Index
Asil T
Journal of Glaucoma 2021; 30: 157-163 (IGR: 21-4)


91071 Prospective Clinical Study of Non-Invasive Intracranial Pressure Measurements in Open-Angle Glaucoma Patients and Healthy Subjects
Janulevicienė I; Ragauskas A
Medicina (Kaunas, Lithuania) 2020; 56: (IGR: 21-4)


90418 Altered coupling of cerebral blood flow and functional connectivity strength in visual and higher order cognitive cortices in primary open angle glaucoma
Wang Q
Journal of Cerebral Blood Flow and Metabolism 2020; 0: 271678X20935274 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Nucci C
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90186 Diffusion Kurtosis Imaging Reveals Optic Tract Damage That Correlates with Clinical Severity in Glaucoma
Sun Z
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1746-1749 (IGR: 21-3)


90695 Suprasellar meningioma presenting with glaucomatous type cupping
Pellegrini F
European Journal of Ophthalmology 2020; 0: 1120672120937674 (IGR: 21-3)


90664 Functional Alterations in Resting-State Visual Networks in High-Tension Glaucoma: An Independent Component Analysis
Wang Y
Frontiers in human neuroscience 2020; 14: 330 (IGR: 21-3)


90484 Common aspects between glaucoma and brain neurodegeneration
Saccà SC
Mutation Research - Fundamental and Molecular Mechanisms of Mutagenesis 2020; 786: 108323 (IGR: 21-3)


89982 Volume of Lateral Geniculate Nucleus in Patients with Glaucoma in 7Tesla MRI
Kosior-Jarecka E
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90128 Redistribution of metabolic resources through astrocyte networks mitigates neurodegenerative stress
Cooper ML
Proceedings of the National Academy of Sciences of the United States of America 2020; 117: 18810-18821 (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Cio FD
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90219 Data-Driven Parcellation Approaches Based on Functional Connectivity of Visual Cortices in Primary Open-Angle Glaucoma
Qu H
Investigative Ophthalmology and Visual Science 2020; 61: 33 (IGR: 21-3)


90013 Intraocular and intracranial pressure in glaucoma patients taking acetazolamide
Loiselle AR
PLoS ONE 2020; 15: e0234690 (IGR: 21-3)


89865 Magnetic Resonance Imaging for Glaucoma Evaluation
Gracitelli CPB
Journal of Glaucoma 2020; 29: 622-626 (IGR: 21-3)


90742 Altered information flow and microstructure abnormalities of visual cortex in normal-tension glaucoma: Evidence from resting-state fMRI and DKI
Li T
Brain Research 2020; 1741: 146874 (IGR: 21-3)


90487 Glaucoma causes redox imbalance in the primary visual cortex by modulating NADPH oxidase-4, iNOS, and Nrf2 pathway in a rat experimental model
Hvozda Arana AG
Experimental Eye Research 2020; 200: 108225 (IGR: 21-3)


90219 Data-Driven Parcellation Approaches Based on Functional Connectivity of Visual Cortices in Primary Open-Angle Glaucoma
Wang Y
Investigative Ophthalmology and Visual Science 2020; 61: 33 (IGR: 21-3)


90484 Common aspects between glaucoma and brain neurodegeneration
Paluan F
Mutation Research - Fundamental and Molecular Mechanisms of Mutagenesis 2020; 786: 108323 (IGR: 21-3)


90013 Intraocular and intracranial pressure in glaucoma patients taking acetazolamide
de Kleine E
PLoS ONE 2020; 15: e0234690 (IGR: 21-3)


90186 Diffusion Kurtosis Imaging Reveals Optic Tract Damage That Correlates with Clinical Severity in Glaucoma
Parra C
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1746-1749 (IGR: 21-3)


89865 Magnetic Resonance Imaging for Glaucoma Evaluation
Gerente VM
Journal of Glaucoma 2020; 29: 622-626 (IGR: 21-3)


90418 Altered coupling of cerebral blood flow and functional connectivity strength in visual and higher order cognitive cortices in primary open angle glaucoma
Qu X
Journal of Cerebral Blood Flow and Metabolism 2020; 0: 271678X20935274 (IGR: 21-3)


90742 Altered information flow and microstructure abnormalities of visual cortex in normal-tension glaucoma: Evidence from resting-state fMRI and DKI
Qu X
Brain Research 2020; 1741: 146874 (IGR: 21-3)


90128 Redistribution of metabolic resources through astrocyte networks mitigates neurodegenerative stress
Pasini S
Proceedings of the National Academy of Sciences of the United States of America 2020; 117: 18810-18821 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Garaci F
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90487 Glaucoma causes redox imbalance in the primary visual cortex by modulating NADPH oxidase-4, iNOS, and Nrf2 pathway in a rat experimental model
Lasagni Vitar RM
Experimental Eye Research 2020; 200: 108225 (IGR: 21-3)


90695 Suprasellar meningioma presenting with glaucomatous type cupping
Marullo M
European Journal of Ophthalmology 2020; 0: 1120672120937674 (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Garaci F
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


89982 Volume of Lateral Geniculate Nucleus in Patients with Glaucoma in 7Tesla MRI
Pankowska A
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90664 Functional Alterations in Resting-State Visual Networks in High-Tension Glaucoma: An Independent Component Analysis
Lu W
Frontiers in human neuroscience 2020; 14: 330 (IGR: 21-3)


90128 Redistribution of metabolic resources through astrocyte networks mitigates neurodegenerative stress
Lambert WS
Proceedings of the National Academy of Sciences of the United States of America 2020; 117: 18810-18821 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Altobelli S
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90484 Common aspects between glaucoma and brain neurodegeneration
Gandolfi S
Mutation Research - Fundamental and Molecular Mechanisms of Mutagenesis 2020; 786: 108323 (IGR: 21-3)


90695 Suprasellar meningioma presenting with glaucomatous type cupping
Zappacosta A
European Journal of Ophthalmology 2020; 0: 1120672120937674 (IGR: 21-3)


90487 Glaucoma causes redox imbalance in the primary visual cortex by modulating NADPH oxidase-4, iNOS, and Nrf2 pathway in a rat experimental model
Reides CG
Experimental Eye Research 2020; 200: 108225 (IGR: 21-3)


89982 Volume of Lateral Geniculate Nucleus in Patients with Glaucoma in 7Tesla MRI
Polit P
Journal of clinical medicine 2020; 9: (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Minosse S
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90013 Intraocular and intracranial pressure in glaucoma patients taking acetazolamide
van Dijk P
PLoS ONE 2020; 15: e0234690 (IGR: 21-3)


90664 Functional Alterations in Resting-State Visual Networks in High-Tension Glaucoma: An Independent Component Analysis
Xie Y
Frontiers in human neuroscience 2020; 14: 330 (IGR: 21-3)


89865 Magnetic Resonance Imaging for Glaucoma Evaluation
Furlanetto RL
Journal of Glaucoma 2020; 29: 622-626 (IGR: 21-3)


90418 Altered coupling of cerebral blood flow and functional connectivity strength in visual and higher order cognitive cortices in primary open angle glaucoma
Chen W
Journal of Cerebral Blood Flow and Metabolism 2020; 0: 271678X20935274 (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Minosse S
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90742 Altered information flow and microstructure abnormalities of visual cortex in normal-tension glaucoma: Evidence from resting-state fMRI and DKI
Chen W
Brain Research 2020; 1741: 146874 (IGR: 21-3)


90186 Diffusion Kurtosis Imaging Reveals Optic Tract Damage That Correlates with Clinical Severity in Glaucoma
Bang JW
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1746-1749 (IGR: 21-3)


90219 Data-Driven Parcellation Approaches Based on Functional Connectivity of Visual Cortices in Primary Open-Angle Glaucoma
Yan T
Investigative Ophthalmology and Visual Science 2020; 61: 33 (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Passamonti L
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90219 Data-Driven Parcellation Approaches Based on Functional Connectivity of Visual Cortices in Primary Open-Angle Glaucoma
Zhou J
Investigative Ophthalmology and Visual Science 2020; 61: 33 (IGR: 21-3)


90742 Altered information flow and microstructure abnormalities of visual cortex in normal-tension glaucoma: Evidence from resting-state fMRI and DKI
Wang Q
Brain Research 2020; 1741: 146874 (IGR: 21-3)


90013 Intraocular and intracranial pressure in glaucoma patients taking acetazolamide
Jansonius NM
PLoS ONE 2020; 15: e0234690 (IGR: 21-3)


89865 Magnetic Resonance Imaging for Glaucoma Evaluation
Amaro E
Journal of Glaucoma 2020; 29: 622-626 (IGR: 21-3)


90695 Suprasellar meningioma presenting with glaucomatous type cupping
Liberali T
European Journal of Ophthalmology 2020; 0: 1120672120937674 (IGR: 21-3)


90418 Altered coupling of cerebral blood flow and functional connectivity strength in visual and higher order cognitive cortices in primary open angle glaucoma
Wang H
Journal of Cerebral Blood Flow and Metabolism 2020; 0: 271678X20935274 (IGR: 21-3)


90128 Redistribution of metabolic resources through astrocyte networks mitigates neurodegenerative stress
D'Alessandro KB
Proceedings of the National Academy of Sciences of the United States of America 2020; 117: 18810-18821 (IGR: 21-3)


90186 Diffusion Kurtosis Imaging Reveals Optic Tract Damage That Correlates with Clinical Severity in Glaucoma
Fieremans E
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1746-1749 (IGR: 21-3)


90664 Functional Alterations in Resting-State Visual Networks in High-Tension Glaucoma: An Independent Component Analysis
Zhou J
Frontiers in human neuroscience 2020; 14: 330 (IGR: 21-3)


90487 Glaucoma causes redox imbalance in the primary visual cortex by modulating NADPH oxidase-4, iNOS, and Nrf2 pathway in a rat experimental model
Lerner SF
Experimental Eye Research 2020; 200: 108225 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Di Ciò F
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90484 Common aspects between glaucoma and brain neurodegeneration
Manni G
Mutation Research - Fundamental and Molecular Mechanisms of Mutagenesis 2020; 786: 108323 (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Passamonti L
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


89982 Volume of Lateral Geniculate Nucleus in Patients with Glaucoma in 7Tesla MRI
Stępniewski A
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Martucci A
Journal of clinical medicine 2020; 9: (IGR: 21-3)


89865 Magnetic Resonance Imaging for Glaucoma Evaluation
Paranhos A
Journal of Glaucoma 2020; 29: 622-626 (IGR: 21-3)


90664 Functional Alterations in Resting-State Visual Networks in High-Tension Glaucoma: An Independent Component Analysis
Yan T
Frontiers in human neuroscience 2020; 14: 330 (IGR: 21-3)


90219 Data-Driven Parcellation Approaches Based on Functional Connectivity of Visual Cortices in Primary Open-Angle Glaucoma
Lu W
Investigative Ophthalmology and Visual Science 2020; 61: 33 (IGR: 21-3)


90186 Diffusion Kurtosis Imaging Reveals Optic Tract Damage That Correlates with Clinical Severity in Glaucoma
Wollstein G
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1746-1749 (IGR: 21-3)


90484 Common aspects between glaucoma and brain neurodegeneration
Cutolo CA
Mutation Research - Fundamental and Molecular Mechanisms of Mutagenesis 2020; 786: 108323 (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Martucci A
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90742 Altered information flow and microstructure abnormalities of visual cortex in normal-tension glaucoma: Evidence from resting-state fMRI and DKI
Wang H
Brain Research 2020; 1741: 146874 (IGR: 21-3)


90487 Glaucoma causes redox imbalance in the primary visual cortex by modulating NADPH oxidase-4, iNOS, and Nrf2 pathway in a rat experimental model
Ferreira SM
Experimental Eye Research 2020; 200: 108225 (IGR: 21-3)


89982 Volume of Lateral Geniculate Nucleus in Patients with Glaucoma in 7Tesla MRI
Symms MR
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90128 Redistribution of metabolic resources through astrocyte networks mitigates neurodegenerative stress
Yao V
Proceedings of the National Academy of Sciences of the United States of America 2020; 117: 18810-18821 (IGR: 21-3)


90695 Suprasellar meningioma presenting with glaucomatous type cupping
Cuna A
European Journal of Ophthalmology 2020; 0: 1120672120937674 (IGR: 21-3)


90418 Altered coupling of cerebral blood flow and functional connectivity strength in visual and higher order cognitive cortices in primary open angle glaucoma
Huang C
Journal of Cerebral Blood Flow and Metabolism 2020; 0: 271678X20935274 (IGR: 21-3)


90186 Diffusion Kurtosis Imaging Reveals Optic Tract Damage That Correlates with Clinical Severity in Glaucoma
Schuman JS
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1746-1749 (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Lanzafame S
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


89982 Volume of Lateral Geniculate Nucleus in Patients with Glaucoma in 7Tesla MRI
Kozioł P
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90128 Redistribution of metabolic resources through astrocyte networks mitigates neurodegenerative stress
Risner ML
Proceedings of the National Academy of Sciences of the United States of America 2020; 117: 18810-18821 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Aiello F
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90664 Functional Alterations in Resting-State Visual Networks in High-Tension Glaucoma: An Independent Component Analysis
Han W
Frontiers in human neuroscience 2020; 14: 330 (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Lanzafame S
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90484 Common aspects between glaucoma and brain neurodegeneration
Izzotti A
Mutation Research - Fundamental and Molecular Mechanisms of Mutagenesis 2020; 786: 108323 (IGR: 21-3)


90219 Data-Driven Parcellation Approaches Based on Functional Connectivity of Visual Cortices in Primary Open-Angle Glaucoma
Qiu J
Investigative Ophthalmology and Visual Science 2020; 61: 33 (IGR: 21-3)


90418 Altered coupling of cerebral blood flow and functional connectivity strength in visual and higher order cognitive cortices in primary open angle glaucoma
Li T
Journal of Cerebral Blood Flow and Metabolism 2020; 0: 271678X20935274 (IGR: 21-3)


90742 Altered information flow and microstructure abnormalities of visual cortex in normal-tension glaucoma: Evidence from resting-state fMRI and DKI
Wang Y
Brain Research 2020; 1741: 146874 (IGR: 21-3)


90695 Suprasellar meningioma presenting with glaucomatous type cupping
Lee AG
European Journal of Ophthalmology 2020; 0: 1120672120937674 (IGR: 21-3)


90418 Altered coupling of cerebral blood flow and functional connectivity strength in visual and higher order cognitive cortices in primary open angle glaucoma
Wang N
Journal of Cerebral Blood Flow and Metabolism 2020; 0: 271678X20935274 (IGR: 21-3)


90664 Functional Alterations in Resting-State Visual Networks in High-Tension Glaucoma: An Independent Component Analysis
Qiu J
Frontiers in human neuroscience 2020; 14: 330 (IGR: 21-3)


90128 Redistribution of metabolic resources through astrocyte networks mitigates neurodegenerative stress
Calkins DJ
Proceedings of the National Academy of Sciences of the United States of America 2020; 117: 18810-18821 (IGR: 21-3)


89982 Volume of Lateral Geniculate Nucleus in Patients with Glaucoma in 7Tesla MRI
Żarnowski T
Journal of clinical medicine 2020; 9: (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Giuliano FD
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Lanzafame S
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90186 Diffusion Kurtosis Imaging Reveals Optic Tract Damage That Correlates with Clinical Severity in Glaucoma
Chan KC
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1746-1749 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Lanzafame S
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90742 Altered information flow and microstructure abnormalities of visual cortex in normal-tension glaucoma: Evidence from resting-state fMRI and DKI
Huang C
Brain Research 2020; 1741: 146874 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Di Giuliano F
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90742 Altered information flow and microstructure abnormalities of visual cortex in normal-tension glaucoma: Evidence from resting-state fMRI and DKI
Zhang X
Brain Research 2020; 1741: 146874 (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Picchi E
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Di Giuliano F
Journal of clinical medicine 2020; 9: (IGR: 21-3)


89982 Volume of Lateral Geniculate Nucleus in Patients with Glaucoma in 7Tesla MRI
Pietura R
Journal of clinical medicine 2020; 9: (IGR: 21-3)


90418 Altered coupling of cerebral blood flow and functional connectivity strength in visual and higher order cognitive cortices in primary open angle glaucoma
Xian J
Journal of Cerebral Blood Flow and Metabolism 2020; 0: 271678X20935274 (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Picchi E
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90742 Altered information flow and microstructure abnormalities of visual cortex in normal-tension glaucoma: Evidence from resting-state fMRI and DKI
Wang N
Brain Research 2020; 1741: 146874 (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Mancino R
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Picchi E; Picchi E; Minosse S; Minosse S
Journal of clinical medicine 2020; 9: (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Guerrisi M
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90742 Altered information flow and microstructure abnormalities of visual cortex in normal-tension glaucoma: Evidence from resting-state fMRI and DKI
Xian J
Brain Research 2020; 1741: 146874 (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Guerrisi M
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Cesareo M
Journal of clinical medicine 2020; 9: (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Nucci C; Floris R
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Guerrisi MG
Journal of clinical medicine 2020; 9: (IGR: 21-3)


89869 Disruption of structural brain networks in Primary Open Angle Glaucoma
Toschi N
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference 2020; 2020: 1705-1708 (IGR: 21-3)


90488 Diffusional Kurtosis Imaging of White Matter Degeneration in Glaucoma
Floris R; Passamonti L; Passamonti L; Toschi N
Journal of clinical medicine 2020; 9: (IGR: 21-3)


86216 Structural Changes and Astrocyte Response of the Lateral Geniculate Nucleus in a Ferret Model of Ocular Hypertension
Fujishiro T
International journal of molecular sciences 2020; 21: (IGR: 21-2)


86430 Altered fMRI-derived functional connectivity in patients with high-tension glaucoma
Wang B
Journal of neuroradiology. Journal de neuroradiologie 2021; 48: 94-98 (IGR: 21-2)


86214 Vision modulation, plasticity and restoration using non-invasive brain stimulation - An IFCN-sponsored review
Sabel BA
Clinical Neurophysiology 2020; 131: 887-911 (IGR: 21-2)


86224 Structural Analysis of Glaucoma Brain and its Association With Ocular Parameters
Gracitelli CPB
Journal of Glaucoma 2020; 29: 393-400 (IGR: 21-2)


86620 Reversibility of visual field defects through induction of brain plasticity: vision restoration, recovery and rehabilitation using alternating current stimulation
Sabel BA; Gao Y
Neural Regeneration Research 2020; 15: 1799-1806 (IGR: 21-2)


86430 Altered fMRI-derived functional connectivity in patients with high-tension glaucoma
Yan T
Journal of neuroradiology. Journal de neuroradiologie 2021; 48: 94-98 (IGR: 21-2)


86216 Structural Changes and Astrocyte Response of the Lateral Geniculate Nucleus in a Ferret Model of Ocular Hypertension
Honjo M
International journal of molecular sciences 2020; 21: (IGR: 21-2)


86214 Vision modulation, plasticity and restoration using non-invasive brain stimulation - An IFCN-sponsored review
Thut G
Clinical Neurophysiology 2020; 131: 887-911 (IGR: 21-2)


86224 Structural Analysis of Glaucoma Brain and its Association With Ocular Parameters
Duque-Chica GL
Journal of Glaucoma 2020; 29: 393-400 (IGR: 21-2)


86430 Altered fMRI-derived functional connectivity in patients with high-tension glaucoma
Zhou J
Journal of neuroradiology. Journal de neuroradiologie 2021; 48: 94-98 (IGR: 21-2)


86620 Reversibility of visual field defects through induction of brain plasticity: vision restoration, recovery and rehabilitation using alternating current stimulation
Antal A
Neural Regeneration Research 2020; 15: 1799-1806 (IGR: 21-2)


86214 Vision modulation, plasticity and restoration using non-invasive brain stimulation - An IFCN-sponsored review
Haueisen J
Clinical Neurophysiology 2020; 131: 887-911 (IGR: 21-2)


86224 Structural Analysis of Glaucoma Brain and its Association With Ocular Parameters
Sanches LG
Journal of Glaucoma 2020; 29: 393-400 (IGR: 21-2)


86620 Reversibility of visual field defects through induction of brain plasticity: vision restoration, recovery and rehabilitation using alternating current stimulation
Antal A
Neural Regeneration Research 2020; 15: 1799-1806 (IGR: 21-2)


86216 Structural Changes and Astrocyte Response of the Lateral Geniculate Nucleus in a Ferret Model of Ocular Hypertension
Kawasaki H
International journal of molecular sciences 2020; 21: (IGR: 21-2)


86214 Vision modulation, plasticity and restoration using non-invasive brain stimulation - An IFCN-sponsored review
Henrich-Noack P
Clinical Neurophysiology 2020; 131: 887-911 (IGR: 21-2)


86224 Structural Analysis of Glaucoma Brain and its Association With Ocular Parameters
Moura AL
Journal of Glaucoma 2020; 29: 393-400 (IGR: 21-2)


86430 Altered fMRI-derived functional connectivity in patients with high-tension glaucoma
Xie Y
Journal of neuroradiology. Journal de neuroradiologie 2021; 48: 94-98 (IGR: 21-2)


86216 Structural Changes and Astrocyte Response of the Lateral Geniculate Nucleus in a Ferret Model of Ocular Hypertension
Asaoka R
International journal of molecular sciences 2020; 21: (IGR: 21-2)


86214 Vision modulation, plasticity and restoration using non-invasive brain stimulation - An IFCN-sponsored review
Herrmann CS
Clinical Neurophysiology 2020; 131: 887-911 (IGR: 21-2)


86216 Structural Changes and Astrocyte Response of the Lateral Geniculate Nucleus in a Ferret Model of Ocular Hypertension
Yamagishi R
International journal of molecular sciences 2020; 21: (IGR: 21-2)


86224 Structural Analysis of Glaucoma Brain and its Association With Ocular Parameters
Nagy BV
Journal of Glaucoma 2020; 29: 393-400 (IGR: 21-2)


86430 Altered fMRI-derived functional connectivity in patients with high-tension glaucoma
Qiu J
Journal of neuroradiology. Journal de neuroradiologie 2021; 48: 94-98 (IGR: 21-2)


86216 Structural Changes and Astrocyte Response of the Lateral Geniculate Nucleus in a Ferret Model of Ocular Hypertension
Aihara M
International journal of molecular sciences 2020; 21: (IGR: 21-2)


86224 Structural Analysis of Glaucoma Brain and its Association With Ocular Parameters
Teixeira SH
Journal of Glaucoma 2020; 29: 393-400 (IGR: 21-2)


86430 Altered fMRI-derived functional connectivity in patients with high-tension glaucoma
Wang Y
Journal of neuroradiology. Journal de neuroradiologie 2021; 48: 94-98 (IGR: 21-2)


86214 Vision modulation, plasticity and restoration using non-invasive brain stimulation - An IFCN-sponsored review
Hunold A
Clinical Neurophysiology 2020; 131: 887-911 (IGR: 21-2)


86430 Altered fMRI-derived functional connectivity in patients with high-tension glaucoma
Lu W
Journal of neuroradiology. Journal de neuroradiologie 2021; 48: 94-98 (IGR: 21-2)


86214 Vision modulation, plasticity and restoration using non-invasive brain stimulation - An IFCN-sponsored review
Kammer T
Clinical Neurophysiology 2020; 131: 887-911 (IGR: 21-2)


86224 Structural Analysis of Glaucoma Brain and its Association With Ocular Parameters
Amaro E; Ventura DF
Journal of Glaucoma 2020; 29: 393-400 (IGR: 21-2)


86214 Vision modulation, plasticity and restoration using non-invasive brain stimulation - An IFCN-sponsored review
Matteo B; Sergeeva EG
Clinical Neurophysiology 2020; 131: 887-911 (IGR: 21-2)


86224 Structural Analysis of Glaucoma Brain and its Association With Ocular Parameters
Paranhos A
Journal of Glaucoma 2020; 29: 393-400 (IGR: 21-2)


86214 Vision modulation, plasticity and restoration using non-invasive brain stimulation - An IFCN-sponsored review
Waleszczyk W; Antal A; Antal A
Clinical Neurophysiology 2020; 131: 887-911 (IGR: 21-2)


84706 Evaluation of Cerebrospinal Fluid Pressure by a Formula and Its Role in the Pathogenesis of Glaucoma
Landi L
Journal of Ophthalmology 2019; 2019: 1840481 (IGR: 21-1)


84719 Neuro-ophthalmic Disease in Pediatric Glaucoma Practice
Tirpack AR
Journal of Glaucoma 2020; 29: 117-123 (IGR: 21-1)


84590 Under pressure: Cerebrospinal fluid contribution to the physiological homeostasis of the eye
Mirra S
Seminars in Cell and Developmental Biology 2019; 0: (IGR: 21-1)


85214 Retinal correlates of psychiatric disorders
Almonte MT
Therapeutic advances in chronic disease 2020; 11: 2040622320905215 (IGR: 21-1)


85092 Altered Intrinsic Functional Connectivity of the Primary Visual Cortex in Patients with Neovascular Glaucoma: A Resting-State Functional Magnetic Resonance Imaging Study
Wu YY
Neuropsychiatric disease and treatment 2020; 16: 25-33 (IGR: 21-1)


84504 Review of non-invasive intracranial pressure measurement techniques for ophthalmology applications
Price DA
British Journal of Ophthalmology 2020; 104: 887-892 (IGR: 21-1)


85147 Intra- and inter-hemispheric processing during binocular rivalry in mild glaucoma
Tarita-Nistor L
PLoS ONE 2020; 15: e0229168 (IGR: 21-1)


84606 Intracranial pressure modulates aqueous humour dynamics of the eye
Ficarrotta KR
Journal of Physiology 2020; 598: 403-413 (IGR: 21-1)


85201 Altered Large-Scale Brain Functional Connectivity in Ocular Hypertension
Giorgio A
Frontiers in neuroscience 2020; 14: 146 (IGR: 21-1)


84691 The Influence of Translaminar Pressure Gradient and Intracranial Pressure in Glaucoma: A Review
Price DA
Journal of Glaucoma 2020; 29: 141-146 (IGR: 21-1)


84719 Neuro-ophthalmic Disease in Pediatric Glaucoma Practice
Tirpack AR
Journal of Glaucoma 2020; 29: 117-123 (IGR: 21-1)


84623 The role of intracranial pressure in glaucoma and therapeutic implications
Baneke AJ
Eye 2020; 34: 178-191 (IGR: 21-1)


84606 Intracranial pressure modulates aqueous humour dynamics of the eye
Ficarrotta KR
Journal of Physiology 2020; 598: 403-413 (IGR: 21-1)


84433 Cerebrospinal fluid and optic nerve sheath compartment syndrome: A common pathophysiological mechanism in five different cases?
Hao J
Clinical and Experimental Ophthalmology 2020; 48: 212-219 (IGR: 21-1)


84806 Brain morphological alterations of cerebral cortex and subcortical nuclei in high-tension glaucoma brain and its associations with intraocular pressure
Wang Y
Neuroradiology 2020; 62: 495-502 (IGR: 21-1)


84442 Intraocular Pressure in the Eyes of Patients With Carotid-Cavernous Fistulas: Profile, Intereye Asymmetry, and Treatment Outcomes
Khurana M
Journal of Glaucoma 2019; 28: 1074-1078 (IGR: 21-1)


84504 Review of non-invasive intracranial pressure measurement techniques for ophthalmology applications
Grzybowski A
British Journal of Ophthalmology 2020; 104: 887-892 (IGR: 21-1)


85201 Altered Large-Scale Brain Functional Connectivity in Ocular Hypertension
Zhang J
Frontiers in neuroscience 2020; 14: 146 (IGR: 21-1)


84623 The role of intracranial pressure in glaucoma and therapeutic implications
Aubry J
Eye 2020; 34: 178-191 (IGR: 21-1)


84719 Neuro-ophthalmic Disease in Pediatric Glaucoma Practice
Vanner EA
Journal of Glaucoma 2020; 29: 117-123 (IGR: 21-1)


84806 Brain morphological alterations of cerebral cortex and subcortical nuclei in high-tension glaucoma brain and its associations with intraocular pressure
Wang X
Neuroradiology 2020; 62: 495-502 (IGR: 21-1)


84706 Evaluation of Cerebrospinal Fluid Pressure by a Formula and Its Role in the Pathogenesis of Glaucoma
Casciaro F
Journal of Ophthalmology 2019; 2019: 1840481 (IGR: 21-1)


85147 Intra- and inter-hemispheric processing during binocular rivalry in mild glaucoma
Samet S
PLoS ONE 2020; 15: e0229168 (IGR: 21-1)


84590 Under pressure: Cerebrospinal fluid contribution to the physiological homeostasis of the eye
Marfany G
Seminars in Cell and Developmental Biology 2019; 0: (IGR: 21-1)


85147 Intra- and inter-hemispheric processing during binocular rivalry in mild glaucoma
Samet S
PLoS ONE 2020; 15: e0229168 (IGR: 21-1)


84606 Intracranial pressure modulates aqueous humour dynamics of the eye
Passaglia CL
Journal of Physiology 2020; 598: 403-413 (IGR: 21-1)


84691 The Influence of Translaminar Pressure Gradient and Intracranial Pressure in Glaucoma: A Review
Harris A
Journal of Glaucoma 2020; 29: 141-146 (IGR: 21-1)


85214 Retinal correlates of psychiatric disorders
Capellàn P
Therapeutic advances in chronic disease 2020; 11: 2040622320905215 (IGR: 21-1)


84433 Cerebrospinal fluid and optic nerve sheath compartment syndrome: A common pathophysiological mechanism in five different cases?
Pircher A
Clinical and Experimental Ophthalmology 2020; 48: 212-219 (IGR: 21-1)


84442 Intraocular Pressure in the Eyes of Patients With Carotid-Cavernous Fistulas: Profile, Intereye Asymmetry, and Treatment Outcomes
Alam MS
Journal of Glaucoma 2019; 28: 1074-1078 (IGR: 21-1)


85092 Altered Intrinsic Functional Connectivity of the Primary Visual Cortex in Patients with Neovascular Glaucoma: A Resting-State Functional Magnetic Resonance Imaging Study
Wang SF
Neuropsychiatric disease and treatment 2020; 16: 25-33 (IGR: 21-1)


84623 The role of intracranial pressure in glaucoma and therapeutic implications
Viswanathan AC
Eye 2020; 34: 178-191 (IGR: 21-1)


85201 Altered Large-Scale Brain Functional Connectivity in Ocular Hypertension
Costantino F
Frontiers in neuroscience 2020; 14: 146 (IGR: 21-1)


84590 Under pressure: Cerebrospinal fluid contribution to the physiological homeostasis of the eye
Garcia-Fernàndez J
Seminars in Cell and Developmental Biology 2019; 0: (IGR: 21-1)


85214 Retinal correlates of psychiatric disorders
Yap TE
Therapeutic advances in chronic disease 2020; 11: 2040622320905215 (IGR: 21-1)


84433 Cerebrospinal fluid and optic nerve sheath compartment syndrome: A common pathophysiological mechanism in five different cases?
Miller NR
Clinical and Experimental Ophthalmology 2020; 48: 212-219 (IGR: 21-1)


84806 Brain morphological alterations of cerebral cortex and subcortical nuclei in high-tension glaucoma brain and its associations with intraocular pressure
Zhou J
Neuroradiology 2020; 62: 495-502 (IGR: 21-1)


84442 Intraocular Pressure in the Eyes of Patients With Carotid-Cavernous Fistulas: Profile, Intereye Asymmetry, and Treatment Outcomes
Balekudaru S
Journal of Glaucoma 2019; 28: 1074-1078 (IGR: 21-1)


84504 Review of non-invasive intracranial pressure measurement techniques for ophthalmology applications
Eikenberry J
British Journal of Ophthalmology 2020; 104: 887-892 (IGR: 21-1)


85147 Intra- and inter-hemispheric processing during binocular rivalry in mild glaucoma
Trope GE
PLoS ONE 2020; 15: e0229168 (IGR: 21-1)


84691 The Influence of Translaminar Pressure Gradient and Intracranial Pressure in Glaucoma: A Review
Siesky B
Journal of Glaucoma 2020; 29: 141-146 (IGR: 21-1)


84719 Neuro-ophthalmic Disease in Pediatric Glaucoma Practice
Sheheitli H
Journal of Glaucoma 2020; 29: 117-123 (IGR: 21-1)


85092 Altered Intrinsic Functional Connectivity of the Primary Visual Cortex in Patients with Neovascular Glaucoma: A Resting-State Functional Magnetic Resonance Imaging Study
Zhu PW
Neuropsychiatric disease and treatment 2020; 16: 25-33 (IGR: 21-1)


84706 Evaluation of Cerebrospinal Fluid Pressure by a Formula and Its Role in the Pathogenesis of Glaucoma
Telani S
Journal of Ophthalmology 2019; 2019: 1840481 (IGR: 21-1)


85147 Intra- and inter-hemispheric processing during binocular rivalry in mild glaucoma
González EG
PLoS ONE 2020; 15: e0229168 (IGR: 21-1)


84691 The Influence of Translaminar Pressure Gradient and Intracranial Pressure in Glaucoma: A Review
Mathew S
Journal of Glaucoma 2020; 29: 141-146 (IGR: 21-1)


84442 Intraocular Pressure in the Eyes of Patients With Carotid-Cavernous Fistulas: Profile, Intereye Asymmetry, and Treatment Outcomes
Vijaya L
Journal of Glaucoma 2019; 28: 1074-1078 (IGR: 21-1)


84504 Review of non-invasive intracranial pressure measurement techniques for ophthalmology applications
Januleviciene I
British Journal of Ophthalmology 2020; 104: 887-892 (IGR: 21-1)


84706 Evaluation of Cerebrospinal Fluid Pressure by a Formula and Its Role in the Pathogenesis of Glaucoma
Traverso CE
Journal of Ophthalmology 2019; 2019: 1840481 (IGR: 21-1)


84806 Brain morphological alterations of cerebral cortex and subcortical nuclei in high-tension glaucoma brain and its associations with intraocular pressure
Qiu J
Neuroradiology 2020; 62: 495-502 (IGR: 21-1)


85201 Altered Large-Scale Brain Functional Connectivity in Ocular Hypertension
De Stefano N
Frontiers in neuroscience 2020; 14: 146 (IGR: 21-1)


84433 Cerebrospinal fluid and optic nerve sheath compartment syndrome: A common pathophysiological mechanism in five different cases?
Hsieh J
Clinical and Experimental Ophthalmology 2020; 48: 212-219 (IGR: 21-1)


85092 Altered Intrinsic Functional Connectivity of the Primary Visual Cortex in Patients with Neovascular Glaucoma: A Resting-State Functional Magnetic Resonance Imaging Study
Yuan Q
Neuropsychiatric disease and treatment 2020; 16: 25-33 (IGR: 21-1)


84623 The role of intracranial pressure in glaucoma and therapeutic implications
Plant GT
Eye 2020; 34: 178-191 (IGR: 21-1)


85214 Retinal correlates of psychiatric disorders
Cordeiro MF
Therapeutic advances in chronic disease 2020; 11: 2040622320905215 (IGR: 21-1)


84719 Neuro-ophthalmic Disease in Pediatric Glaucoma Practice
Mendoza CE
Journal of Glaucoma 2020; 29: 117-123 (IGR: 21-1)


85092 Altered Intrinsic Functional Connectivity of the Primary Visual Cortex in Patients with Neovascular Glaucoma: A Resting-State Functional Magnetic Resonance Imaging Study
Shi WQ
Neuropsychiatric disease and treatment 2020; 16: 25-33 (IGR: 21-1)


84706 Evaluation of Cerebrospinal Fluid Pressure by a Formula and Its Role in the Pathogenesis of Glaucoma
Harris A
Journal of Ophthalmology 2019; 2019: 1840481 (IGR: 21-1)


84433 Cerebrospinal fluid and optic nerve sheath compartment syndrome: A common pathophysiological mechanism in five different cases?
Remonda L
Clinical and Experimental Ophthalmology 2020; 48: 212-219 (IGR: 21-1)


84442 Intraocular Pressure in the Eyes of Patients With Carotid-Cavernous Fistulas: Profile, Intereye Asymmetry, and Treatment Outcomes
Madhuri MB
Journal of Glaucoma 2019; 28: 1074-1078 (IGR: 21-1)


84806 Brain morphological alterations of cerebral cortex and subcortical nuclei in high-tension glaucoma brain and its associations with intraocular pressure
Yan T
Neuroradiology 2020; 62: 495-502 (IGR: 21-1)


84504 Review of non-invasive intracranial pressure measurement techniques for ophthalmology applications
Verticchio Vercellin AC
British Journal of Ophthalmology 2020; 104: 887-892 (IGR: 21-1)


85201 Altered Large-Scale Brain Functional Connectivity in Ocular Hypertension
Frezzotti P
Frontiers in neuroscience 2020; 14: 146 (IGR: 21-1)


84719 Neuro-ophthalmic Disease in Pediatric Glaucoma Practice
Grajewski A
Journal of Glaucoma 2020; 29: 117-123 (IGR: 21-1)


84433 Cerebrospinal fluid and optic nerve sheath compartment syndrome: A common pathophysiological mechanism in five different cases?
Killer HE
Clinical and Experimental Ophthalmology 2020; 48: 212-219 (IGR: 21-1)


84719 Neuro-ophthalmic Disease in Pediatric Glaucoma Practice
Chang TC
Journal of Glaucoma 2020; 29: 117-123 (IGR: 21-1)


85092 Altered Intrinsic Functional Connectivity of the Primary Visual Cortex in Patients with Neovascular Glaucoma: A Resting-State Functional Magnetic Resonance Imaging Study
Lin Q
Neuropsychiatric disease and treatment 2020; 16: 25-33 (IGR: 21-1)


84706 Evaluation of Cerebrospinal Fluid Pressure by a Formula and Its Role in the Pathogenesis of Glaucoma
Verticchio Vercellin AC
Journal of Ophthalmology 2019; 2019: 1840481 (IGR: 21-1)


84442 Intraocular Pressure in the Eyes of Patients With Carotid-Cavernous Fistulas: Profile, Intereye Asymmetry, and Treatment Outcomes
Halbe SV
Journal of Glaucoma 2019; 28: 1074-1078 (IGR: 21-1)


84806 Brain morphological alterations of cerebral cortex and subcortical nuclei in high-tension glaucoma brain and its associations with intraocular pressure
Xie Y
Neuroradiology 2020; 62: 495-502 (IGR: 21-1)


84504 Review of non-invasive intracranial pressure measurement techniques for ophthalmology applications
Mathew S
British Journal of Ophthalmology 2020; 104: 887-892 (IGR: 21-1)


85092 Altered Intrinsic Functional Connectivity of the Primary Visual Cortex in Patients with Neovascular Glaucoma: A Resting-State Functional Magnetic Resonance Imaging Study
Li B
Neuropsychiatric disease and treatment 2020; 16: 25-33 (IGR: 21-1)


84442 Intraocular Pressure in the Eyes of Patients With Carotid-Cavernous Fistulas: Profile, Intereye Asymmetry, and Treatment Outcomes
Noronha VO
Journal of Glaucoma 2019; 28: 1074-1078 (IGR: 21-1)


84504 Review of non-invasive intracranial pressure measurement techniques for ophthalmology applications
Siesky B
British Journal of Ophthalmology 2020; 104: 887-892 (IGR: 21-1)


84706 Evaluation of Cerebrospinal Fluid Pressure by a Formula and Its Role in the Pathogenesis of Glaucoma
Saint L
Journal of Ophthalmology 2019; 2019: 1840481 (IGR: 21-1)


84806 Brain morphological alterations of cerebral cortex and subcortical nuclei in high-tension glaucoma brain and its associations with intraocular pressure
Li L
Neuroradiology 2020; 62: 495-502 (IGR: 21-1)


84442 Intraocular Pressure in the Eyes of Patients With Carotid-Cavernous Fistulas: Profile, Intereye Asymmetry, and Treatment Outcomes
George RJ
Journal of Glaucoma 2019; 28: 1074-1078 (IGR: 21-1)


84806 Brain morphological alterations of cerebral cortex and subcortical nuclei in high-tension glaucoma brain and its associations with intraocular pressure
Lu W
Neuroradiology 2020; 62: 495-502 (IGR: 21-1)


85092 Altered Intrinsic Functional Connectivity of the Primary Visual Cortex in Patients with Neovascular Glaucoma: A Resting-State Functional Magnetic Resonance Imaging Study
Min YL
Neuropsychiatric disease and treatment 2020; 16: 25-33 (IGR: 21-1)


84706 Evaluation of Cerebrospinal Fluid Pressure by a Formula and Its Role in the Pathogenesis of Glaucoma
Iester M
Journal of Ophthalmology 2019; 2019: 1840481 (IGR: 21-1)


84504 Review of non-invasive intracranial pressure measurement techniques for ophthalmology applications
Harris A
British Journal of Ophthalmology 2020; 104: 887-892 (IGR: 21-1)


84442 Intraocular Pressure in the Eyes of Patients With Carotid-Cavernous Fistulas: Profile, Intereye Asymmetry, and Treatment Outcomes
Mukherjee B
Journal of Glaucoma 2019; 28: 1074-1078 (IGR: 21-1)


85092 Altered Intrinsic Functional Connectivity of the Primary Visual Cortex in Patients with Neovascular Glaucoma: A Resting-State Functional Magnetic Resonance Imaging Study
Zhou Q; Shao Y
Neuropsychiatric disease and treatment 2020; 16: 25-33 (IGR: 21-1)


82695 Periventricular Leukomalacia in Patients With Pseudo-glaucomatous Cupping
Groth SL
American Journal of Ophthalmology 2020; 211: 31-41 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Minosse S
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82793 Age-Related Eye Disease and Cognitive Function: The Search for Mediators
Varin M
Ophthalmology 2019; 0: (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Minosse S
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82605 Early-Stage Ocular Hypertension Alters Retinal Ganglion Cell Synaptic Transmission in the Visual Thalamus
Bhandari A
Frontiers in cellular neuroscience 2019; 13: 426 (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
Trivedi V
Scientific reports 2019; 9: 14168 (IGR: 20-4)


82491 Resting-state functional magnetic resonance study of primary open-angle glaucoma based on voxelwise brain network degree centrality
Zhang Q
Neuroscience Letters 2019; 712: 134500 (IGR: 20-4)


81997 A cerebral arteriovenous malformation mistakenly diagnosed as dry eye and glaucoma: a case report
Shen S
BMC Ophthalmology 2019; 19: 148 (IGR: 20-4)


81893 A Convergence of Ophthalmic and Life-threatening Emergencies: Acute Angle Closure Glaucoma and Subarachnoid Hemorrhage
Sobol EK
Journal of Glaucoma 2019; 28: e151-e152 (IGR: 20-4)


82390 Fixel-Based Analysis of Visual Pathway White Matter in Primary Open-Angle Glaucoma
Haykal S
Investigative Ophthalmology and Visual Science 2019; 60: 3803-3812 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Minosse S
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82749 Dominance wave propagation during binocular rivalry in mild glaucoma
Tarita-Nistor L
Vision Research 2019; 165: 64-71 (IGR: 20-4)


82293 Current concepts of cerebrospinal fluid dynamics and the translaminar cribrosa pressure gradient: a paradigm of optic disk disease
Liu KC
Survey of Ophthalmology 2020; 65: 48-66 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Minosse S
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82818 Optical Coherence Tomography May Help Distinguish Glaucoma from Suprasellar Tumor-Associated Optic Disc
Mimouni M
Journal of Ophthalmology 2019; 2019: 3564809 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Floris R
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82749 Dominance wave propagation during binocular rivalry in mild glaucoma
Samet S
Vision Research 2019; 165: 64-71 (IGR: 20-4)


82390 Fixel-Based Analysis of Visual Pathway White Matter in Primary Open-Angle Glaucoma
Curcic-Blake B
Investigative Ophthalmology and Visual Science 2019; 60: 3803-3812 (IGR: 20-4)


81893 A Convergence of Ophthalmic and Life-threatening Emergencies: Acute Angle Closure Glaucoma and Subarachnoid Hemorrhage
Carter KL
Journal of Glaucoma 2019; 28: e151-e152 (IGR: 20-4)


82793 Age-Related Eye Disease and Cognitive Function: The Search for Mediators
Kergoat MJ
Ophthalmology 2019; 0: (IGR: 20-4)


82695 Periventricular Leukomalacia in Patients With Pseudo-glaucomatous Cupping
Donahue SP
American Journal of Ophthalmology 2020; 211: 31-41 (IGR: 20-4)


82749 Dominance wave propagation during binocular rivalry in mild glaucoma
Samet S
Vision Research 2019; 165: 64-71 (IGR: 20-4)


82818 Optical Coherence Tomography May Help Distinguish Glaucoma from Suprasellar Tumor-Associated Optic Disc
Stiebel-Kalish H
Journal of Ophthalmology 2019; 2019: 3564809 (IGR: 20-4)


82293 Current concepts of cerebrospinal fluid dynamics and the translaminar cribrosa pressure gradient: a paradigm of optic disk disease
Fleischman D
Survey of Ophthalmology 2020; 65: 48-66 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Garaci F
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
Bang JW
Scientific reports 2019; 9: 14168 (IGR: 20-4)


81997 A cerebral arteriovenous malformation mistakenly diagnosed as dry eye and glaucoma: a case report
Liu X
BMC Ophthalmology 2019; 19: 148 (IGR: 20-4)


82605 Early-Stage Ocular Hypertension Alters Retinal Ganglion Cell Synaptic Transmission in the Visual Thalamus
Smith JC
Frontiers in cellular neuroscience 2019; 13: 426 (IGR: 20-4)


82491 Resting-state functional magnetic resonance study of primary open-angle glaucoma based on voxelwise brain network degree centrality
Shu Y
Neuroscience Letters 2019; 712: 134500 (IGR: 20-4)


82749 Dominance wave propagation during binocular rivalry in mild glaucoma
Trope GE
Vision Research 2019; 165: 64-71 (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
Parra C
Scientific reports 2019; 9: 14168 (IGR: 20-4)


82293 Current concepts of cerebrospinal fluid dynamics and the translaminar cribrosa pressure gradient: a paradigm of optic disk disease
Lee AG
Survey of Ophthalmology 2020; 65: 48-66 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Martucci A
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82695 Periventricular Leukomalacia in Patients With Pseudo-glaucomatous Cupping
Reddy A
American Journal of Ophthalmology 2020; 211: 31-41 (IGR: 20-4)


82390 Fixel-Based Analysis of Visual Pathway White Matter in Primary Open-Angle Glaucoma
Jansonius NM
Investigative Ophthalmology and Visual Science 2019; 60: 3803-3812 (IGR: 20-4)


82491 Resting-state functional magnetic resonance study of primary open-angle glaucoma based on voxelwise brain network degree centrality
Li X
Neuroscience Letters 2019; 712: 134500 (IGR: 20-4)


82818 Optical Coherence Tomography May Help Distinguish Glaucoma from Suprasellar Tumor-Associated Optic Disc
Serov I
Journal of Ophthalmology 2019; 2019: 3564809 (IGR: 20-4)


82793 Age-Related Eye Disease and Cognitive Function: The Search for Mediators
Belleville S
Ophthalmology 2019; 0: (IGR: 20-4)


82605 Early-Stage Ocular Hypertension Alters Retinal Ganglion Cell Synaptic Transmission in the Visual Thalamus
Zhang Y
Frontiers in cellular neuroscience 2019; 13: 426 (IGR: 20-4)


81893 A Convergence of Ophthalmic and Life-threatening Emergencies: Acute Angle Closure Glaucoma and Subarachnoid Hemorrhage
Ibrahim K
Journal of Glaucoma 2019; 28: e151-e152 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Nucci C
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


81997 A cerebral arteriovenous malformation mistakenly diagnosed as dry eye and glaucoma: a case report
Chen J
BMC Ophthalmology 2019; 19: 148 (IGR: 20-4)


82293 Current concepts of cerebrospinal fluid dynamics and the translaminar cribrosa pressure gradient: a paradigm of optic disk disease
Killer HE
Survey of Ophthalmology 2020; 65: 48-66 (IGR: 20-4)


81997 A cerebral arteriovenous malformation mistakenly diagnosed as dry eye and glaucoma: a case report
Yang C
BMC Ophthalmology 2019; 19: 148 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Toschi N
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82818 Optical Coherence Tomography May Help Distinguish Glaucoma from Suprasellar Tumor-Associated Optic Disc
Chodick G
Journal of Ophthalmology 2019; 2019: 3564809 (IGR: 20-4)


82390 Fixel-Based Analysis of Visual Pathway White Matter in Primary Open-Angle Glaucoma
Cornelissen FW
Investigative Ophthalmology and Visual Science 2019; 60: 3803-3812 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Lanzafame S
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
Colbert MK
Scientific reports 2019; 9: 14168 (IGR: 20-4)


81893 A Convergence of Ophthalmic and Life-threatening Emergencies: Acute Angle Closure Glaucoma and Subarachnoid Hemorrhage
Alfaro C
Journal of Glaucoma 2019; 28: e151-e152 (IGR: 20-4)


82605 Early-Stage Ocular Hypertension Alters Retinal Ganglion Cell Synaptic Transmission in the Visual Thalamus
Jensen AA
Frontiers in cellular neuroscience 2019; 13: 426 (IGR: 20-4)


82491 Resting-state functional magnetic resonance study of primary open-angle glaucoma based on voxelwise brain network degree centrality
Xiong C
Neuroscience Letters 2019; 712: 134500 (IGR: 20-4)


82749 Dominance wave propagation during binocular rivalry in mild glaucoma
González EG
Vision Research 2019; 165: 64-71 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Lanzafame S
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82695 Periventricular Leukomalacia in Patients With Pseudo-glaucomatous Cupping
Sarma A
American Journal of Ophthalmology 2020; 211: 31-41 (IGR: 20-4)


82793 Age-Related Eye Disease and Cognitive Function: The Search for Mediators
Li G
Ophthalmology 2019; 0: (IGR: 20-4)


82491 Resting-state functional magnetic resonance study of primary open-angle glaucoma based on voxelwise brain network degree centrality
Li P
Neuroscience Letters 2019; 712: 134500 (IGR: 20-4)


82818 Optical Coherence Tomography May Help Distinguish Glaucoma from Suprasellar Tumor-Associated Optic Disc
Zbedat M
Journal of Ophthalmology 2019; 2019: 3564809 (IGR: 20-4)


82605 Early-Stage Ocular Hypertension Alters Retinal Ganglion Cell Synaptic Transmission in the Visual Thalamus
Reid L
Frontiers in cellular neuroscience 2019; 13: 426 (IGR: 20-4)


82293 Current concepts of cerebrospinal fluid dynamics and the translaminar cribrosa pressure gradient: a paradigm of optic disk disease
Chen JJ
Survey of Ophthalmology 2020; 65: 48-66 (IGR: 20-4)


82695 Periventricular Leukomalacia in Patients With Pseudo-glaucomatous Cupping
Wushensky C
American Journal of Ophthalmology 2020; 211: 31-41 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Di Giuliano F
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


81893 A Convergence of Ophthalmic and Life-threatening Emergencies: Acute Angle Closure Glaucoma and Subarachnoid Hemorrhage
Patel E
Journal of Glaucoma 2019; 28: e151-e152 (IGR: 20-4)


82793 Age-Related Eye Disease and Cognitive Function: The Search for Mediators
Rousseau J
Ophthalmology 2019; 0: (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Garaci F
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Di Giuliano F
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
O'Connell C
Scientific reports 2019; 9: 14168 (IGR: 20-4)


81997 A cerebral arteriovenous malformation mistakenly diagnosed as dry eye and glaucoma: a case report
Shi C
BMC Ophthalmology 2019; 19: 148 (IGR: 20-4)


82491 Resting-state functional magnetic resonance study of primary open-angle glaucoma based on voxelwise brain network degree centrality
Pang Y
Neuroscience Letters 2019; 712: 134500 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Picchi E
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82793 Age-Related Eye Disease and Cognitive Function: The Search for Mediators
Roy-Gagnon MH
Ophthalmology 2019; 0: (IGR: 20-4)


81997 A cerebral arteriovenous malformation mistakenly diagnosed as dry eye and glaucoma: a case report
Zhou Q
BMC Ophthalmology 2019; 19: 148 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Martucci A
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Picchi E
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82818 Optical Coherence Tomography May Help Distinguish Glaucoma from Suprasellar Tumor-Associated Optic Disc
Gaton DD
Journal of Ophthalmology 2019; 2019: 3564809 (IGR: 20-4)


82605 Early-Stage Ocular Hypertension Alters Retinal Ganglion Cell Synaptic Transmission in the Visual Thalamus
Goeser T
Frontiers in cellular neuroscience 2019; 13: 426 (IGR: 20-4)


82293 Current concepts of cerebrospinal fluid dynamics and the translaminar cribrosa pressure gradient: a paradigm of optic disk disease
Bhatti MT
Survey of Ophthalmology 2020; 65: 48-66 (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
Arshad A
Scientific reports 2019; 9: 14168 (IGR: 20-4)


81893 A Convergence of Ophthalmic and Life-threatening Emergencies: Acute Angle Closure Glaucoma and Subarachnoid Hemorrhage
Pasquale LR; Tung C
Journal of Glaucoma 2019; 28: e151-e152 (IGR: 20-4)


82491 Resting-state functional magnetic resonance study of primary open-angle glaucoma based on voxelwise brain network degree centrality
Ye W
Neuroscience Letters 2019; 712: 134500 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Lanzafame S
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Cesareo M
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82605 Early-Stage Ocular Hypertension Alters Retinal Ganglion Cell Synaptic Transmission in the Visual Thalamus
Fan S
Frontiers in cellular neuroscience 2019; 13: 426 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Lanzafame S
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
Faiq MA
Scientific reports 2019; 9: 14168 (IGR: 20-4)


82793 Age-Related Eye Disease and Cognitive Function: The Search for Mediators
Moghadaszadeh S
Ophthalmology 2019; 0: (IGR: 20-4)


82605 Early-Stage Ocular Hypertension Alters Retinal Ganglion Cell Synaptic Transmission in the Visual Thalamus
Ghate D
Frontiers in cellular neuroscience 2019; 13: 426 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Mancino R
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82793 Age-Related Eye Disease and Cognitive Function: The Search for Mediators
Freeman EE
Ophthalmology 2019; 0: (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
Conner IP
Scientific reports 2019; 9: 14168 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Di Giuliano F; Di Giuliano F
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82491 Resting-state functional magnetic resonance study of primary open-angle glaucoma based on voxelwise brain network degree centrality
Yang L
Neuroscience Letters 2019; 712: 134500 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Guerrisi M
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Picchi E
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
Redfern MS
Scientific reports 2019; 9: 14168 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Picchi E
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82491 Resting-state functional magnetic resonance study of primary open-angle glaucoma based on voxelwise brain network degree centrality
Zeng X
Neuroscience Letters 2019; 712: 134500 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Guerrisi M
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82605 Early-Stage Ocular Hypertension Alters Retinal Ganglion Cell Synaptic Transmission in the Visual Thalamus
Van Hook MJ
Frontiers in cellular neuroscience 2019; 13: 426 (IGR: 20-4)


82491 Resting-state functional magnetic resonance study of primary open-angle glaucoma based on voxelwise brain network degree centrality
Zhang X
Neuroscience Letters 2019; 712: 134500 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Cesareo M
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
Wollstein G
Scientific reports 2019; 9: 14168 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Pistolese CA
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Mancino R
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
Schuman JS
Scientific reports 2019; 9: 14168 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Floris R
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82868 Disruption of brain network organization in primary open angle glaucoma
Guerrisi M; Guerrisi M
Conference proceedings : Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2019; 2019: 4338-4341 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Nucci C
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
Cham R
Scientific reports 2019; 9: 14168 (IGR: 20-4)


82785 Primary Open Angle Glaucoma Is Associated With Functional Brain Network Reorganization
Toschi N
Frontiers in neurology 2019; 10: 1134 (IGR: 20-4)


82548 Widespread brain reorganization perturbs visuomotor coordination in early glaucoma
Chan KC
Scientific reports 2019; 9: 14168 (IGR: 20-4)


81038 Glaucoma as a dangerous interplay between ocular fluid and cerebrospinal fluid
Wostyn P
Medical Hypotheses 2019; 127: 97-99 (IGR: 20-3)


80502 Diagnostic utility of central damage determination in glaucoma by magnetic resonance imaging: An observational study
Li M
Experimental and therapeutic medicine 2019; 17: 1891-1895 (IGR: 20-3)


80895 Relative Contributions of Intracranial Pressure and Intraocular Pressure on Lamina Cribrosa Behavior
Tong J
Journal of Ophthalmology 2019; 2019: 3064949 (IGR: 20-3)


80932 Optic nerve head damage relation to intracranial pressure and corneal properties of eye in glaucoma risk assessment
Kharmyssov C
Medical and Biological Engineering and Computing 2019; 57: 1591-1603 (IGR: 20-3)


80476 Lessons from glaucoma: rethinking the fluid-brain barriers in common neurodegenerative disorders
Carreras FJ
Neural Regeneration Research 2019; 14: 962-966 (IGR: 20-3)


81173 Altered functional connectivity density in primary angle-closure glaucoma patients at resting-state
Chen L
Quantitative imaging in medicine and surgery 2019; 9: 603-614 (IGR: 20-3)


80509 Enhancement of Retinal Function and of Neural Conduction Along the Visual Pathway Induced by Treatment with Citicoline Eye Drops in Liposomal Formulation in Open Angle Glaucoma: A Pilot Electrofunctional Study
Parisi V
Advances in Therapy 2019; 36: 987-996 (IGR: 20-3)


81014 Combined machine learning and diffusion tensor imaging reveals altered anatomic fiber connectivity of the brain in primary open-angle glaucoma
Qu X
Brain Research 2019; 1718: 83-90 (IGR: 20-3)


80801 Platelet-generated amyloid beta peptides in Alzheimer's disease and glaucoma
Inyushin M
Histology and Histopathology 2019; 34: 843-856 (IGR: 20-3)


81438 Identifying the Critical Factors Governing Translaminar Pressure Differential Through a Compartmental Model
Kaskar OG
Investigative Ophthalmology and Visual Science 2019; 60: 3204-3214 (IGR: 20-3)


80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Wang Y
Acta Ophthalmologica 2019; 97: e341-e348 (IGR: 20-3)


80502 Diagnostic utility of central damage determination in glaucoma by magnetic resonance imaging: An observational study
Ke M
Experimental and therapeutic medicine 2019; 17: 1891-1895 (IGR: 20-3)


81173 Altered functional connectivity density in primary angle-closure glaucoma patients at resting-state
Li S
Quantitative imaging in medicine and surgery 2019; 9: 603-614 (IGR: 20-3)


80509 Enhancement of Retinal Function and of Neural Conduction Along the Visual Pathway Induced by Treatment with Citicoline Eye Drops in Liposomal Formulation in Open Angle Glaucoma: A Pilot Electrofunctional Study
Oddone F
Advances in Therapy 2019; 36: 987-996 (IGR: 20-3)


80801 Platelet-generated amyloid beta peptides in Alzheimer's disease and glaucoma
Zayas-Santiago A
Histology and Histopathology 2019; 34: 843-856 (IGR: 20-3)


81438 Identifying the Critical Factors Governing Translaminar Pressure Differential Through a Compartmental Model
Fleischman D
Investigative Ophthalmology and Visual Science 2019; 60: 3204-3214 (IGR: 20-3)


80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Lu W
Acta Ophthalmologica 2019; 97: e341-e348 (IGR: 20-3)


80932 Optic nerve head damage relation to intracranial pressure and corneal properties of eye in glaucoma risk assessment
Abdildin YG
Medical and Biological Engineering and Computing 2019; 57: 1591-1603 (IGR: 20-3)


81014 Combined machine learning and diffusion tensor imaging reveals altered anatomic fiber connectivity of the brain in primary open-angle glaucoma
Wang Q
Brain Research 2019; 1718: 83-90 (IGR: 20-3)


80895 Relative Contributions of Intracranial Pressure and Intraocular Pressure on Lamina Cribrosa Behavior
Ghate D
Journal of Ophthalmology 2019; 2019: 3064949 (IGR: 20-3)


80509 Enhancement of Retinal Function and of Neural Conduction Along the Visual Pathway Induced by Treatment with Citicoline Eye Drops in Liposomal Formulation in Open Angle Glaucoma: A Pilot Electrofunctional Study
Roberti G
Advances in Therapy 2019; 36: 987-996 (IGR: 20-3)


80932 Optic nerve head damage relation to intracranial pressure and corneal properties of eye in glaucoma risk assessment
Kostas KV
Medical and Biological Engineering and Computing 2019; 57: 1591-1603 (IGR: 20-3)


81014 Combined machine learning and diffusion tensor imaging reveals altered anatomic fiber connectivity of the brain in primary open-angle glaucoma
Chen W
Brain Research 2019; 1718: 83-90 (IGR: 20-3)


80502 Diagnostic utility of central damage determination in glaucoma by magnetic resonance imaging: An observational study
Song Y
Experimental and therapeutic medicine 2019; 17: 1891-1895 (IGR: 20-3)


81438 Identifying the Critical Factors Governing Translaminar Pressure Differential Through a Compartmental Model
Lee YZ
Investigative Ophthalmology and Visual Science 2019; 60: 3204-3214 (IGR: 20-3)


80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Yan T
Acta Ophthalmologica 2019; 97: e341-e348 (IGR: 20-3)


80895 Relative Contributions of Intracranial Pressure and Intraocular Pressure on Lamina Cribrosa Behavior
Kedar S
Journal of Ophthalmology 2019; 2019: 3064949 (IGR: 20-3)


81173 Altered functional connectivity density in primary angle-closure glaucoma patients at resting-state
Cai F
Quantitative imaging in medicine and surgery 2019; 9: 603-614 (IGR: 20-3)


80801 Platelet-generated amyloid beta peptides in Alzheimer's disease and glaucoma
Rojas L
Histology and Histopathology 2019; 34: 843-856 (IGR: 20-3)


80895 Relative Contributions of Intracranial Pressure and Intraocular Pressure on Lamina Cribrosa Behavior
Gu L
Journal of Ophthalmology 2019; 2019: 3064949 (IGR: 20-3)


80801 Platelet-generated amyloid beta peptides in Alzheimer's disease and glaucoma
Kucheryavykh Y
Histology and Histopathology 2019; 34: 843-856 (IGR: 20-3)


81438 Identifying the Critical Factors Governing Translaminar Pressure Differential Through a Compartmental Model
Thorp BD
Investigative Ophthalmology and Visual Science 2019; 60: 3204-3214 (IGR: 20-3)


80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Zhou J
Acta Ophthalmologica 2019; 97: e341-e348 (IGR: 20-3)


81014 Combined machine learning and diffusion tensor imaging reveals altered anatomic fiber connectivity of the brain in primary open-angle glaucoma
Li T
Brain Research 2019; 1718: 83-90 (IGR: 20-3)


80509 Enhancement of Retinal Function and of Neural Conduction Along the Visual Pathway Induced by Treatment with Citicoline Eye Drops in Liposomal Formulation in Open Angle Glaucoma: A Pilot Electrofunctional Study
Tanga L
Advances in Therapy 2019; 36: 987-996 (IGR: 20-3)


81173 Altered functional connectivity density in primary angle-closure glaucoma patients at resting-state
Wu L
Quantitative imaging in medicine and surgery 2019; 9: 603-614 (IGR: 20-3)


80502 Diagnostic utility of central damage determination in glaucoma by magnetic resonance imaging: An observational study
Mu K
Experimental and therapeutic medicine 2019; 17: 1891-1895 (IGR: 20-3)


81014 Combined machine learning and diffusion tensor imaging reveals altered anatomic fiber connectivity of the brain in primary open-angle glaucoma
Guo J
Brain Research 2019; 1718: 83-90 (IGR: 20-3)


80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Xie Y
Acta Ophthalmologica 2019; 97: e341-e348 (IGR: 20-3)


80801 Platelet-generated amyloid beta peptides in Alzheimer's disease and glaucoma
Kucheryavykh L
Histology and Histopathology 2019; 34: 843-856 (IGR: 20-3)


80509 Enhancement of Retinal Function and of Neural Conduction Along the Visual Pathway Induced by Treatment with Citicoline Eye Drops in Liposomal Formulation in Open Angle Glaucoma: A Pilot Electrofunctional Study
Carnevale C
Advances in Therapy 2019; 36: 987-996 (IGR: 20-3)


81438 Identifying the Critical Factors Governing Translaminar Pressure Differential Through a Compartmental Model
Kuznetsov AV
Investigative Ophthalmology and Visual Science 2019; 60: 3204-3214 (IGR: 20-3)


80509 Enhancement of Retinal Function and of Neural Conduction Along the Visual Pathway Induced by Treatment with Citicoline Eye Drops in Liposomal Formulation in Open Angle Glaucoma: A Pilot Electrofunctional Study
Carnevale C
Advances in Therapy 2019; 36: 987-996 (IGR: 20-3)


80502 Diagnostic utility of central damage determination in glaucoma by magnetic resonance imaging: An observational study
Zhang H
Experimental and therapeutic medicine 2019; 17: 1891-1895 (IGR: 20-3)


81173 Altered functional connectivity density in primary angle-closure glaucoma patients at resting-state
Gong H
Quantitative imaging in medicine and surgery 2019; 9: 603-614 (IGR: 20-3)


81438 Identifying the Critical Factors Governing Translaminar Pressure Differential Through a Compartmental Model
Grace L
Investigative Ophthalmology and Visual Science 2019; 60: 3204-3214 (IGR: 20-3)


80509 Enhancement of Retinal Function and of Neural Conduction Along the Visual Pathway Induced by Treatment with Citicoline Eye Drops in Liposomal Formulation in Open Angle Glaucoma: A Pilot Electrofunctional Study
Ziccardi L
Advances in Therapy 2019; 36: 987-996 (IGR: 20-3)


80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Yuan J
Acta Ophthalmologica 2019; 97: e341-e348 (IGR: 20-3)


80502 Diagnostic utility of central damage determination in glaucoma by magnetic resonance imaging: An observational study
Chen Z
Experimental and therapeutic medicine 2019; 17: 1891-1895 (IGR: 20-3)


81173 Altered functional connectivity density in primary angle-closure glaucoma patients at resting-state
Pei C
Quantitative imaging in medicine and surgery 2019; 9: 603-614 (IGR: 20-3)


81014 Combined machine learning and diffusion tensor imaging reveals altered anatomic fiber connectivity of the brain in primary open-angle glaucoma
Wang H
Brain Research 2019; 1718: 83-90 (IGR: 20-3)


81173 Altered functional connectivity density in primary angle-closure glaucoma patients at resting-state
Zhou F
Quantitative imaging in medicine and surgery 2019; 9: 603-614 (IGR: 20-3)


80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Liu G
Acta Ophthalmologica 2019; 97: e341-e348 (IGR: 20-3)


81014 Combined machine learning and diffusion tensor imaging reveals altered anatomic fiber connectivity of the brain in primary open-angle glaucoma
Zhang X
Brain Research 2019; 1718: 83-90 (IGR: 20-3)


80509 Enhancement of Retinal Function and of Neural Conduction Along the Visual Pathway Induced by Treatment with Citicoline Eye Drops in Liposomal Formulation in Open Angle Glaucoma: A Pilot Electrofunctional Study
Manni G
Advances in Therapy 2019; 36: 987-996 (IGR: 20-3)


81014 Combined machine learning and diffusion tensor imaging reveals altered anatomic fiber connectivity of the brain in primary open-angle glaucoma
Wang Y
Brain Research 2019; 1718: 83-90 (IGR: 20-3)


81173 Altered functional connectivity density in primary angle-closure glaucoma patients at resting-state
Zeng X
Quantitative imaging in medicine and surgery 2019; 9: 603-614 (IGR: 20-3)


80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Teng Y
Acta Ophthalmologica 2019; 97: e341-e348 (IGR: 20-3)


81014 Combined machine learning and diffusion tensor imaging reveals altered anatomic fiber connectivity of the brain in primary open-angle glaucoma
Wang N
Brain Research 2019; 1718: 83-90 (IGR: 20-3)


80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Han W
Acta Ophthalmologica 2019; 97: e341-e348 (IGR: 20-3)


81014 Combined machine learning and diffusion tensor imaging reveals altered anatomic fiber connectivity of the brain in primary open-angle glaucoma
Xian J
Brain Research 2019; 1718: 83-90 (IGR: 20-3)


80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Chen D; Qiu J
Acta Ophthalmologica 2019; 97: e341-e348 (IGR: 20-3)


79760
Kasi A
Neural Regeneration Research 2019; 14: 446-449 (IGR: 20-2)


79856 Subcortical visual pathway may be a new way for early diagnosis of glaucoma
Sun Y
Medical Hypotheses 2019; 123: 47-49 (IGR: 20-2)


79852 Frequency-dependent neural activity in primary angle-closure glaucoma
Jiang F
Neuropsychiatric disease and treatment 2019; 15: 271-282 (IGR: 20-2)


80028 The Effect of Acetazolamide and Weight Loss on Intraocular Pressure in Idiopathic Intracranial Hypertension Patients
Banik R
Journal of Glaucoma 2019; 28: 352-356 (IGR: 20-2)


79760
Faiq MA
Neural Regeneration Research 2019; 14: 446-449 (IGR: 20-2)


79856 Subcortical visual pathway may be a new way for early diagnosis of glaucoma
Huang W
Medical Hypotheses 2019; 123: 47-49 (IGR: 20-2)


80028 The Effect of Acetazolamide and Weight Loss on Intraocular Pressure in Idiopathic Intracranial Hypertension Patients
Kupersmith MJ
Journal of Glaucoma 2019; 28: 352-356 (IGR: 20-2)


79852 Frequency-dependent neural activity in primary angle-closure glaucoma
Yu C; Zuo MJ
Neuropsychiatric disease and treatment 2019; 15: 271-282 (IGR: 20-2)


80028 The Effect of Acetazolamide and Weight Loss on Intraocular Pressure in Idiopathic Intracranial Hypertension Patients
Wang JK
Journal of Glaucoma 2019; 28: 352-356 (IGR: 20-2)


79856 Subcortical visual pathway may be a new way for early diagnosis of glaucoma
Li F
Medical Hypotheses 2019; 123: 47-49 (IGR: 20-2)


79760
Chan KC
Neural Regeneration Research 2019; 14: 446-449 (IGR: 20-2)


80028 The Effect of Acetazolamide and Weight Loss on Intraocular Pressure in Idiopathic Intracranial Hypertension Patients
Garvin MK
Journal of Glaucoma 2019; 28: 352-356 (IGR: 20-2)


79852 Frequency-dependent neural activity in primary angle-closure glaucoma
Zhang C
Neuropsychiatric disease and treatment 2019; 15: 271-282 (IGR: 20-2)


79856 Subcortical visual pathway may be a new way for early diagnosis of glaucoma
Li H; Wang L
Medical Hypotheses 2019; 123: 47-49 (IGR: 20-2)


80028 The Effect of Acetazolamide and Weight Loss on Intraocular Pressure in Idiopathic Intracranial Hypertension Patients

Journal of Glaucoma 2019; 28: 352-356 (IGR: 20-2)


79852 Frequency-dependent neural activity in primary angle-closure glaucoma
Wang Y
Neuropsychiatric disease and treatment 2019; 15: 271-282 (IGR: 20-2)


79856 Subcortical visual pathway may be a new way for early diagnosis of glaucoma
Huang Y
Medical Hypotheses 2019; 123: 47-49 (IGR: 20-2)


79852 Frequency-dependent neural activity in primary angle-closure glaucoma
Zhou FQ; Zeng XJ
Neuropsychiatric disease and treatment 2019; 15: 271-282 (IGR: 20-2)


79856 Subcortical visual pathway may be a new way for early diagnosis of glaucoma
Zhang X
Medical Hypotheses 2019; 123: 47-49 (IGR: 20-2)


78820 Noninvasive intracranial pressure assessment using otoacoustic emissions: An application in glaucoma
Loiselle AR
PLoS ONE 2018; 13: e0204939 (IGR: 20-1)


78583 Reduced Cerebral Blood Flow in the Visual Cortex and Its Correlation With Glaucomatous Structural Damage to the Retina in Patients With Mild to Moderate Primary Open-angle Glaucoma
Wang Q
Journal of Glaucoma 2018; 27: 816-822 (IGR: 20-1)


79097 Diffusion Tensor Imaging Detects Microstructural Differences of Visual Pathway in Patients With Primary Open-Angle Glaucoma and Ocular Hypertension
Song XY
Frontiers in human neuroscience 2018; 12: 426 (IGR: 20-1)


79259 Study of lamina cribrosa depth and optic nerve in patients with spontaneous intracranial hypotension
Soares A
European Journal of Ophthalmology 2018; 0: 1120672118804791 (IGR: 20-1)


79018 The Translaminar Pressure Gradient: Papilledema After Trabeculectomy Treated With Optic Nerve Sheath Fenestration
Radke PM
Journal of Glaucoma 2018; 27: e154-e157 (IGR: 20-1)


79262 Magnetic Resonance Spectroscopy Features of the Visual Pathways in Patients with Glaucoma
Aksoy DÖ
Clinical neuroradiology 2019; 29: 615-621 (IGR: 20-1)


79018 The Translaminar Pressure Gradient: Papilledema After Trabeculectomy Treated With Optic Nerve Sheath Fenestration
Rubinstein TJ
Journal of Glaucoma 2018; 27: e154-e157 (IGR: 20-1)


78583 Reduced Cerebral Blood Flow in the Visual Cortex and Its Correlation With Glaucomatous Structural Damage to the Retina in Patients With Mild to Moderate Primary Open-angle Glaucoma
Chen W
Journal of Glaucoma 2018; 27: 816-822 (IGR: 20-1)


79259 Study of lamina cribrosa depth and optic nerve in patients with spontaneous intracranial hypotension
Lopes N
European Journal of Ophthalmology 2018; 0: 1120672118804791 (IGR: 20-1)


79262 Magnetic Resonance Spectroscopy Features of the Visual Pathways in Patients with Glaucoma
Umurhan Akkan JC
Clinical neuroradiology 2019; 29: 615-621 (IGR: 20-1)


79097 Diffusion Tensor Imaging Detects Microstructural Differences of Visual Pathway in Patients With Primary Open-Angle Glaucoma and Ocular Hypertension
Puyang Z
Frontiers in human neuroscience 2018; 12: 426 (IGR: 20-1)


78820 Noninvasive intracranial pressure assessment using otoacoustic emissions: An application in glaucoma
de Kleine E
PLoS ONE 2018; 13: e0204939 (IGR: 20-1)


79097 Diffusion Tensor Imaging Detects Microstructural Differences of Visual Pathway in Patients With Primary Open-Angle Glaucoma and Ocular Hypertension
Chen AH
Frontiers in human neuroscience 2018; 12: 426 (IGR: 20-1)


78820 Noninvasive intracranial pressure assessment using otoacoustic emissions: An application in glaucoma
van Dijk P
PLoS ONE 2018; 13: e0204939 (IGR: 20-1)


79262 Magnetic Resonance Spectroscopy Features of the Visual Pathways in Patients with Glaucoma
Alkan A
Clinical neuroradiology 2019; 29: 615-621 (IGR: 20-1)


78583 Reduced Cerebral Blood Flow in the Visual Cortex and Its Correlation With Glaucomatous Structural Damage to the Retina in Patients With Mild to Moderate Primary Open-angle Glaucoma
Qu X
Journal of Glaucoma 2018; 27: 816-822 (IGR: 20-1)


79018 The Translaminar Pressure Gradient: Papilledema After Trabeculectomy Treated With Optic Nerve Sheath Fenestration
Hamilton SR
Journal of Glaucoma 2018; 27: e154-e157 (IGR: 20-1)


79259 Study of lamina cribrosa depth and optic nerve in patients with spontaneous intracranial hypotension
Morgado G
European Journal of Ophthalmology 2018; 0: 1120672118804791 (IGR: 20-1)


78820 Noninvasive intracranial pressure assessment using otoacoustic emissions: An application in glaucoma
Jansonius NM
PLoS ONE 2018; 13: e0204939 (IGR: 20-1)


79259 Study of lamina cribrosa depth and optic nerve in patients with spontaneous intracranial hypotension
Serino J
European Journal of Ophthalmology 2018; 0: 1120672118804791 (IGR: 20-1)


79018 The Translaminar Pressure Gradient: Papilledema After Trabeculectomy Treated With Optic Nerve Sheath Fenestration
Jamil AL
Journal of Glaucoma 2018; 27: e154-e157 (IGR: 20-1)


79097 Diffusion Tensor Imaging Detects Microstructural Differences of Visual Pathway in Patients With Primary Open-Angle Glaucoma and Ocular Hypertension
Zhao J
Frontiers in human neuroscience 2018; 12: 426 (IGR: 20-1)


79262 Magnetic Resonance Spectroscopy Features of the Visual Pathways in Patients with Glaucoma
Aralaşmak A
Clinical neuroradiology 2019; 29: 615-621 (IGR: 20-1)


78583 Reduced Cerebral Blood Flow in the Visual Cortex and Its Correlation With Glaucomatous Structural Damage to the Retina in Patients With Mild to Moderate Primary Open-angle Glaucoma
Wang H
Journal of Glaucoma 2018; 27: 816-822 (IGR: 20-1)


79097 Diffusion Tensor Imaging Detects Microstructural Differences of Visual Pathway in Patients With Primary Open-Angle Glaucoma and Ocular Hypertension
Li XJ
Frontiers in human neuroscience 2018; 12: 426 (IGR: 20-1)


79259 Study of lamina cribrosa depth and optic nerve in patients with spontaneous intracranial hypotension
Painhas T
European Journal of Ophthalmology 2018; 0: 1120672118804791 (IGR: 20-1)


79262 Magnetic Resonance Spectroscopy Features of the Visual Pathways in Patients with Glaucoma
Otçu Temur H
Clinical neuroradiology 2019; 29: 615-621 (IGR: 20-1)


79018 The Translaminar Pressure Gradient: Papilledema After Trabeculectomy Treated With Optic Nerve Sheath Fenestration
Sires BS
Journal of Glaucoma 2018; 27: e154-e157 (IGR: 20-1)


78583 Reduced Cerebral Blood Flow in the Visual Cortex and Its Correlation With Glaucomatous Structural Damage to the Retina in Patients With Mild to Moderate Primary Open-angle Glaucoma
Wang Y
Journal of Glaucoma 2018; 27: 816-822 (IGR: 20-1)


79097 Diffusion Tensor Imaging Detects Microstructural Differences of Visual Pathway in Patients With Primary Open-Angle Glaucoma and Ocular Hypertension
Chen YY
Frontiers in human neuroscience 2018; 12: 426 (IGR: 20-1)


78583 Reduced Cerebral Blood Flow in the Visual Cortex and Its Correlation With Glaucomatous Structural Damage to the Retina in Patients With Mild to Moderate Primary Open-angle Glaucoma
Zhang X
Journal of Glaucoma 2018; 27: 816-822 (IGR: 20-1)


79259 Study of lamina cribrosa depth and optic nerve in patients with spontaneous intracranial hypotension
Almeida C
European Journal of Ophthalmology 2018; 0: 1120672118804791 (IGR: 20-1)


79262 Magnetic Resonance Spectroscopy Features of the Visual Pathways in Patients with Glaucoma
Yurtsever İ
Clinical neuroradiology 2019; 29: 615-621 (IGR: 20-1)


78583 Reduced Cerebral Blood Flow in the Visual Cortex and Its Correlation With Glaucomatous Structural Damage to the Retina in Patients With Mild to Moderate Primary Open-angle Glaucoma
Li T
Journal of Glaucoma 2018; 27: 816-822 (IGR: 20-1)


79097 Diffusion Tensor Imaging Detects Microstructural Differences of Visual Pathway in Patients With Primary Open-Angle Glaucoma and Ocular Hypertension
Tang WJ
Frontiers in human neuroscience 2018; 12: 426 (IGR: 20-1)


79259 Study of lamina cribrosa depth and optic nerve in patients with spontaneous intracranial hypotension
Vaz F
European Journal of Ophthalmology 2018; 0: 1120672118804791 (IGR: 20-1)


78583 Reduced Cerebral Blood Flow in the Visual Cortex and Its Correlation With Glaucomatous Structural Damage to the Retina in Patients With Mild to Moderate Primary Open-angle Glaucoma
Wang N
Journal of Glaucoma 2018; 27: 816-822 (IGR: 20-1)


79097 Diffusion Tensor Imaging Detects Microstructural Differences of Visual Pathway in Patients With Primary Open-Angle Glaucoma and Ocular Hypertension
Zhang YY
Frontiers in human neuroscience 2018; 12: 426 (IGR: 20-1)


78583 Reduced Cerebral Blood Flow in the Visual Cortex and Its Correlation With Glaucomatous Structural Damage to the Retina in Patients With Mild to Moderate Primary Open-angle Glaucoma
Xian J
Journal of Glaucoma 2018; 27: 816-822 (IGR: 20-1)


78164 Intracranial pressure and glaucoma: Is there a new therapeutic perspective on the horizon?
Wostyn P
Medical Hypotheses 2018; 118: 98-102 (IGR: 19-4)


78084 Quantitative MRI evaluation of glaucomatous changes in the visual pathway
Fukuda M
PLoS ONE 2018; 13: e0197027 (IGR: 19-4)


77893 Investigation of lateral geniculate nucleus volume and diffusion tensor imaging in patients with normal tension glaucoma using 7 tesla magnetic resonance imaging
Schmidt MA; Knott M
PLoS ONE 2018; 13: e0198830 (IGR: 19-4)


78084 Quantitative MRI evaluation of glaucomatous changes in the visual pathway
Omodaka K
PLoS ONE 2018; 13: e0197027 (IGR: 19-4)


78164 Intracranial pressure and glaucoma: Is there a new therapeutic perspective on the horizon?
Van Dam D
Medical Hypotheses 2018; 118: 98-102 (IGR: 19-4)


78084 Quantitative MRI evaluation of glaucomatous changes in the visual pathway
Tatewaki Y
PLoS ONE 2018; 13: e0197027 (IGR: 19-4)


78164 Intracranial pressure and glaucoma: Is there a new therapeutic perspective on the horizon?
De Deyn PP
Medical Hypotheses 2018; 118: 98-102 (IGR: 19-4)


77893 Investigation of lateral geniculate nucleus volume and diffusion tensor imaging in patients with normal tension glaucoma using 7 tesla magnetic resonance imaging
Heidemann R
PLoS ONE 2018; 13: e0198830 (IGR: 19-4)


78084 Quantitative MRI evaluation of glaucomatous changes in the visual pathway
Himori N
PLoS ONE 2018; 13: e0197027 (IGR: 19-4)


77893 Investigation of lateral geniculate nucleus volume and diffusion tensor imaging in patients with normal tension glaucoma using 7 tesla magnetic resonance imaging
Michelson G; Kober T
PLoS ONE 2018; 13: e0198830 (IGR: 19-4)


78084 Quantitative MRI evaluation of glaucomatous changes in the visual pathway
Matsudaira I
PLoS ONE 2018; 13: e0197027 (IGR: 19-4)


77893 Investigation of lateral geniculate nucleus volume and diffusion tensor imaging in patients with normal tension glaucoma using 7 tesla magnetic resonance imaging
Dörfler A
PLoS ONE 2018; 13: e0198830 (IGR: 19-4)


78084 Quantitative MRI evaluation of glaucomatous changes in the visual pathway
Nishiguchi KM; Murata T
PLoS ONE 2018; 13: e0197027 (IGR: 19-4)


77893 Investigation of lateral geniculate nucleus volume and diffusion tensor imaging in patients with normal tension glaucoma using 7 tesla magnetic resonance imaging
Engelhorn T
PLoS ONE 2018; 13: e0198830 (IGR: 19-4)


78084 Quantitative MRI evaluation of glaucomatous changes in the visual pathway
Taki Y; Nakazawa T
PLoS ONE 2018; 13: e0197027 (IGR: 19-4)


76966 Reduced Functional and Anatomic Interhemispheric Homotopic Connectivity in Primary Open-Angle Glaucoma: A Combined Resting State-fMRI and DTI Study
Wang Q
Investigative Ophthalmology and Visual Science 2018; 59: 1861-1868 (IGR: 19-3)


76917 Intracranial and Intraocular Pressure at the Lamina Cribrosa: Gradient Effects
Jóhannesson G
Current neurology and neuroscience reports 2018; 18: 25 (IGR: 19-3)


76534 Microstructural visual pathway abnormalities in patients with primary glaucoma: 3 T diffusion kurtosis imaging study
Xu ZF
Clinical radiology 2018; 73: 591.e9-591.e15 (IGR: 19-3)


77277 Changes of Visual Pathway and Brain Connectivity in Glaucoma: A Systematic Review
Nuzzi R
Frontiers in neuroscience 2018; 12: 363 (IGR: 19-3)


76777 Noninvasive evaluation of cerebrospinal fluid pressure in ocular hypertension: a preliminary study
Xie X
Acta Ophthalmologica 2018; 96: e570-e576 (IGR: 19-3)


77298 Rare Case Of Primary Congenital Glaucoma With Hypoplasia Corpus Callosum
Gunawan PI
Journal of Ayub Medical College Abbottabad: JAMC 2018; 30: 286-288 (IGR: 19-3)


77277 Changes of Visual Pathway and Brain Connectivity in Glaucoma: A Systematic Review
Dallorto L
Frontiers in neuroscience 2018; 12: 363 (IGR: 19-3)


77298 Rare Case Of Primary Congenital Glaucoma With Hypoplasia Corpus Callosum
Komaratih E
Journal of Ayub Medical College Abbottabad: JAMC 2018; 30: 286-288 (IGR: 19-3)


76966 Reduced Functional and Anatomic Interhemispheric Homotopic Connectivity in Primary Open-Angle Glaucoma: A Combined Resting State-fMRI and DTI Study
Chen W
Investigative Ophthalmology and Visual Science 2018; 59: 1861-1868 (IGR: 19-3)


76917 Intracranial and Intraocular Pressure at the Lamina Cribrosa: Gradient Effects
Eklund A
Current neurology and neuroscience reports 2018; 18: 25 (IGR: 19-3)


76534 Microstructural visual pathway abnormalities in patients with primary glaucoma: 3 T diffusion kurtosis imaging study
Sun JS
Clinical radiology 2018; 73: 591.e9-591.e15 (IGR: 19-3)


76777 Noninvasive evaluation of cerebrospinal fluid pressure in ocular hypertension: a preliminary study
Chen W
Acta Ophthalmologica 2018; 96: e570-e576 (IGR: 19-3)


76966 Reduced Functional and Anatomic Interhemispheric Homotopic Connectivity in Primary Open-Angle Glaucoma: A Combined Resting State-fMRI and DTI Study
Wang H
Investigative Ophthalmology and Visual Science 2018; 59: 1861-1868 (IGR: 19-3)


76534 Microstructural visual pathway abnormalities in patients with primary glaucoma: 3 T diffusion kurtosis imaging study
Zhang XH
Clinical radiology 2018; 73: 591.e9-591.e15 (IGR: 19-3)


77277 Changes of Visual Pathway and Brain Connectivity in Glaucoma: A Systematic Review
Rolle T
Frontiers in neuroscience 2018; 12: 363 (IGR: 19-3)


76777 Noninvasive evaluation of cerebrospinal fluid pressure in ocular hypertension: a preliminary study
Li Z
Acta Ophthalmologica 2018; 96: e570-e576 (IGR: 19-3)


76917 Intracranial and Intraocular Pressure at the Lamina Cribrosa: Gradient Effects
Lindén C
Current neurology and neuroscience reports 2018; 18: 25 (IGR: 19-3)


77298 Rare Case Of Primary Congenital Glaucoma With Hypoplasia Corpus Callosum
; Etika R
Journal of Ayub Medical College Abbottabad: JAMC 2018; 30: 286-288 (IGR: 19-3)


76534 Microstructural visual pathway abnormalities in patients with primary glaucoma: 3 T diffusion kurtosis imaging study
Feng YY
Clinical radiology 2018; 73: 591.e9-591.e15 (IGR: 19-3)


76966 Reduced Functional and Anatomic Interhemispheric Homotopic Connectivity in Primary Open-Angle Glaucoma: A Combined Resting State-fMRI and DTI Study
Zhang X
Investigative Ophthalmology and Visual Science 2018; 59: 1861-1868 (IGR: 19-3)


76777 Noninvasive evaluation of cerebrospinal fluid pressure in ocular hypertension: a preliminary study
Thomas R
Acta Ophthalmologica 2018; 96: e570-e576 (IGR: 19-3)


76534 Microstructural visual pathway abnormalities in patients with primary glaucoma: 3 T diffusion kurtosis imaging study
Pan AZ
Clinical radiology 2018; 73: 591.e9-591.e15 (IGR: 19-3)


76777 Noninvasive evaluation of cerebrospinal fluid pressure in ocular hypertension: a preliminary study
Li Y
Acta Ophthalmologica 2018; 96: e570-e576 (IGR: 19-3)


77298 Rare Case Of Primary Congenital Glaucoma With Hypoplasia Corpus Callosum
Harianto A
Journal of Ayub Medical College Abbottabad: JAMC 2018; 30: 286-288 (IGR: 19-3)


76966 Reduced Functional and Anatomic Interhemispheric Homotopic Connectivity in Primary Open-Angle Glaucoma: A Combined Resting State-fMRI and DTI Study
Qu X
Investigative Ophthalmology and Visual Science 2018; 59: 1861-1868 (IGR: 19-3)


77298 Rare Case Of Primary Congenital Glaucoma With Hypoplasia Corpus Callosum
Saharso D
Journal of Ayub Medical College Abbottabad: JAMC 2018; 30: 286-288 (IGR: 19-3)


76966 Reduced Functional and Anatomic Interhemispheric Homotopic Connectivity in Primary Open-Angle Glaucoma: A Combined Resting State-fMRI and DTI Study
Wang Y
Investigative Ophthalmology and Visual Science 2018; 59: 1861-1868 (IGR: 19-3)


76534 Microstructural visual pathway abnormalities in patients with primary glaucoma: 3 T diffusion kurtosis imaging study
Gao MY
Clinical radiology 2018; 73: 591.e9-591.e15 (IGR: 19-3)


76777 Noninvasive evaluation of cerebrospinal fluid pressure in ocular hypertension: a preliminary study
Xian J; Yang D
Acta Ophthalmologica 2018; 96: e570-e576 (IGR: 19-3)


76966 Reduced Functional and Anatomic Interhemispheric Homotopic Connectivity in Primary Open-Angle Glaucoma: A Combined Resting State-fMRI and DTI Study
Li T
Investigative Ophthalmology and Visual Science 2018; 59: 1861-1868 (IGR: 19-3)


76534 Microstructural visual pathway abnormalities in patients with primary glaucoma: 3 T diffusion kurtosis imaging study
Zhao H
Clinical radiology 2018; 73: 591.e9-591.e15 (IGR: 19-3)


76777 Noninvasive evaluation of cerebrospinal fluid pressure in ocular hypertension: a preliminary study
Wang H
Acta Ophthalmologica 2018; 96: e570-e576 (IGR: 19-3)


76966 Reduced Functional and Anatomic Interhemispheric Homotopic Connectivity in Primary Open-Angle Glaucoma: A Combined Resting State-fMRI and DTI Study
Wang N; Xian J
Investigative Ophthalmology and Visual Science 2018; 59: 1861-1868 (IGR: 19-3)


76777 Noninvasive evaluation of cerebrospinal fluid pressure in ocular hypertension: a preliminary study
Zhang S; Kang Z; Wang N;
Acta Ophthalmologica 2018; 96: e570-e576 (IGR: 19-3)


75319 Glaucoma in patients with shunt-treated normal pressure hydrocephalus
Gallina P
Journal of Neurosurgery 2017; 0: 1-7 (IGR: 19-2)


75642 Morphological and Functional Changes of Locus Coeruleus in Patients with Primary Open-Angle Glaucoma and Animal Models
Yuan Y
Neuroscience 2018; 372: 141-153 (IGR: 19-2)


75373 Flow dynamics of cerebrospinal fluid between the intracranial cavity and the subarachnoid space of the optic nerve measured with a diffusion magnetic resonance imaging sequence in patients with normal tension glaucoma
Boye D
Clinical and Experimental Ophthalmology 2018; 46: 511-518 (IGR: 19-2)


75642 Morphological and Functional Changes of Locus Coeruleus in Patients with Primary Open-Angle Glaucoma and Animal Models
Zhu Y
Neuroscience 2018; 372: 141-153 (IGR: 19-2)


75319 Glaucoma in patients with shunt-treated normal pressure hydrocephalus
Savastano A
Journal of Neurosurgery 2017; 0: 1-7 (IGR: 19-2)


75373 Flow dynamics of cerebrospinal fluid between the intracranial cavity and the subarachnoid space of the optic nerve measured with a diffusion magnetic resonance imaging sequence in patients with normal tension glaucoma
Montali M; Miller NR
Clinical and Experimental Ophthalmology 2018; 46: 511-518 (IGR: 19-2)


75642 Morphological and Functional Changes of Locus Coeruleus in Patients with Primary Open-Angle Glaucoma and Animal Models
Song Y
Neuroscience 2018; 372: 141-153 (IGR: 19-2)


75319 Glaucoma in patients with shunt-treated normal pressure hydrocephalus
Becattini E
Journal of Neurosurgery 2017; 0: 1-7 (IGR: 19-2)


75373 Flow dynamics of cerebrospinal fluid between the intracranial cavity and the subarachnoid space of the optic nerve measured with a diffusion magnetic resonance imaging sequence in patients with normal tension glaucoma
Pircher A
Clinical and Experimental Ophthalmology 2018; 46: 511-518 (IGR: 19-2)


75319 Glaucoma in patients with shunt-treated normal pressure hydrocephalus
Orlandini S
Journal of Neurosurgery 2017; 0: 1-7 (IGR: 19-2)


75642 Morphological and Functional Changes of Locus Coeruleus in Patients with Primary Open-Angle Glaucoma and Animal Models
Zhao Y
Neuroscience 2018; 372: 141-153 (IGR: 19-2)


75373 Flow dynamics of cerebrospinal fluid between the intracranial cavity and the subarachnoid space of the optic nerve measured with a diffusion magnetic resonance imaging sequence in patients with normal tension glaucoma
Gruber P
Clinical and Experimental Ophthalmology 2018; 46: 511-518 (IGR: 19-2)


75642 Morphological and Functional Changes of Locus Coeruleus in Patients with Primary Open-Angle Glaucoma and Animal Models
Yan X
Neuroscience 2018; 372: 141-153 (IGR: 19-2)


75319 Glaucoma in patients with shunt-treated normal pressure hydrocephalus
Scollato A
Journal of Neurosurgery 2017; 0: 1-7 (IGR: 19-2)


75642 Morphological and Functional Changes of Locus Coeruleus in Patients with Primary Open-Angle Glaucoma and Animal Models
Chen W
Neuroscience 2018; 372: 141-153 (IGR: 19-2)


75319 Glaucoma in patients with shunt-treated normal pressure hydrocephalus
Rizzo S
Journal of Neurosurgery 2017; 0: 1-7 (IGR: 19-2)


75373 Flow dynamics of cerebrospinal fluid between the intracranial cavity and the subarachnoid space of the optic nerve measured with a diffusion magnetic resonance imaging sequence in patients with normal tension glaucoma
Killer HE
Clinical and Experimental Ophthalmology 2018; 46: 511-518 (IGR: 19-2)


75319 Glaucoma in patients with shunt-treated normal pressure hydrocephalus
Carreras G
Journal of Neurosurgery 2017; 0: 1-7 (IGR: 19-2)


75642 Morphological and Functional Changes of Locus Coeruleus in Patients with Primary Open-Angle Glaucoma and Animal Models
Li M
Neuroscience 2018; 372: 141-153 (IGR: 19-2)


75373 Flow dynamics of cerebrospinal fluid between the intracranial cavity and the subarachnoid space of the optic nerve measured with a diffusion magnetic resonance imaging sequence in patients with normal tension glaucoma
Remonda L
Clinical and Experimental Ophthalmology 2018; 46: 511-518 (IGR: 19-2)


75319 Glaucoma in patients with shunt-treated normal pressure hydrocephalus
Di Lorenzo N
Journal of Neurosurgery 2017; 0: 1-7 (IGR: 19-2)


75373 Flow dynamics of cerebrospinal fluid between the intracranial cavity and the subarachnoid space of the optic nerve measured with a diffusion magnetic resonance imaging sequence in patients with normal tension glaucoma
Berberat J
Clinical and Experimental Ophthalmology 2018; 46: 511-518 (IGR: 19-2)


75642 Morphological and Functional Changes of Locus Coeruleus in Patients with Primary Open-Angle Glaucoma and Animal Models
Gong J; Mu K
Neuroscience 2018; 372: 141-153 (IGR: 19-2)


75319 Glaucoma in patients with shunt-treated normal pressure hydrocephalus
Porfirio B
Journal of Neurosurgery 2017; 0: 1-7 (IGR: 19-2)


75642 Morphological and Functional Changes of Locus Coeruleus in Patients with Primary Open-Angle Glaucoma and Animal Models
Wang J; Zhang H; Chen Z
Neuroscience 2018; 372: 141-153 (IGR: 19-2)


74506 Evidence for Cerebrospinal Fluid Entry Into the Optic Nerve via a Glymphatic Pathway
Mathieu E
Investigative Ophthalmology and Visual Science 2017; 58: 4784-4791 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Yan Z
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74666 Diffuse brain damage in normal tension glaucoma
Giorgio A
Human Brain Mapping 2018; 39: 532-541 (IGR: 19-1)


74441 Intracranial Pressure Evaluation by Ophthalmologist
Čmelo J
?eska a Slovenska Oftalmologie 2017; 73: 57-60 (IGR: 19-1)


74728 Normal-Tension Glaucoma Has Normal Intracranial Pressure: A Prospective Study of Intracranial Pressure and Intraocular Pressure in Different Body Positions
Lindén C
Ophthalmology 2018; 125: 361-368 (IGR: 19-1)


74539 Glaucoma and the brain: Trans-synaptic degeneration, structural change, and implications for neuroprotection
Lawlor M
Survey of Ophthalmology 2018; 63: 296-306 (IGR: 19-1)


74444 The Upright Body Position Increases Translaminar Pressure Gradient in Normotensive and Hypertensive Rats
Skrzypecki J
Current Eye Research 2017; 42: 1634-1637 (IGR: 19-1)


74440 Translaminar Gradient and Glaucoma
Čmelo J
?eska a Slovenska Oftalmologie 2017; 73: 52-56 (IGR: 19-1)


74750 Tenascins in Retinal and Optic Nerve Neurodegeneration
Reinhard J
Frontiers in integrative neuroscience 2017; 11: 30 (IGR: 19-1)


74539 Glaucoma and the brain: Trans-synaptic degeneration, structural change, and implications for neuroprotection
Danesh-Meyer H
Survey of Ophthalmology 2018; 63: 296-306 (IGR: 19-1)


74666 Diffuse brain damage in normal tension glaucoma
Zhang J
Human Brain Mapping 2018; 39: 532-541 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Liao H
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74750 Tenascins in Retinal and Optic Nerve Neurodegeneration
Roll L
Frontiers in integrative neuroscience 2017; 11: 30 (IGR: 19-1)


74444 The Upright Body Position Increases Translaminar Pressure Gradient in Normotensive and Hypertensive Rats
Ufnal M
Current Eye Research 2017; 42: 1634-1637 (IGR: 19-1)


74728 Normal-Tension Glaucoma Has Normal Intracranial Pressure: A Prospective Study of Intracranial Pressure and Intraocular Pressure in Different Body Positions
Qvarlander S
Ophthalmology 2018; 125: 361-368 (IGR: 19-1)


74506 Evidence for Cerebrospinal Fluid Entry Into the Optic Nerve via a Glymphatic Pathway
Gupta N
Investigative Ophthalmology and Visual Science 2017; 58: 4784-4791 (IGR: 19-1)


74441 Intracranial Pressure Evaluation by Ophthalmologist
Illéš R
?eska a Slovenska Oftalmologie 2017; 73: 57-60 (IGR: 19-1)


74666 Diffuse brain damage in normal tension glaucoma
Costantino F
Human Brain Mapping 2018; 39: 532-541 (IGR: 19-1)


74441 Intracranial Pressure Evaluation by Ophthalmologist
Šteňo J
?eska a Slovenska Oftalmologie 2017; 73: 57-60 (IGR: 19-1)


74728 Normal-Tension Glaucoma Has Normal Intracranial Pressure: A Prospective Study of Intracranial Pressure and Intraocular Pressure in Different Body Positions
Jóhannesson G
Ophthalmology 2018; 125: 361-368 (IGR: 19-1)


74539 Glaucoma and the brain: Trans-synaptic degeneration, structural change, and implications for neuroprotection
Levin LA
Survey of Ophthalmology 2018; 63: 296-306 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Chen H
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74506 Evidence for Cerebrospinal Fluid Entry Into the Optic Nerve via a Glymphatic Pathway
Ahari A
Investigative Ophthalmology and Visual Science 2017; 58: 4784-4791 (IGR: 19-1)


74750 Tenascins in Retinal and Optic Nerve Neurodegeneration
Faissner A
Frontiers in integrative neuroscience 2017; 11: 30 (IGR: 19-1)


74506 Evidence for Cerebrospinal Fluid Entry Into the Optic Nerve via a Glymphatic Pathway
Zhou X
Investigative Ophthalmology and Visual Science 2017; 58: 4784-4791 (IGR: 19-1)


74539 Glaucoma and the brain: Trans-synaptic degeneration, structural change, and implications for neuroprotection
Davagnanam I
Survey of Ophthalmology 2018; 63: 296-306 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Deng S
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74666 Diffuse brain damage in normal tension glaucoma
De Stefano N
Human Brain Mapping 2018; 39: 532-541 (IGR: 19-1)


74728 Normal-Tension Glaucoma Has Normal Intracranial Pressure: A Prospective Study of Intracranial Pressure and Intraocular Pressure in Different Body Positions
Johansson E
Ophthalmology 2018; 125: 361-368 (IGR: 19-1)


74539 Glaucoma and the brain: Trans-synaptic degeneration, structural change, and implications for neuroprotection
De Vita E
Survey of Ophthalmology 2018; 63: 296-306 (IGR: 19-1)


74728 Normal-Tension Glaucoma Has Normal Intracranial Pressure: A Prospective Study of Intracranial Pressure and Intraocular Pressure in Different Body Positions
Östlund F
Ophthalmology 2018; 125: 361-368 (IGR: 19-1)


74506 Evidence for Cerebrospinal Fluid Entry Into the Optic Nerve via a Glymphatic Pathway
Hanna J
Investigative Ophthalmology and Visual Science 2017; 58: 4784-4791 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Jia Y
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74666 Diffuse brain damage in normal tension glaucoma
Frezzotti P
Human Brain Mapping 2018; 39: 532-541 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Deng C
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74506 Evidence for Cerebrospinal Fluid Entry Into the Optic Nerve via a Glymphatic Pathway
Yücel YH
Investigative Ophthalmology and Visual Science 2017; 58: 4784-4791 (IGR: 19-1)


74728 Normal-Tension Glaucoma Has Normal Intracranial Pressure: A Prospective Study of Intracranial Pressure and Intraocular Pressure in Different Body Positions
Malm J
Ophthalmology 2018; 125: 361-368 (IGR: 19-1)


74539 Glaucoma and the brain: Trans-synaptic degeneration, structural change, and implications for neuroprotection
Plant GT
Survey of Ophthalmology 2018; 63: 296-306 (IGR: 19-1)


74728 Normal-Tension Glaucoma Has Normal Intracranial Pressure: A Prospective Study of Intracranial Pressure and Intraocular Pressure in Different Body Positions
Eklund A
Ophthalmology 2018; 125: 361-368 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Lin J; Ge J; Zhuo Y
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


72611 The Optic Canal: A Bottleneck for Cerebrospinal Fluid Dynamics in Normal-Tension Glaucoma?
Pircher A
Frontiers in neurology 2017; 8: 47 (IGR: 18-4)


72808 Deformation of the Lamina Cribrosa and Optic Nerve Due to Changes in Cerebrospinal Fluid Pressure
Feola AJ
Investigative Ophthalmology and Visual Science 2017; 58: 2070-2078 (IGR: 18-4)


72963 Relationship between the optic nerve sheath diameter and lumbar cerebrospinal fluid pressure in patients with normal tension glaucoma
Pircher A; Montali M
Eye 2017; 31: 1365-1372 (IGR: 18-4)


72808 Deformation of the Lamina Cribrosa and Optic Nerve Due to Changes in Cerebrospinal Fluid Pressure
Coudrillier B
Investigative Ophthalmology and Visual Science 2017; 58: 2070-2078 (IGR: 18-4)


72611 The Optic Canal: A Bottleneck for Cerebrospinal Fluid Dynamics in Normal-Tension Glaucoma?
Montali M; Berberat J
Frontiers in neurology 2017; 8: 47 (IGR: 18-4)


72963 Relationship between the optic nerve sheath diameter and lumbar cerebrospinal fluid pressure in patients with normal tension glaucoma
Berberat J
Eye 2017; 31: 1365-1372 (IGR: 18-4)


72808 Deformation of the Lamina Cribrosa and Optic Nerve Due to Changes in Cerebrospinal Fluid Pressure
Mulvihill J; Geraldes DM
Investigative Ophthalmology and Visual Science 2017; 58: 2070-2078 (IGR: 18-4)


72611 The Optic Canal: A Bottleneck for Cerebrospinal Fluid Dynamics in Normal-Tension Glaucoma?
Remonda L
Frontiers in neurology 2017; 8: 47 (IGR: 18-4)


72963 Relationship between the optic nerve sheath diameter and lumbar cerebrospinal fluid pressure in patients with normal tension glaucoma
Remonda L
Eye 2017; 31: 1365-1372 (IGR: 18-4)


72611 The Optic Canal: A Bottleneck for Cerebrospinal Fluid Dynamics in Normal-Tension Glaucoma?
Killer HE
Frontiers in neurology 2017; 8: 47 (IGR: 18-4)


72963 Relationship between the optic nerve sheath diameter and lumbar cerebrospinal fluid pressure in patients with normal tension glaucoma
Killer HE
Eye 2017; 31: 1365-1372 (IGR: 18-4)


72808 Deformation of the Lamina Cribrosa and Optic Nerve Due to Changes in Cerebrospinal Fluid Pressure
Vo NT; Albon J; Abel RL; Samuels BC; Ethier CR
Investigative Ophthalmology and Visual Science 2017; 58: 2070-2078 (IGR: 18-4)


71530 Study of optic radiations in patients with primary open-angle glaucoma with diffusion tensor imaging
Li T
Zhonghua Yi Xue Za Zhi 2017; 97: 347-352 (IGR: 18-3)


71184 Intracranial Pressure Influences the Behavior of the Optic Nerve Head
Hua Y
Journal of Biomechanical Engineering 2017; 139: (IGR: 18-3)


71613 Diffusion tensor imaging of the visual pathway in glaucomatous optic nerve atrophy
Engelhorn T
Ophthalmologe 2017; 114: 906-921 (IGR: 18-3)


71363 Glymphatic stasis at the site of the lamina cribrosa as a potential mechanism underlying open-angle glaucoma
Wostyn P
Clinical and Experimental Ophthalmology 2017; 45: 539-547 (IGR: 18-3)


71605 Structural and functional brain changes in early- and mid-stage primary open-angle glaucoma using voxel-based morphometry and functional magnetic resonance imaging
Jiang MM
Medicine 2017; 96: e6139 (IGR: 18-3)


71616 Clinical implications of the melanopsin-based non-image-forming visual system
Ksendzovsky A
Neurology 2017; 88: 1282-1290 (IGR: 18-3)


71057 MRI Study of the Posterior Visual Pathways in Primary Open Angle Glaucoma
Zhou W
Journal of Glaucoma 2017; 26: 173-181 (IGR: 18-3)


71535 Retinotopic fMRI Reveals Visual Dysfunction and Functional Reorganization in the Visual Cortex of Mild to Moderate Glaucoma Patients
Zhou W
Journal of Glaucoma 2017; 26: 430-437 (IGR: 18-3)


71605 Structural and functional brain changes in early- and mid-stage primary open-angle glaucoma using voxel-based morphometry and functional magnetic resonance imaging
Zhou Q
Medicine 2017; 96: e6139 (IGR: 18-3)


71535 Retinotopic fMRI Reveals Visual Dysfunction and Functional Reorganization in the Visual Cortex of Mild to Moderate Glaucoma Patients
Muir ER
Journal of Glaucoma 2017; 26: 430-437 (IGR: 18-3)


71616 Clinical implications of the melanopsin-based non-image-forming visual system
Pomeraniec IJ
Neurology 2017; 88: 1282-1290 (IGR: 18-3)


71613 Diffusion tensor imaging of the visual pathway in glaucomatous optic nerve atrophy
A Schmidt M
Ophthalmologe 2017; 114: 906-921 (IGR: 18-3)


71184 Intracranial Pressure Influences the Behavior of the Optic Nerve Head
Tong J
Journal of Biomechanical Engineering 2017; 139: (IGR: 18-3)


71530 Study of optic radiations in patients with primary open-angle glaucoma with diffusion tensor imaging
Miao W
Zhonghua Yi Xue Za Zhi 2017; 97: 347-352 (IGR: 18-3)


71057 MRI Study of the Posterior Visual Pathways in Primary Open Angle Glaucoma
Muir ER
Journal of Glaucoma 2017; 26: 173-181 (IGR: 18-3)


71363 Glymphatic stasis at the site of the lamina cribrosa as a potential mechanism underlying open-angle glaucoma
Killer HE
Clinical and Experimental Ophthalmology 2017; 45: 539-547 (IGR: 18-3)


71613 Diffusion tensor imaging of the visual pathway in glaucomatous optic nerve atrophy
Dörfler A
Ophthalmologe 2017; 114: 906-921 (IGR: 18-3)


71184 Intracranial Pressure Influences the Behavior of the Optic Nerve Head
Ghate D
Journal of Biomechanical Engineering 2017; 139: (IGR: 18-3)


71535 Retinotopic fMRI Reveals Visual Dysfunction and Functional Reorganization in the Visual Cortex of Mild to Moderate Glaucoma Patients
Nagi KS
Journal of Glaucoma 2017; 26: 430-437 (IGR: 18-3)


71530 Study of optic radiations in patients with primary open-angle glaucoma with diffusion tensor imaging
He HG
Zhonghua Yi Xue Za Zhi 2017; 97: 347-352 (IGR: 18-3)


71057 MRI Study of the Posterior Visual Pathways in Primary Open Angle Glaucoma
Chalfin S
Journal of Glaucoma 2017; 26: 173-181 (IGR: 18-3)


71363 Glymphatic stasis at the site of the lamina cribrosa as a potential mechanism underlying open-angle glaucoma
De Deyn PP
Clinical and Experimental Ophthalmology 2017; 45: 539-547 (IGR: 18-3)


71605 Structural and functional brain changes in early- and mid-stage primary open-angle glaucoma using voxel-based morphometry and functional magnetic resonance imaging
Liu XY
Medicine 2017; 96: e6139 (IGR: 18-3)


71616 Clinical implications of the melanopsin-based non-image-forming visual system
Zaghloul KA
Neurology 2017; 88: 1282-1290 (IGR: 18-3)


71057 MRI Study of the Posterior Visual Pathways in Primary Open Angle Glaucoma
Nagi KS
Journal of Glaucoma 2017; 26: 173-181 (IGR: 18-3)


71605 Structural and functional brain changes in early- and mid-stage primary open-angle glaucoma using voxel-based morphometry and functional magnetic resonance imaging
Shi CZ
Medicine 2017; 96: e6139 (IGR: 18-3)


71530 Study of optic radiations in patients with primary open-angle glaucoma with diffusion tensor imaging
Xian JF
Zhonghua Yi Xue Za Zhi 2017; 97: 347-352 (IGR: 18-3)


71613 Diffusion tensor imaging of the visual pathway in glaucomatous optic nerve atrophy
Michelson G
Ophthalmologe 2017; 114: 906-921 (IGR: 18-3)


71616 Clinical implications of the melanopsin-based non-image-forming visual system
Provencio JJ
Neurology 2017; 88: 1282-1290 (IGR: 18-3)


71535 Retinotopic fMRI Reveals Visual Dysfunction and Functional Reorganization in the Visual Cortex of Mild to Moderate Glaucoma Patients
Chalfin S
Journal of Glaucoma 2017; 26: 430-437 (IGR: 18-3)


71184 Intracranial Pressure Influences the Behavior of the Optic Nerve Head
Kedar S
Journal of Biomechanical Engineering 2017; 139: (IGR: 18-3)


71605 Structural and functional brain changes in early- and mid-stage primary open-angle glaucoma using voxel-based morphometry and functional magnetic resonance imaging
Chen J
Medicine 2017; 96: e6139 (IGR: 18-3)


71616 Clinical implications of the melanopsin-based non-image-forming visual system
Provencio I
Neurology 2017; 88: 1282-1290 (IGR: 18-3)


71057 MRI Study of the Posterior Visual Pathways in Primary Open Angle Glaucoma
Duong TQ
Journal of Glaucoma 2017; 26: 173-181 (IGR: 18-3)


71184 Intracranial Pressure Influences the Behavior of the Optic Nerve Head
Gu L
Journal of Biomechanical Engineering 2017; 139: (IGR: 18-3)


71535 Retinotopic fMRI Reveals Visual Dysfunction and Functional Reorganization in the Visual Cortex of Mild to Moderate Glaucoma Patients
Rodriguez P; Duong TQ
Journal of Glaucoma 2017; 26: 430-437 (IGR: 18-3)


71605 Structural and functional brain changes in early- and mid-stage primary open-angle glaucoma using voxel-based morphometry and functional magnetic resonance imaging
Huang XH
Medicine 2017; 96: e6139 (IGR: 18-3)


70694 Asymmetrical Intraocular Pressures and Asymmetrical Papilloedema in Pseudotumor Cerebri Syndrome
Lawlor M
Neuro-Ophthalmology 2016; 40: 292-296 (IGR: 18-2)


69957 Early changes of brain connectivity in primary open angle glaucoma
Frezzotti P
Human Brain Mapping 2016; 37: 4581-4596 (IGR: 18-2)


70904 Intrinsic Functional Connectivity Alterations of the Primary Visual Cortex in Primary Angle-Closure Glaucoma Patients before and after Surgery: A Resting-State fMRI Study
Li S
PLoS ONE 2017; 12: e0170598 (IGR: 18-2)


69972 Retinal Structures and Visual Cortex Activity are Impaired Prior to Clinical Vision Loss in Glaucoma
Murphy MC
Scientific reports 2016; 6: 31464 (IGR: 18-2)


70181 Estimated Cerebrospina Fluid Pressure and the 5-Year Incidence of Primary Open-Angle Glaucoma in a Chinese Population
Li L
PLoS ONE 2016; 11: e0162862 (IGR: 18-2)


70325 Altered functional connectivity within and between the default model network and the visual network in primary open-angle glaucoma: a resting-state fMRI study
Wang J
Brain imaging and behavior 2017; 11: 1154-1163 (IGR: 18-2)


70679 Optic Radiations Microstructural Changes in Glaucoma and Association With Severity: A Study Using 3Tesla-Magnetic Resonance Diffusion Tensor Imaging
Tellouck L; Durieux M
Investigative Ophthalmology and Visual Science 2016; 57: 6539-6547 (IGR: 18-2)


69957 Early changes of brain connectivity in primary open angle glaucoma
Giorgio A
Human Brain Mapping 2016; 37: 4581-4596 (IGR: 18-2)


70181 Estimated Cerebrospina Fluid Pressure and the 5-Year Incidence of Primary Open-Angle Glaucoma in a Chinese Population
Li C
PLoS ONE 2016; 11: e0162862 (IGR: 18-2)


70904 Intrinsic Functional Connectivity Alterations of the Primary Visual Cortex in Primary Angle-Closure Glaucoma Patients before and after Surgery: A Resting-State fMRI Study
Li P
PLoS ONE 2017; 12: e0170598 (IGR: 18-2)


70694 Asymmetrical Intraocular Pressures and Asymmetrical Papilloedema in Pseudotumor Cerebri Syndrome
Zhang MG
Neuro-Ophthalmology 2016; 40: 292-296 (IGR: 18-2)


70325 Altered functional connectivity within and between the default model network and the visual network in primary open-angle glaucoma: a resting-state fMRI study
Li T
Brain imaging and behavior 2017; 11: 1154-1163 (IGR: 18-2)


69972 Retinal Structures and Visual Cortex Activity are Impaired Prior to Clinical Vision Loss in Glaucoma
Conner IP
Scientific reports 2016; 6: 31464 (IGR: 18-2)


70325 Altered functional connectivity within and between the default model network and the visual network in primary open-angle glaucoma: a resting-state fMRI study
Zhou P
Brain imaging and behavior 2017; 11: 1154-1163 (IGR: 18-2)


70679 Optic Radiations Microstructural Changes in Glaucoma and Association With Severity: A Study Using 3Tesla-Magnetic Resonance Diffusion Tensor Imaging
Coupé P
Investigative Ophthalmology and Visual Science 2016; 57: 6539-6547 (IGR: 18-2)


70904 Intrinsic Functional Connectivity Alterations of the Primary Visual Cortex in Primary Angle-Closure Glaucoma Patients before and after Surgery: A Resting-State fMRI Study
Gong H
PLoS ONE 2017; 12: e0170598 (IGR: 18-2)


70694 Asymmetrical Intraocular Pressures and Asymmetrical Papilloedema in Pseudotumor Cerebri Syndrome
Virgo J
Neuro-Ophthalmology 2016; 40: 292-296 (IGR: 18-2)


70181 Estimated Cerebrospina Fluid Pressure and the 5-Year Incidence of Primary Open-Angle Glaucoma in a Chinese Population
Zhong H
PLoS ONE 2016; 11: e0162862 (IGR: 18-2)


69972 Retinal Structures and Visual Cortex Activity are Impaired Prior to Clinical Vision Loss in Glaucoma
Teng CY
Scientific reports 2016; 6: 31464 (IGR: 18-2)


69957 Early changes of brain connectivity in primary open angle glaucoma
Toto F
Human Brain Mapping 2016; 37: 4581-4596 (IGR: 18-2)


70694 Asymmetrical Intraocular Pressures and Asymmetrical Papilloedema in Pseudotumor Cerebri Syndrome
Plant GT
Neuro-Ophthalmology 2016; 40: 292-296 (IGR: 18-2)


70325 Altered functional connectivity within and between the default model network and the visual network in primary open-angle glaucoma: a resting-state fMRI study
Wang N
Brain imaging and behavior 2017; 11: 1154-1163 (IGR: 18-2)


70181 Estimated Cerebrospina Fluid Pressure and the 5-Year Incidence of Primary Open-Angle Glaucoma in a Chinese Population
Tao Y
PLoS ONE 2016; 11: e0162862 (IGR: 18-2)


69972 Retinal Structures and Visual Cortex Activity are Impaired Prior to Clinical Vision Loss in Glaucoma
Lawrence JD
Scientific reports 2016; 6: 31464 (IGR: 18-2)


69957 Early changes of brain connectivity in primary open angle glaucoma
De Leucio A
Human Brain Mapping 2016; 37: 4581-4596 (IGR: 18-2)


70679 Optic Radiations Microstructural Changes in Glaucoma and Association With Severity: A Study Using 3Tesla-Magnetic Resonance Diffusion Tensor Imaging
Cougnard-Grégoire A
Investigative Ophthalmology and Visual Science 2016; 57: 6539-6547 (IGR: 18-2)


70904 Intrinsic Functional Connectivity Alterations of the Primary Visual Cortex in Primary Angle-Closure Glaucoma Patients before and after Surgery: A Resting-State fMRI Study
Jiang F; Liu D
PLoS ONE 2017; 12: e0170598 (IGR: 18-2)


69972 Retinal Structures and Visual Cortex Activity are Impaired Prior to Clinical Vision Loss in Glaucoma
Safiullah Z
Scientific reports 2016; 6: 31464 (IGR: 18-2)


70679 Optic Radiations Microstructural Changes in Glaucoma and Association With Severity: A Study Using 3Tesla-Magnetic Resonance Diffusion Tensor Imaging
Tellouck J
Investigative Ophthalmology and Visual Science 2016; 57: 6539-6547 (IGR: 18-2)


69957 Early changes of brain connectivity in primary open angle glaucoma
De Stefano N
Human Brain Mapping 2016; 37: 4581-4596 (IGR: 18-2)


70325 Altered functional connectivity within and between the default model network and the visual network in primary open-angle glaucoma: a resting-state fMRI study
Xian J
Brain imaging and behavior 2017; 11: 1154-1163 (IGR: 18-2)


70181 Estimated Cerebrospina Fluid Pressure and the 5-Year Incidence of Primary Open-Angle Glaucoma in a Chinese Population
Yuan Y
PLoS ONE 2016; 11: e0162862 (IGR: 18-2)


70325 Altered functional connectivity within and between the default model network and the visual network in primary open-angle glaucoma: a resting-state fMRI study
He H
Brain imaging and behavior 2017; 11: 1154-1163 (IGR: 18-2)


70181 Estimated Cerebrospina Fluid Pressure and the 5-Year Incidence of Primary Open-Angle Glaucoma in a Chinese Population
Pan CW
PLoS ONE 2016; 11: e0162862 (IGR: 18-2)


69972 Retinal Structures and Visual Cortex Activity are Impaired Prior to Clinical Vision Loss in Glaucoma
Wang B
Scientific reports 2016; 6: 31464 (IGR: 18-2)


70679 Optic Radiations Microstructural Changes in Glaucoma and Association With Severity: A Study Using 3Tesla-Magnetic Resonance Diffusion Tensor Imaging
Tourdias T
Investigative Ophthalmology and Visual Science 2016; 57: 6539-6547 (IGR: 18-2)


70904 Intrinsic Functional Connectivity Alterations of the Primary Visual Cortex in Primary Angle-Closure Glaucoma Patients before and after Surgery: A Resting-State fMRI Study
Cai F
PLoS ONE 2017; 12: e0170598 (IGR: 18-2)


69972 Retinal Structures and Visual Cortex Activity are Impaired Prior to Clinical Vision Loss in Glaucoma
Bilonick RA
Scientific reports 2016; 6: 31464 (IGR: 18-2)


70679 Optic Radiations Microstructural Changes in Glaucoma and Association With Severity: A Study Using 3Tesla-Magnetic Resonance Diffusion Tensor Imaging
Munsch F
Investigative Ophthalmology and Visual Science 2016; 57: 6539-6547 (IGR: 18-2)


70904 Intrinsic Functional Connectivity Alterations of the Primary Visual Cortex in Primary Angle-Closure Glaucoma Patients before and after Surgery: A Resting-State fMRI Study
Pei C; Zhou F
PLoS ONE 2017; 12: e0170598 (IGR: 18-2)


70679 Optic Radiations Microstructural Changes in Glaucoma and Association With Severity: A Study Using 3Tesla-Magnetic Resonance Diffusion Tensor Imaging
Garrigues A
Investigative Ophthalmology and Visual Science 2016; 57: 6539-6547 (IGR: 18-2)


69972 Retinal Structures and Visual Cortex Activity are Impaired Prior to Clinical Vision Loss in Glaucoma
Kim SG
Scientific reports 2016; 6: 31464 (IGR: 18-2)


70679 Optic Radiations Microstructural Changes in Glaucoma and Association With Severity: A Study Using 3Tesla-Magnetic Resonance Diffusion Tensor Imaging
Helmer C
Investigative Ophthalmology and Visual Science 2016; 57: 6539-6547 (IGR: 18-2)


70904 Intrinsic Functional Connectivity Alterations of the Primary Visual Cortex in Primary Angle-Closure Glaucoma Patients before and after Surgery: A Resting-State fMRI Study
Zeng X
PLoS ONE 2017; 12: e0170598 (IGR: 18-2)


69972 Retinal Structures and Visual Cortex Activity are Impaired Prior to Clinical Vision Loss in Glaucoma
Wollstein G
Scientific reports 2016; 6: 31464 (IGR: 18-2)


70679 Optic Radiations Microstructural Changes in Glaucoma and Association With Severity: A Study Using 3Tesla-Magnetic Resonance Diffusion Tensor Imaging
Malet F
Investigative Ophthalmology and Visual Science 2016; 57: 6539-6547 (IGR: 18-2)


69972 Retinal Structures and Visual Cortex Activity are Impaired Prior to Clinical Vision Loss in Glaucoma
Schuman JS; Chan KC
Scientific reports 2016; 6: 31464 (IGR: 18-2)


70679 Optic Radiations Microstructural Changes in Glaucoma and Association With Severity: A Study Using 3Tesla-Magnetic Resonance Diffusion Tensor Imaging
Dartigues JF; Dousset V; Delcourt C; Schweitzer C
Investigative Ophthalmology and Visual Science 2016; 57: 6539-6547 (IGR: 18-2)


69005 Thalamic Visual Prosthesis
Nguyen HT
IEEE Transactions on Bio-Medical Engineering 2016; 63: 1573-1580 (IGR: 18-1)


69121 Juvenile-onset Normal Tension Glaucoma From Chronic, Recurrent Low Cerebrospinal Fluid Pressure
Yusuf IH
Journal of Glaucoma 2016; 25: e738-e740 (IGR: 18-1)


69227 The pressure difference between eye and brain changes with posture
Eklund A
Annals of Neurology 2016; 80: 269-276 (IGR: 18-1)


68987 Anterior lamina cribrosa surface position in idiopathic intracranial hypertension and glaucoma
Villarruel JM; Li XQ
European Journal of Ophthalmology 2016; 0: 27274186 (IGR: 18-1)


69121 Juvenile-onset Normal Tension Glaucoma From Chronic, Recurrent Low Cerebrospinal Fluid Pressure
Ratnarajan G
Journal of Glaucoma 2016; 25: e738-e740 (IGR: 18-1)


69005 Thalamic Visual Prosthesis
Tangutooru SM
IEEE Transactions on Bio-Medical Engineering 2016; 63: 1573-1580 (IGR: 18-1)


69227 The pressure difference between eye and brain changes with posture
Jóhannesson G; Johansson E
Annals of Neurology 2016; 80: 269-276 (IGR: 18-1)


68987 Anterior lamina cribrosa surface position in idiopathic intracranial hypertension and glaucoma
Bach-Holm D
European Journal of Ophthalmology 2016; 0: 27274186 (IGR: 18-1)


69005 Thalamic Visual Prosthesis
Rountree CM
IEEE Transactions on Bio-Medical Engineering 2016; 63: 1573-1580 (IGR: 18-1)


69121 Juvenile-onset Normal Tension Glaucoma From Chronic, Recurrent Low Cerebrospinal Fluid Pressure
Kerr RS
Journal of Glaucoma 2016; 25: e738-e740 (IGR: 18-1)


69227 The pressure difference between eye and brain changes with posture
Holmlund P
Annals of Neurology 2016; 80: 269-276 (IGR: 18-1)


69005 Thalamic Visual Prosthesis
Kantzos AJ
IEEE Transactions on Bio-Medical Engineering 2016; 63: 1573-1580 (IGR: 18-1)


68987 Anterior lamina cribrosa surface position in idiopathic intracranial hypertension and glaucoma
Hamann S
European Journal of Ophthalmology 2016; 0: 27274186 (IGR: 18-1)


69121 Juvenile-onset Normal Tension Glaucoma From Chronic, Recurrent Low Cerebrospinal Fluid Pressure
Salmon JF
Journal of Glaucoma 2016; 25: e738-e740 (IGR: 18-1)


69005 Thalamic Visual Prosthesis
Tarlochan F
IEEE Transactions on Bio-Medical Engineering 2016; 63: 1573-1580 (IGR: 18-1)


69227 The pressure difference between eye and brain changes with posture
Qvarlander S; Ambarki K
Annals of Neurology 2016; 80: 269-276 (IGR: 18-1)


69005 Thalamic Visual Prosthesis
Yoon WJ
IEEE Transactions on Bio-Medical Engineering 2016; 63: 1573-1580 (IGR: 18-1)


69227 The pressure difference between eye and brain changes with posture
Wåhlin A
Annals of Neurology 2016; 80: 269-276 (IGR: 18-1)


69005 Thalamic Visual Prosthesis
Troy JB
IEEE Transactions on Bio-Medical Engineering 2016; 63: 1573-1580 (IGR: 18-1)


69227 The pressure difference between eye and brain changes with posture
Koskinen LO; Malm J
Annals of Neurology 2016; 80: 269-276 (IGR: 18-1)


66762 Bilateral neuroinflammatory processes in visual pathways induced by unilateral ocular hypertension in the rat
Sapienza A
Journal of Neuroinflammation 2016; 13: 44 (IGR: 17-4)


67315 In vivo proton magnetic resonance spectroscopy (1H-MRS) evaluation of the metabolite concentration of optic radiation in primary open angle glaucoma
Sidek S
European radiology 2016; 26: 4404-4412 (IGR: 17-4)


67554 The interaction between intracranial pressure, intraocular pressure and lamina cribrosal compression in glaucoma
McMonnies CW
Clinical and Experimental Optometry 2016; 99: 219-226 (IGR: 17-4)


67136 Unexpected Effect of Calcium Channel Blockers on the Optic Nerve Compartment Syndrome
Konieczka K
Klinische Monatsblätter für Augenheilkunde 2016; 233: 387-390 (IGR: 17-4)


66685 Characteristics of Fifty Cases of Pituitary Tumors in Eyes Diagnosed with Glaucoma
Kobayashi N
Nippon Ganka Gakkai Zasshi 2016; 120: 101-109 (IGR: 17-4)


67236 Brain: The Potential Diagnostic and Therapeutic Target for Glaucoma
Faiq MA
CNS and Neurological Disorders - Drug Targets 2016; 0: (IGR: 17-4)


67508 Using magnetic resonance imaging to assess visual deficits: a review
Brown HD
Ophthalmic and Physiological Optics 2016; 36: 240-265 (IGR: 17-4)


66701 Ocular blood flow and cerebrospinal fluid pressure in glaucoma
Promelle V
Acta radiologica open 2016; 5: 2058460115624275 (IGR: 17-4)


67465 Increased Intraocular Pressure in a Patient With Septooptic Dysplasia: A Case Report
Ulloa-Padilla JP
Journal of Glaucoma 2016; 25: e713-e717 (IGR: 17-4)


67095 Cognitive performance of primary open-angle glaucoma and normal-tension glaucoma patients
Bulut M
Arquivos Brasileiros de Oftalmologia 2016; 79: 100-104 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Hou R
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


67507 Neurodegeneration beyond the primary visual pathways in a population with a high incidence of normal-pressure glaucoma
Boucard CC
Ophthalmic and Physiological Optics 2016; 36: 344-353 (IGR: 17-4)


66724 Primary Open Angle Glaucoma is Associated with MR Biomarkers of Cerebral Small Vessel Disease
Mercieca K
Scientific reports 2016; 6: 22160 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Hou R
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


66808 Graph theoretical analysis reveals the reorganization of the brain network pattern in primary open angle glaucoma patients
Wang J
European radiology 2016; 26: 3957-3967 (IGR: 17-4)


67593 Macular Ganglion Cell Analysis Determined by Cirrus HD Optical Coherence Tomography for Early Detecting Chiasmal Compression
Yum HR
PLoS ONE 2016; 11: e0153064 (IGR: 17-4)


67465 Increased Intraocular Pressure in a Patient With Septooptic Dysplasia: A Case Report
Izquierdo NJ
Journal of Glaucoma 2016; 25: e713-e717 (IGR: 17-4)


66808 Graph theoretical analysis reveals the reorganization of the brain network pattern in primary open angle glaucoma patients
Li T
European radiology 2016; 26: 3957-3967 (IGR: 17-4)


66685 Characteristics of Fifty Cases of Pituitary Tumors in Eyes Diagnosed with Glaucoma
Ikeda H
Nippon Ganka Gakkai Zasshi 2016; 120: 101-109 (IGR: 17-4)


66724 Primary Open Angle Glaucoma is Associated with MR Biomarkers of Cerebral Small Vessel Disease
Cain J
Scientific reports 2016; 6: 22160 (IGR: 17-4)


67508 Using magnetic resonance imaging to assess visual deficits: a review
Woodall RL
Ophthalmic and Physiological Optics 2016; 36: 240-265 (IGR: 17-4)


67236 Brain: The Potential Diagnostic and Therapeutic Target for Glaucoma
Dada R
CNS and Neurological Disorders - Drug Targets 2016; 0: (IGR: 17-4)


67593 Macular Ganglion Cell Analysis Determined by Cirrus HD Optical Coherence Tomography for Early Detecting Chiasmal Compression
Park SH
PLoS ONE 2016; 11: e0153064 (IGR: 17-4)


67095 Cognitive performance of primary open-angle glaucoma and normal-tension glaucoma patients
Yaman A
Arquivos Brasileiros de Oftalmologia 2016; 79: 100-104 (IGR: 17-4)


67315 In vivo proton magnetic resonance spectroscopy (1H-MRS) evaluation of the metabolite concentration of optic radiation in primary open angle glaucoma
Ramli N
European radiology 2016; 26: 4404-4412 (IGR: 17-4)


67136 Unexpected Effect of Calcium Channel Blockers on the Optic Nerve Compartment Syndrome
Todorova MG
Klinische Monatsblätter für Augenheilkunde 2016; 233: 387-390 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Zhang Z
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Zhang Z
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


67507 Neurodegeneration beyond the primary visual pathways in a population with a high incidence of normal-pressure glaucoma
Hanekamp S
Ophthalmic and Physiological Optics 2016; 36: 344-353 (IGR: 17-4)


66701 Ocular blood flow and cerebrospinal fluid pressure in glaucoma
Daouk J
Acta radiologica open 2016; 5: 2058460115624275 (IGR: 17-4)


66762 Bilateral neuroinflammatory processes in visual pathways induced by unilateral ocular hypertension in the rat
Raveu AL
Journal of Neuroinflammation 2016; 13: 44 (IGR: 17-4)


67507 Neurodegeneration beyond the primary visual pathways in a population with a high incidence of normal-pressure glaucoma
Ćurčić-Blake B
Ophthalmic and Physiological Optics 2016; 36: 344-353 (IGR: 17-4)


67095 Cognitive performance of primary open-angle glaucoma and normal-tension glaucoma patients
Erol MK
Arquivos Brasileiros de Oftalmologia 2016; 79: 100-104 (IGR: 17-4)


66701 Ocular blood flow and cerebrospinal fluid pressure in glaucoma
Bouzerar R
Acta radiologica open 2016; 5: 2058460115624275 (IGR: 17-4)


66762 Bilateral neuroinflammatory processes in visual pathways induced by unilateral ocular hypertension in the rat
Reboussin E
Journal of Neuroinflammation 2016; 13: 44 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Yang D
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


66808 Graph theoretical analysis reveals the reorganization of the brain network pattern in primary open angle glaucoma patients
Wang N
European radiology 2016; 26: 3957-3967 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Yang D
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


67136 Unexpected Effect of Calcium Channel Blockers on the Optic Nerve Compartment Syndrome
Bojinova RI
Klinische Monatsblätter für Augenheilkunde 2016; 233: 387-390 (IGR: 17-4)


67465 Increased Intraocular Pressure in a Patient With Septooptic Dysplasia: A Case Report
Oliver A
Journal of Glaucoma 2016; 25: e713-e717 (IGR: 17-4)


66685 Characteristics of Fifty Cases of Pituitary Tumors in Eyes Diagnosed with Glaucoma
Kobayashi K
Nippon Ganka Gakkai Zasshi 2016; 120: 101-109 (IGR: 17-4)


67236 Brain: The Potential Diagnostic and Therapeutic Target for Glaucoma
Kumar A
CNS and Neurological Disorders - Drug Targets 2016; 0: (IGR: 17-4)


67315 In vivo proton magnetic resonance spectroscopy (1H-MRS) evaluation of the metabolite concentration of optic radiation in primary open angle glaucoma
Rahmat K
European radiology 2016; 26: 4404-4412 (IGR: 17-4)


67593 Macular Ganglion Cell Analysis Determined by Cirrus HD Optical Coherence Tomography for Early Detecting Chiasmal Compression
Park HY
PLoS ONE 2016; 11: e0153064 (IGR: 17-4)


66724 Primary Open Angle Glaucoma is Associated with MR Biomarkers of Cerebral Small Vessel Disease
Hansen T
Scientific reports 2016; 6: 22160 (IGR: 17-4)


67508 Using magnetic resonance imaging to assess visual deficits: a review
Kitching RE
Ophthalmic and Physiological Optics 2016; 36: 240-265 (IGR: 17-4)


67095 Cognitive performance of primary open-angle glaucoma and normal-tension glaucoma patients
Kurtuluş F
Arquivos Brasileiros de Oftalmologia 2016; 79: 100-104 (IGR: 17-4)


67593 Macular Ganglion Cell Analysis Determined by Cirrus HD Optical Coherence Tomography for Early Detecting Chiasmal Compression
Shin SY
PLoS ONE 2016; 11: e0153064 (IGR: 17-4)


66762 Bilateral neuroinflammatory processes in visual pathways induced by unilateral ocular hypertension in the rat
Roubeix C
Journal of Neuroinflammation 2016; 13: 44 (IGR: 17-4)


67507 Neurodegeneration beyond the primary visual pathways in a population with a high incidence of normal-pressure glaucoma
Ida M
Ophthalmic and Physiological Optics 2016; 36: 344-353 (IGR: 17-4)


67315 In vivo proton magnetic resonance spectroscopy (1H-MRS) evaluation of the metabolite concentration of optic radiation in primary open angle glaucoma
Ramli NM
European radiology 2016; 26: 4404-4412 (IGR: 17-4)


66724 Primary Open Angle Glaucoma is Associated with MR Biomarkers of Cerebral Small Vessel Disease
Steeples L
Scientific reports 2016; 6: 22160 (IGR: 17-4)


67508 Using magnetic resonance imaging to assess visual deficits: a review
Baseler HA
Ophthalmic and Physiological Optics 2016; 36: 240-265 (IGR: 17-4)


66701 Ocular blood flow and cerebrospinal fluid pressure in glaucoma
Jany B
Acta radiologica open 2016; 5: 2058460115624275 (IGR: 17-4)


67136 Unexpected Effect of Calcium Channel Blockers on the Optic Nerve Compartment Syndrome
Binggeli T
Klinische Monatsblätter für Augenheilkunde 2016; 233: 387-390 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Wang H
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


66808 Graph theoretical analysis reveals the reorganization of the brain network pattern in primary open angle glaucoma patients
Xian J
European radiology 2016; 26: 3957-3967 (IGR: 17-4)


66685 Characteristics of Fifty Cases of Pituitary Tumors in Eyes Diagnosed with Glaucoma
Onoda T
Nippon Ganka Gakkai Zasshi 2016; 120: 101-109 (IGR: 17-4)


67236 Brain: The Potential Diagnostic and Therapeutic Target for Glaucoma
Saluja D
CNS and Neurological Disorders - Drug Targets 2016; 0: (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Wang H
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Chen W
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


67507 Neurodegeneration beyond the primary visual pathways in a population with a high incidence of normal-pressure glaucoma
Yoshida M
Ophthalmic and Physiological Optics 2016; 36: 344-353 (IGR: 17-4)


66808 Graph theoretical analysis reveals the reorganization of the brain network pattern in primary open angle glaucoma patients
He H
European radiology 2016; 26: 3957-3967 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Chen W
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


67136 Unexpected Effect of Calcium Channel Blockers on the Optic Nerve Compartment Syndrome
Chackathayil TN
Klinische Monatsblätter für Augenheilkunde 2016; 233: 387-390 (IGR: 17-4)


66724 Primary Open Angle Glaucoma is Associated with MR Biomarkers of Cerebral Small Vessel Disease
Watkins A
Scientific reports 2016; 6: 22160 (IGR: 17-4)


66685 Characteristics of Fifty Cases of Pituitary Tumors in Eyes Diagnosed with Glaucoma
Adachi-Usami E
Nippon Ganka Gakkai Zasshi 2016; 120: 101-109 (IGR: 17-4)


67315 In vivo proton magnetic resonance spectroscopy (1H-MRS) evaluation of the metabolite concentration of optic radiation in primary open angle glaucoma
Abdulrahman F
European radiology 2016; 26: 4404-4412 (IGR: 17-4)


66701 Ocular blood flow and cerebrospinal fluid pressure in glaucoma
Milazzo S
Acta radiologica open 2016; 5: 2058460115624275 (IGR: 17-4)


67508 Using magnetic resonance imaging to assess visual deficits: a review
Morland AB
Ophthalmic and Physiological Optics 2016; 36: 240-265 (IGR: 17-4)


66762 Bilateral neuroinflammatory processes in visual pathways induced by unilateral ocular hypertension in the rat
Boucher C
Journal of Neuroinflammation 2016; 13: 44 (IGR: 17-4)


67095 Cognitive performance of primary open-angle glaucoma and normal-tension glaucoma patients
Toslak D
Arquivos Brasileiros de Oftalmologia 2016; 79: 100-104 (IGR: 17-4)


67236 Brain: The Potential Diagnostic and Therapeutic Target for Glaucoma
Dada T
CNS and Neurological Disorders - Drug Targets 2016; 0: (IGR: 17-4)


67315 In vivo proton magnetic resonance spectroscopy (1H-MRS) evaluation of the metabolite concentration of optic radiation in primary open angle glaucoma
Kuo TL
European radiology 2016; 26: 4404-4412 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Li Z
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


67095 Cognitive performance of primary open-angle glaucoma and normal-tension glaucoma patients
Coban DT
Arquivos Brasileiros de Oftalmologia 2016; 79: 100-104 (IGR: 17-4)


66701 Ocular blood flow and cerebrospinal fluid pressure in glaucoma
Balédent O
Acta radiologica open 2016; 5: 2058460115624275 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Li Z
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


67136 Unexpected Effect of Calcium Channel Blockers on the Optic Nerve Compartment Syndrome
Flammer J
Klinische Monatsblätter für Augenheilkunde 2016; 233: 387-390 (IGR: 17-4)


66762 Bilateral neuroinflammatory processes in visual pathways induced by unilateral ocular hypertension in the rat
Dégardin J
Journal of Neuroinflammation 2016; 13: 44 (IGR: 17-4)


67507 Neurodegeneration beyond the primary visual pathways in a population with a high incidence of normal-pressure glaucoma
Cornelissen FW
Ophthalmic and Physiological Optics 2016; 36: 344-353 (IGR: 17-4)


66724 Primary Open Angle Glaucoma is Associated with MR Biomarkers of Cerebral Small Vessel Disease
Spencer F
Scientific reports 2016; 6: 22160 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Sang J
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Sang J
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


66724 Primary Open Angle Glaucoma is Associated with MR Biomarkers of Cerebral Small Vessel Disease
Jackson A
Scientific reports 2016; 6: 22160 (IGR: 17-4)


67095 Cognitive performance of primary open-angle glaucoma and normal-tension glaucoma patients
Başar EK
Arquivos Brasileiros de Oftalmologia 2016; 79: 100-104 (IGR: 17-4)


66762 Bilateral neuroinflammatory processes in visual pathways induced by unilateral ocular hypertension in the rat
Godefroy D; Rostène W
Journal of Neuroinflammation 2016; 13: 44 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Liu S
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Liu S
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Cao Y
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


66762 Bilateral neuroinflammatory processes in visual pathways induced by unilateral ocular hypertension in the rat
Reaux-Le Goazigo A
Journal of Neuroinflammation 2016; 13: 44 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Cao Y
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


66762 Bilateral neuroinflammatory processes in visual pathways induced by unilateral ocular hypertension in the rat
Baudouin C
Journal of Neuroinflammation 2016; 13: 44 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Xie X
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Xie X
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


66762 Bilateral neuroinflammatory processes in visual pathways induced by unilateral ocular hypertension in the rat
Melik Parsadaniantz S
Journal of Neuroinflammation 2016; 13: 44 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Ren R
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Ren R
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Zhang Y
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Zhang Y
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Sabel BA
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Sabel BA
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


67346 Intracranial pressure (ICP) and optic nerve subarachnoid space pressure (ONSP) correlation in the optic nerve chamber: the Beijing Intracranial and Intraocular Pressure (iCOP) study
Wang N
Brain Research 2016; 1635: 201-208 (IGR: 17-4)


66728 Pressure balance and imbalance in the optic nerve chamber: The Beijing Intracranial and Intraocular Pressure (iCOP) Study
Wang N
Science China Life Sciences 2016; 59: 495-503 (IGR: 17-4)


66600 Structural brain alterations in primary open angle glaucoma: a 3T MRI study
Wang J
Scientific reports 2016; 6: 18969 (IGR: 17-3)


65993 Selective reduction of fMRI responses to transient achromatic stimuli in the magnocellular layers of the LGN and the superficial layer of the SC of early glaucoma patients
Zhang P
Human Brain Mapping 2016; 37: 558-569 (IGR: 17-3)


66320 Fast circulation of cerebrospinal fluid: an alternative perspective on the protective role of high intracranial pressure in ocular hypertension
Wostyn P
Clinical and Experimental Optometry 2016; 99: 213-218 (IGR: 17-3)


65895 Neuroretinal rim area and ocular haemodynamic parameters in patients with normal-tension glaucoma with differing intracranial pressures
Siaudvytyte L; Januleviciene I
British Journal of Ophthalmology 2016; 100: 1134-1138 (IGR: 17-3)


65993 Selective reduction of fMRI responses to transient achromatic stimuli in the magnocellular layers of the LGN and the superficial layer of the SC of early glaucoma patients
Wen W
Human Brain Mapping 2016; 37: 558-569 (IGR: 17-3)


66600 Structural brain alterations in primary open angle glaucoma: a 3T MRI study
Li T
Scientific reports 2016; 6: 18969 (IGR: 17-3)


66320 Fast circulation of cerebrospinal fluid: an alternative perspective on the protective role of high intracranial pressure in ocular hypertension
De Groot V
Clinical and Experimental Optometry 2016; 99: 213-218 (IGR: 17-3)


65895 Neuroretinal rim area and ocular haemodynamic parameters in patients with normal-tension glaucoma with differing intracranial pressures
Daveckaite A
British Journal of Ophthalmology 2016; 100: 1134-1138 (IGR: 17-3)


66320 Fast circulation of cerebrospinal fluid: an alternative perspective on the protective role of high intracranial pressure in ocular hypertension
Van Dam D
Clinical and Experimental Optometry 2016; 99: 213-218 (IGR: 17-3)


66600 Structural brain alterations in primary open angle glaucoma: a 3T MRI study
Sabel BA
Scientific reports 2016; 6: 18969 (IGR: 17-3)


65993 Selective reduction of fMRI responses to transient achromatic stimuli in the magnocellular layers of the LGN and the superficial layer of the SC of early glaucoma patients
Sun X
Human Brain Mapping 2016; 37: 558-569 (IGR: 17-3)


66600 Structural brain alterations in primary open angle glaucoma: a 3T MRI study
Chen Z
Scientific reports 2016; 6: 18969 (IGR: 17-3)


65993 Selective reduction of fMRI responses to transient achromatic stimuli in the magnocellular layers of the LGN and the superficial layer of the SC of early glaucoma patients
He S
Human Brain Mapping 2016; 37: 558-569 (IGR: 17-3)


65895 Neuroretinal rim area and ocular haemodynamic parameters in patients with normal-tension glaucoma with differing intracranial pressures
Ragauskas A
British Journal of Ophthalmology 2016; 100: 1134-1138 (IGR: 17-3)


66320 Fast circulation of cerebrospinal fluid: an alternative perspective on the protective role of high intracranial pressure in ocular hypertension
Audenaert K; Killer HE
Clinical and Experimental Optometry 2016; 99: 213-218 (IGR: 17-3)


66600 Structural brain alterations in primary open angle glaucoma: a 3T MRI study
Wen H
Scientific reports 2016; 6: 18969 (IGR: 17-3)


65895 Neuroretinal rim area and ocular haemodynamic parameters in patients with normal-tension glaucoma with differing intracranial pressures
Siesky B
British Journal of Ophthalmology 2016; 100: 1134-1138 (IGR: 17-3)


66320 Fast circulation of cerebrospinal fluid: an alternative perspective on the protective role of high intracranial pressure in ocular hypertension
De Deyn PP
Clinical and Experimental Optometry 2016; 99: 213-218 (IGR: 17-3)


65895 Neuroretinal rim area and ocular haemodynamic parameters in patients with normal-tension glaucoma with differing intracranial pressures
Harris A
British Journal of Ophthalmology 2016; 100: 1134-1138 (IGR: 17-3)


66600 Structural brain alterations in primary open angle glaucoma: a 3T MRI study
Li J; Xie X; Yang D; Chen W; Wang N; Xian J; He H
Scientific reports 2016; 6: 18969 (IGR: 17-3)


61321 A new glaucoma hypothesis: a role of glymphatic system dysfunction
Wostyn P
Fluids and barriers of the CNS 2015; 12: 16 (IGR: 17-1)


61144 Unilateral Acute Closed-Angle Glaucoma After Elective Lumbar Surgery Reveals Multiple Intracranial Aneurysms. A Case Report and Discussion on Workup of Differential Diagnoses
Storey C
World neurosurgery 2015; 84: 1493.e15-1493.e18 (IGR: 17-1)


60984 TH-CD-207-08: Neurodegeneration of the Visual Pathway in Mild Glaucoma Assessed by MRI
Zhou W
Medical Physics 2015; 42: 3736 (IGR: 17-1)


61702 Disturbed temporal dynamics of brain synchronization in vision loss
Bola M
Cortex; a journal devoted to the study of the nervous system and behavior 2015; 67: 134-146 (IGR: 17-1)


61768 Cerebral glucose metabolism in the striate cortex positively correlates with fractional anisotropy values of the optic radiation in patients with glaucoma
Murai H
Clinical and Experimental Ophthalmology 2015; 43: 711-719 (IGR: 17-1)


61134 Evaluation of Glaucomatous Damage via Functional Magnetic Resonance Imaging, and Correlations Thereof with Anatomical and Psychophysical Ocular Findings
Gerente VM
PLoS ONE 2015; 10: e0126362 (IGR: 17-1)


61579 A framework to explore the visual brain in glaucoma with lessons from models and man
Yucel YH
Experimental Eye Research 2015; 141: 171-178 (IGR: 17-1)


61758 Elevated intracranial pressure causes optic nerve and retinal ganglion cell degeneration in mice
Nusbaum DM
Experimental Eye Research 2015; 136: 38-44 (IGR: 17-1)


61289 Advanced Morphological and Functional Magnetic Resonance Techniques in Glaucoma
Mastropasqua R
BioMed research international 2015; 2015: 160454 (IGR: 17-1)


61806 Cerebrospinal fluid pressure and the eye
Morgan WH
British Journal of Ophthalmology 2016; 100: 71-77 (IGR: 17-1)


61486 Disturbed spontaneous brain activity pattern in patients with primary angle-closure glaucoma using amplitude of low-frequency fluctuation: a fMRI study
Huang X; Zhong YL
Neuropsychiatric disease and treatment 2015; 11: 1877-1883 (IGR: 17-1)


61134 Evaluation of Glaucomatous Damage via Functional Magnetic Resonance Imaging, and Correlations Thereof with Anatomical and Psychophysical Ocular Findings
Schor RR
PLoS ONE 2015; 10: e0126362 (IGR: 17-1)


61806 Cerebrospinal fluid pressure and the eye
Balaratnasingam C
British Journal of Ophthalmology 2016; 100: 71-77 (IGR: 17-1)


61758 Elevated intracranial pressure causes optic nerve and retinal ganglion cell degeneration in mice
Wu SM
Experimental Eye Research 2015; 136: 38-44 (IGR: 17-1)


61579 A framework to explore the visual brain in glaucoma with lessons from models and man
Gupta N
Experimental Eye Research 2015; 141: 171-178 (IGR: 17-1)


61768 Cerebral glucose metabolism in the striate cortex positively correlates with fractional anisotropy values of the optic radiation in patients with glaucoma
Suzuki Y
Clinical and Experimental Ophthalmology 2015; 43: 711-719 (IGR: 17-1)


61321 A new glaucoma hypothesis: a role of glymphatic system dysfunction
Van Dam D
Fluids and barriers of the CNS 2015; 12: 16 (IGR: 17-1)


61289 Advanced Morphological and Functional Magnetic Resonance Techniques in Glaucoma
Agnifili L
BioMed research international 2015; 2015: 160454 (IGR: 17-1)


60984 TH-CD-207-08: Neurodegeneration of the Visual Pathway in Mild Glaucoma Assessed by MRI
Muir E
Medical Physics 2015; 42: 3736 (IGR: 17-1)


61144 Unilateral Acute Closed-Angle Glaucoma After Elective Lumbar Surgery Reveals Multiple Intracranial Aneurysms. A Case Report and Discussion on Workup of Differential Diagnoses
Menger R
World neurosurgery 2015; 84: 1493.e15-1493.e18 (IGR: 17-1)


61702 Disturbed temporal dynamics of brain synchronization in vision loss
Gall C
Cortex; a journal devoted to the study of the nervous system and behavior 2015; 67: 134-146 (IGR: 17-1)


61758 Elevated intracranial pressure causes optic nerve and retinal ganglion cell degeneration in mice
Frankfort BJ
Experimental Eye Research 2015; 136: 38-44 (IGR: 17-1)


61702 Disturbed temporal dynamics of brain synchronization in vision loss
Sabel BA
Cortex; a journal devoted to the study of the nervous system and behavior 2015; 67: 134-146 (IGR: 17-1)


61768 Cerebral glucose metabolism in the striate cortex positively correlates with fractional anisotropy values of the optic radiation in patients with glaucoma
Kiyosawa M
Clinical and Experimental Ophthalmology 2015; 43: 711-719 (IGR: 17-1)


61134 Evaluation of Glaucomatous Damage via Functional Magnetic Resonance Imaging, and Correlations Thereof with Anatomical and Psychophysical Ocular Findings
Chaim KT
PLoS ONE 2015; 10: e0126362 (IGR: 17-1)


61144 Unilateral Acute Closed-Angle Glaucoma After Elective Lumbar Surgery Reveals Multiple Intracranial Aneurysms. A Case Report and Discussion on Workup of Differential Diagnoses
Hefner M
World neurosurgery 2015; 84: 1493.e15-1493.e18 (IGR: 17-1)


61486 Disturbed spontaneous brain activity pattern in patients with primary angle-closure glaucoma using amplitude of low-frequency fluctuation: a fMRI study
Zeng XJ
Neuropsychiatric disease and treatment 2015; 11: 1877-1883 (IGR: 17-1)


61806 Cerebrospinal fluid pressure and the eye
Lind CR
British Journal of Ophthalmology 2016; 100: 71-77 (IGR: 17-1)


61321 A new glaucoma hypothesis: a role of glymphatic system dysfunction
Audenaert K
Fluids and barriers of the CNS 2015; 12: 16 (IGR: 17-1)


60984 TH-CD-207-08: Neurodegeneration of the Visual Pathway in Mild Glaucoma Assessed by MRI
Li W
Medical Physics 2015; 42: 3736 (IGR: 17-1)


61289 Advanced Morphological and Functional Magnetic Resonance Techniques in Glaucoma
Mattei PA
BioMed research international 2015; 2015: 160454 (IGR: 17-1)


61768 Cerebral glucose metabolism in the striate cortex positively correlates with fractional anisotropy values of the optic radiation in patients with glaucoma
Tokumaru AM
Clinical and Experimental Ophthalmology 2015; 43: 711-719 (IGR: 17-1)


61806 Cerebrospinal fluid pressure and the eye
Colley S
British Journal of Ophthalmology 2016; 100: 71-77 (IGR: 17-1)


60984 TH-CD-207-08: Neurodegeneration of the Visual Pathway in Mild Glaucoma Assessed by MRI
Clarke G
Medical Physics 2015; 42: 3736 (IGR: 17-1)


61289 Advanced Morphological and Functional Magnetic Resonance Techniques in Glaucoma
Caulo M
BioMed research international 2015; 2015: 160454 (IGR: 17-1)


61486 Disturbed spontaneous brain activity pattern in patients with primary angle-closure glaucoma using amplitude of low-frequency fluctuation: a fMRI study
Zhou F
Neuropsychiatric disease and treatment 2015; 11: 1877-1883 (IGR: 17-1)


61134 Evaluation of Glaucomatous Damage via Functional Magnetic Resonance Imaging, and Correlations Thereof with Anatomical and Psychophysical Ocular Findings
Felix Mde M
PLoS ONE 2015; 10: e0126362 (IGR: 17-1)


61321 A new glaucoma hypothesis: a role of glymphatic system dysfunction
Killer HE
Fluids and barriers of the CNS 2015; 12: 16 (IGR: 17-1)


61144 Unilateral Acute Closed-Angle Glaucoma After Elective Lumbar Surgery Reveals Multiple Intracranial Aneurysms. A Case Report and Discussion on Workup of Differential Diagnoses
Keating P
World neurosurgery 2015; 84: 1493.e15-1493.e18 (IGR: 17-1)


61289 Advanced Morphological and Functional Magnetic Resonance Techniques in Glaucoma
Fasanella V
BioMed research international 2015; 2015: 160454 (IGR: 17-1)


61321 A new glaucoma hypothesis: a role of glymphatic system dysfunction
De Deyn PP
Fluids and barriers of the CNS 2015; 12: 16 (IGR: 17-1)


61486 Disturbed spontaneous brain activity pattern in patients with primary angle-closure glaucoma using amplitude of low-frequency fluctuation: a fMRI study
Liu XH
Neuropsychiatric disease and treatment 2015; 11: 1877-1883 (IGR: 17-1)


61806 Cerebrospinal fluid pressure and the eye
Kang MH
British Journal of Ophthalmology 2016; 100: 71-77 (IGR: 17-1)


61134 Evaluation of Glaucomatous Damage via Functional Magnetic Resonance Imaging, and Correlations Thereof with Anatomical and Psychophysical Ocular Findings
Ventura DF
PLoS ONE 2015; 10: e0126362 (IGR: 17-1)


61144 Unilateral Acute Closed-Angle Glaucoma After Elective Lumbar Surgery Reveals Multiple Intracranial Aneurysms. A Case Report and Discussion on Workup of Differential Diagnoses
Ahmed O
World neurosurgery 2015; 84: 1493.e15-1493.e18 (IGR: 17-1)


60984 TH-CD-207-08: Neurodegeneration of the Visual Pathway in Mild Glaucoma Assessed by MRI
Duong T
Medical Physics 2015; 42: 3736 (IGR: 17-1)


61768 Cerebral glucose metabolism in the striate cortex positively correlates with fractional anisotropy values of the optic radiation in patients with glaucoma
Ishiwata K
Clinical and Experimental Ophthalmology 2015; 43: 711-719 (IGR: 17-1)


61134 Evaluation of Glaucomatous Damage via Functional Magnetic Resonance Imaging, and Correlations Thereof with Anatomical and Psychophysical Ocular Findings
Teixeira SH
PLoS ONE 2015; 10: e0126362 (IGR: 17-1)


61289 Advanced Morphological and Functional Magnetic Resonance Techniques in Glaucoma
Navarra R
BioMed research international 2015; 2015: 160454 (IGR: 17-1)


61768 Cerebral glucose metabolism in the striate cortex positively correlates with fractional anisotropy values of the optic radiation in patients with glaucoma
Ishii K
Clinical and Experimental Ophthalmology 2015; 43: 711-719 (IGR: 17-1)


61144 Unilateral Acute Closed-Angle Glaucoma After Elective Lumbar Surgery Reveals Multiple Intracranial Aneurysms. A Case Report and Discussion on Workup of Differential Diagnoses
Guthikonda B
World neurosurgery 2015; 84: 1493.e15-1493.e18 (IGR: 17-1)


61486 Disturbed spontaneous brain activity pattern in patients with primary angle-closure glaucoma using amplitude of low-frequency fluctuation: a fMRI study
Hu PH
Neuropsychiatric disease and treatment 2015; 11: 1877-1883 (IGR: 17-1)


61321 A new glaucoma hypothesis: a role of glymphatic system dysfunction
De Groot V
Fluids and barriers of the CNS 2015; 12: 16 (IGR: 17-1)


61806 Cerebrospinal fluid pressure and the eye
House PH
British Journal of Ophthalmology 2016; 100: 71-77 (IGR: 17-1)


61289 Advanced Morphological and Functional Magnetic Resonance Techniques in Glaucoma
Mastropasqua L
BioMed research international 2015; 2015: 160454 (IGR: 17-1)


61486 Disturbed spontaneous brain activity pattern in patients with primary angle-closure glaucoma using amplitude of low-frequency fluctuation: a fMRI study
Pei CG
Neuropsychiatric disease and treatment 2015; 11: 1877-1883 (IGR: 17-1)


61134 Evaluation of Glaucomatous Damage via Functional Magnetic Resonance Imaging, and Correlations Thereof with Anatomical and Psychophysical Ocular Findings
Lottenberg CL
PLoS ONE 2015; 10: e0126362 (IGR: 17-1)


61806 Cerebrospinal fluid pressure and the eye
Yu DY
British Journal of Ophthalmology 2016; 100: 71-77 (IGR: 17-1)


61486 Disturbed spontaneous brain activity pattern in patients with primary angle-closure glaucoma using amplitude of low-frequency fluctuation: a fMRI study
Shao Y
Neuropsychiatric disease and treatment 2015; 11: 1877-1883 (IGR: 17-1)


61134 Evaluation of Glaucomatous Damage via Functional Magnetic Resonance Imaging, and Correlations Thereof with Anatomical and Psychophysical Ocular Findings
Amaro E
PLoS ONE 2015; 10: e0126362 (IGR: 17-1)


61289 Advanced Morphological and Functional Magnetic Resonance Techniques in Glaucoma
Marchini G
BioMed research international 2015; 2015: 160454 (IGR: 17-1)


61134 Evaluation of Glaucomatous Damage via Functional Magnetic Resonance Imaging, and Correlations Thereof with Anatomical and Psychophysical Ocular Findings
Paranhos A
PLoS ONE 2015; 10: e0126362 (IGR: 17-1)


61486 Disturbed spontaneous brain activity pattern in patients with primary angle-closure glaucoma using amplitude of low-frequency fluctuation: a fMRI study
Dai XJ
Neuropsychiatric disease and treatment 2015; 11: 1877-1883 (IGR: 17-1)


60332 Facts and myths of cerebrospinal fluid pressure for the physiology of the eye
Jonas JB
Progress in Retinal and Eye Research 2015; 46: 67-83 (IGR: 16-4)


60704 Progressive thinning of visual cortex in primary open-angle glaucoma of varying severity
Yu L
PLoS ONE 2015; 10: e0121960 (IGR: 16-4)


60143 Altered amplitude of low-frequency fluctuation in primary open-angle glaucoma: a resting-state FMRI study
Li T
Investigative Ophthalmology and Visual Science 2015; 56: 322-329 (IGR: 16-4)


60320 Ocular Hypertension Results in Retinotopic Alterations in the Visual Cortex of Adult Mice
Dekeyster E
Current Eye Research 2015; 0: 1-15 (IGR: 16-4)


60571 Progressive degeneration of retinal and superior collicular functions in mice with sustained ocular hypertension
Chen H
Investigative Ophthalmology and Visual Science 2015; 56: 1971-1984 (IGR: 16-4)


60825 Study of thioredoxin antioxidative system in lateral geniculate body of chronic intraocular hypertension rat
Chen X
Chinese Journal of Ophthalmology 2015; 51: 120-125 (IGR: 16-4)


60320 Ocular Hypertension Results in Retinotopic Alterations in the Visual Cortex of Adult Mice
Aerts J
Current Eye Research 2015; 0: 1-15 (IGR: 16-4)


60143 Altered amplitude of low-frequency fluctuation in primary open-angle glaucoma: a resting-state FMRI study
Liu Z
Investigative Ophthalmology and Visual Science 2015; 56: 322-329 (IGR: 16-4)


60571 Progressive degeneration of retinal and superior collicular functions in mice with sustained ocular hypertension
Zhao Y
Investigative Ophthalmology and Visual Science 2015; 56: 1971-1984 (IGR: 16-4)


60825 Study of thioredoxin antioxidative system in lateral geniculate body of chronic intraocular hypertension rat
Zhang S
Chinese Journal of Ophthalmology 2015; 51: 120-125 (IGR: 16-4)


60704 Progressive thinning of visual cortex in primary open-angle glaucoma of varying severity
Xie L
PLoS ONE 2015; 10: e0121960 (IGR: 16-4)


60332 Facts and myths of cerebrospinal fluid pressure for the physiology of the eye
Wang N
Progress in Retinal and Eye Research 2015; 46: 67-83 (IGR: 16-4)


60320 Ocular Hypertension Results in Retinotopic Alterations in the Visual Cortex of Adult Mice
Valiente-Soriano FJ
Current Eye Research 2015; 0: 1-15 (IGR: 16-4)


60571 Progressive degeneration of retinal and superior collicular functions in mice with sustained ocular hypertension
Liu M
Investigative Ophthalmology and Visual Science 2015; 56: 1971-1984 (IGR: 16-4)


60825 Study of thioredoxin antioxidative system in lateral geniculate body of chronic intraocular hypertension rat
Wu J
Chinese Journal of Ophthalmology 2015; 51: 120-125 (IGR: 16-4)


60143 Altered amplitude of low-frequency fluctuation in primary open-angle glaucoma: a resting-state FMRI study
Li J
Investigative Ophthalmology and Visual Science 2015; 56: 322-329 (IGR: 16-4)


60332 Facts and myths of cerebrospinal fluid pressure for the physiology of the eye
Yang D
Progress in Retinal and Eye Research 2015; 46: 67-83 (IGR: 16-4)


60704 Progressive thinning of visual cortex in primary open-angle glaucoma of varying severity
Dai C
PLoS ONE 2015; 10: e0121960 (IGR: 16-4)


60825 Study of thioredoxin antioxidative system in lateral geniculate body of chronic intraocular hypertension rat
Sun X
Chinese Journal of Ophthalmology 2015; 51: 120-125 (IGR: 16-4)


60332 Facts and myths of cerebrospinal fluid pressure for the physiology of the eye
Ritch R
Progress in Retinal and Eye Research 2015; 46: 67-83 (IGR: 16-4)


60704 Progressive thinning of visual cortex in primary open-angle glaucoma of varying severity
Xie B
PLoS ONE 2015; 10: e0121960 (IGR: 16-4)


60571 Progressive degeneration of retinal and superior collicular functions in mice with sustained ocular hypertension
Feng L
Investigative Ophthalmology and Visual Science 2015; 56: 1971-1984 (IGR: 16-4)


60320 Ocular Hypertension Results in Retinotopic Alterations in the Visual Cortex of Adult Mice
De Groef L
Current Eye Research 2015; 0: 1-15 (IGR: 16-4)


60571 Progressive degeneration of retinal and superior collicular functions in mice with sustained ocular hypertension
Puyang Z
Investigative Ophthalmology and Visual Science 2015; 56: 1971-1984 (IGR: 16-4)


60704 Progressive thinning of visual cortex in primary open-angle glaucoma of varying severity
Liang M
PLoS ONE 2015; 10: e0121960 (IGR: 16-4)


60143 Altered amplitude of low-frequency fluctuation in primary open-angle glaucoma: a resting-state FMRI study
Tang Z
Investigative Ophthalmology and Visual Science 2015; 56: 322-329 (IGR: 16-4)


60332 Facts and myths of cerebrospinal fluid pressure for the physiology of the eye
Panda-Jonas S
Progress in Retinal and Eye Research 2015; 46: 67-83 (IGR: 16-4)


60320 Ocular Hypertension Results in Retinotopic Alterations in the Visual Cortex of Adult Mice
Vreysen S
Current Eye Research 2015; 0: 1-15 (IGR: 16-4)


60704 Progressive thinning of visual cortex in primary open-angle glaucoma of varying severity
Zhao L
PLoS ONE 2015; 10: e0121960 (IGR: 16-4)


60571 Progressive degeneration of retinal and superior collicular functions in mice with sustained ocular hypertension
Yi J
Investigative Ophthalmology and Visual Science 2015; 56: 1971-1984 (IGR: 16-4)


60320 Ocular Hypertension Results in Retinotopic Alterations in the Visual Cortex of Adult Mice
Salinas-Navarro M
Current Eye Research 2015; 0: 1-15 (IGR: 16-4)


60143 Altered amplitude of low-frequency fluctuation in primary open-angle glaucoma: a resting-state FMRI study
Xie X
Investigative Ophthalmology and Visual Science 2015; 56: 322-329 (IGR: 16-4)


60320 Ocular Hypertension Results in Retinotopic Alterations in the Visual Cortex of Adult Mice
Vidal-Sanz M
Current Eye Research 2015; 0: 1-15 (IGR: 16-4)


60704 Progressive thinning of visual cortex in primary open-angle glaucoma of varying severity
Yin X
PLoS ONE 2015; 10: e0121960 (IGR: 16-4)


60143 Altered amplitude of low-frequency fluctuation in primary open-angle glaucoma: a resting-state FMRI study
Yang D
Investigative Ophthalmology and Visual Science 2015; 56: 322-329 (IGR: 16-4)


60571 Progressive degeneration of retinal and superior collicular functions in mice with sustained ocular hypertension
Liang P
Investigative Ophthalmology and Visual Science 2015; 56: 1971-1984 (IGR: 16-4)


60143 Altered amplitude of low-frequency fluctuation in primary open-angle glaucoma: a resting-state FMRI study
Wang N
Investigative Ophthalmology and Visual Science 2015; 56: 322-329 (IGR: 16-4)


60320 Ocular Hypertension Results in Retinotopic Alterations in the Visual Cortex of Adult Mice
Arckens L
Current Eye Research 2015; 0: 1-15 (IGR: 16-4)


60704 Progressive thinning of visual cortex in primary open-angle glaucoma of varying severity
Wang J
PLoS ONE 2015; 10: e0121960 (IGR: 16-4)


60571 Progressive degeneration of retinal and superior collicular functions in mice with sustained ocular hypertension
Zhang HF; Cang J
Investigative Ophthalmology and Visual Science 2015; 56: 1971-1984 (IGR: 16-4)


60320 Ocular Hypertension Results in Retinotopic Alterations in the Visual Cortex of Adult Mice
Moons L
Current Eye Research 2015; 0: 1-15 (IGR: 16-4)


60143 Altered amplitude of low-frequency fluctuation in primary open-angle glaucoma: a resting-state FMRI study
Tian J; Xian J
Investigative Ophthalmology and Visual Science 2015; 56: 322-329 (IGR: 16-4)


60571 Progressive degeneration of retinal and superior collicular functions in mice with sustained ocular hypertension
Troy JB; Liu X
Investigative Ophthalmology and Visual Science 2015; 56: 1971-1984 (IGR: 16-4)


59557 Serous detachment of the macula associated with advanced glaucomatous cupping
Spaide RF
Ophthalmic surgery, lasers & imaging retina 2014; 45: 598-600 (IGR: 16-3)


58790 Update in intracranial pressure evaluation methods and translaminar pressure gradient role in glaucoma
Siaudvytyte L; Januleviciene I; Ragauskas A; Bartusis L; Siesky B; Harris A
Acta Ophthalmologica 2015; 93: 9-15 (IGR: 16-3)


59011 Structural and functional brain changes beyond visual system in patients with advanced glaucoma
Frezzotti P; Giorgio A; Motolese I; De Leucio A; Iester M; Motolese E; Federico A; De Stefano N
PLoS ONE 2014; 9: e105931 (IGR: 16-3)


59058 A theoretical model to allow prediction of the CSF pressure from observations of the retinal venous pulse
Stewart PS; Jensen OE; Foss AJ
Investigative Ophthalmology and Visual Science 2014; 55: 6319-6323 (IGR: 16-3)


59267 Cerebral Microinfarcts in Primary Open-Angle Glaucoma Correlated With DTI-Derived Integrity of Optic Radiation
Schoemann J; Engelhorn T; Waerntges S; Doerfler A; El-Rafei A; Michelson G
Investigative Ophthalmology and Visual Science 2014; 55: 7241-7247 (IGR: 16-3)


58936 A topographical relationship between visual field defects and optic radiation changes in glaucoma
Kaushik M; Graham SL; Wang C; Klistorner A
Investigative Ophthalmology and Visual Science 2014; 55: 5770-5775 (IGR: 16-3)


59056 Abnormal metal levels in the primary visual pathway of the DBA/2J mouse model of glaucoma
DeToma AS; Dengler-Crish CM; Deb A; Braymer JJ; Penner-Hahn JE; van der Schyf CJ; Lim MH; Crish SD
Biometals : an international journal on the role of metal ions in biology, biochemistry, and medicine 2014; 27: 1291-1301 (IGR: 16-3)


59272 Anterograde transport blockade precedes deficits in retrograde transport in the visual projection of the DBA/2J mouse model of glaucoma
Dengler-Crish CM; Smith MA; Inman DM; Wilson GN; Young JW; Crish SD
Frontiers in neuroscience 2014; 8: 290 (IGR: 16-3)


59336 Establishment of an experimental ferret ocular hypertension model for the analysis of central visual pathway damage
Fujishiro T; Kawasaki H; Aihara M; Saeki T; Ymagishi R; Atarashi T; Mayama C; Araie M
Scientific reports 2014; 4: 6501 (IGR: 16-3)


59620 Retinal neurodegeneration on optical coherence tomography and cerebral atrophy
Ong YT; Hilal S; Cheung CY; Venketasubramanian N; Niessen WJ; Vrooman H; Anuar AR; Chew M; Chen C; Wong TY; Ikram MK
Neuroscience Letters 2015; 584: 12-16 (IGR: 16-3)


59079 Morphologic changes in the anterior and posterior subregions of V1 and V2 and the V5/MT+ in patients with primary open-angle glaucoma
Yu L; Yin X; Dai C; Liang M; Wei L; Li C; Zhang J; Xie B; Wang J
Brain Research 2014; 1588: 135-143 (IGR: 16-3)


59433 Progression of Normal-Tension Glaucoma After Ventriculoperitoneal Shunt to Decrease Cerebrospinal Fluid Pressure
Chen BH; Drucker MD; Louis KM; Richards DW
Journal of Glaucoma 2016; 25: e50-e52 (IGR: 16-3)


59096 Ganglion cell and inner plexiform layer thickness determined by spectral domain optical coherence tomography in patients with brain lesions
Moon H; Yoon JY; Lim HT; Sung KR
British Journal of Ophthalmology 2015; 99: 329-335 (IGR: 16-3)


59129 Heat shock protein 72 confers protection in retinal ganglion cells and lateral geniculate nucleus neurons via blockade of the SAPK/JNK pathway in a chronic ocular-hypertensive rat model
Li N; Li Y; Duan X
Neural Regeneration Research 2014; 9: 1395-1401 (IGR: 16-3)


57451 Estimated trans-lamina cribrosa pressure difference versus intraocular pressure as biomarker for open-angle glaucoma. The Beijing Eye Study 2011
Jonas JB; Wang NL; Wang YX; You QS; Xie XB; Yang DY; Xu L
Acta Ophthalmologica 2015; 93: e7-e13 (IGR: 16-2)


57026 An investigation of lateral geniculate nucleus volume in patients with primary open-angle glaucoma using 7 tesla magnetic resonance imaging
Lee JY; Jeong HJ; Lee JH; Kim YJ; Kim EY; Kim YY; Ryu T; Cho ZH; Kim YB
Investigative Ophthalmology and Visual Science 2014; 55: 3468-3476 (IGR: 16-2)


57407 Refined Data Analysis Provides Clinical Evidence for Central Nervous System Control of Chronic Glaucomatous Neurodegeneration
Sponsel WE; Groth SL; Satsangi N; Maddess T; Reilly MA
Translational vision science & technology 2014; 3: 1 (IGR: 16-2)


57071 Dendritic changes in rat visual pathway associated with experimental ocular hypertension
Liu M; Guo L; Salt TE; Cordeiro MF
Current Eye Research 2014; 39: 953-963 (IGR: 16-2)


57047 Optic neuropathy induced by experimentally reduced cerebrospinal fluid pressure in monkeys
Yang D; Fu J; Hou R; Liu K; Jonas JB; Wang H; Chen W; Li Z; Sang J; Zhang Z; Liu S; Cao Y; Xie X; Ren R; Lu Q; Weinreb RN; Wang N
Investigative Ophthalmology and Visual Science 2014; 55: 3067-3073 (IGR: 16-2)


57362 Glaucoma severity affects diffusion tensor imaging (DTI) parameters of the optic nerve and optic radiation
Sidek S; Ramli N; Rahmat K; Ramli NM; Abdulrahman F; Tan LK
European journal of radiology 2014; 83: 1437-1441 (IGR: 16-2)


56252 Effect of intraocular pressure on glaucomatous damage to the optic nerve
Jonas JB; Yang D; Wang N
Ophthalmologe 2014; 111: 181-188; quiz 189-90 (IGR: 16-1)


56665 DTI Analysis in Patients with Primary Open-Angle Glaucoma: Impact of Registration on Voxel-Wise Statistics
Schmidt MA; Mennecke A; Michelson G; Doerfler A; Engelhorn T
PLoS ONE 2014; 9: e99344 (IGR: 16-1)


56505 Higher intraocular pressure is associated with leukoaraiosis among middle-aged and elderly Koreans without glaucoma or dementia
Park BJ; Kim JK; Lee YJ
Eye 2014; 28: 715-719 (IGR: 16-1)


56160 Development and validation of an improved neurological hemifield test to identify chiasmal and postchiasmal lesions by automated perimetry
McCoy AN; Quigley HA; Wang J; Miller NR; Subramanian PS; Ramulu PY; Boland MV
Investigative Ophthalmology and Visual Science 2014; 55: 1017-1023 (IGR: 16-1)


56358 Absence of transient receptor potential vanilloid-1 accelerates stress-induced axonopathy in the optic projection
Ward NJ; Ho KW; Lambert WS; Weitlauf C; Calkins DJ
Journal of Neuroscience 2014; 34: 3161-3170 (IGR: 16-1)


56198 Gene expression-based comparison of the human secretory neuroepithelia of the brain choroid plexus and the ocular ciliary body: potential implications for glaucoma
Janssen SF; Gorgels TG; ten Brink JB; Jansonius NM; Bergen AA
Fluids and barriers of the CNS 2014; 11: 2 (IGR: 16-1)


55630 Body height, estimated cerebrospinal fluid pressure and open-angle glaucoma. The Beijing Eye Study 2011
Jonas JB; Wang N; Wang YX; You QS; Xie X; Yang D; Xu L
PLoS ONE 2014; 9: e86678 (IGR: 15-4)


55401 Optic nerve cupping and the neuro-ophthalmologist
Fraser CL; White AJ; Plant GT; Martin KR
Journal of Neuro-Ophthalmology 2013; 33: 377-389 (IGR: 15-4)


55681 Altered spontaneous brain activity in primary open angle glaucoma: a resting-state functional magnetic resonance imaging study
Song Y; Mu K; Wang J; Lin F; Chen Z; Yan X; Hao Y; Zhu W; Zhang H
PLoS ONE 2014; 9: e89493 (IGR: 15-4)


55737 Mapping cortical thickness of the patients with unilateral end-stage open angle glaucoma on planar cerebral cortex maps
Bogorodzki P; Piątkowska-Janko E; Szaflik J; Szaflik JP; Gacek M; Grieb P
PLoS ONE 2014; 9: e93682 (IGR: 15-4)


55549 A novel rat model to study the role of intracranial pressure modulation on optic neuropathies
Roy Chowdhury U; Holman BH; Fautsch MP
PLoS ONE 2013; 8: e82151 (IGR: 15-4)


54694 Reduced cortical thickness in primary open-angle glaucoma and its relationship to the retinal nerve fiber layer thickness
Yu L; Xie B; Yin X; Liang M; Evans AC; Wang J; Dai C
PLoS ONE 2013; 8: e73208 (IGR: 15-3)


54421 Evidence for widespread structural brain changes in glaucoma: a preliminary voxel-based MRI study
Williams AL; Lackey J; Wizov SS; Chia TM; Gatla S; Moster ML; Sergott R; Spaeth GL; Lai S
Investigative Ophthalmology and Visual Science 2013; 54: 5880-5887 (IGR: 15-3)


54680 Proton magnetic resonance spectroscopy ((1)H-MRS) reveals geniculocalcarine and striate area degeneration in primary glaucoma
Zhang Y; Chen X; Wen G; Wu G; Zhang X
PLoS ONE 2013; 8: e73197 (IGR: 15-3)


54696 Valsalva manoeuver, intra-ocular pressure, cerebrospinal fluid pressure, optic disc topography: Beijing intracranial and intra-ocular pressure study
Zhang Z; Wang X; Jonas JB; Wang H; Zhang X; Peng X; Ritch R; Tian G; Yang D; Li L; Li J; Wang N
Acta Ophthalmologica 2014; 92: e475-e480 (IGR: 15-3)


54538 Does the treatment of normal pressure hydrocephalus put the retinal ganglion cells at risk? A brief literature review and novel hypothesis
Bokhari RF; Baeesa SS
Medical Hypotheses 2013; 81: 686-689 (IGR: 15-3)


54454 Elevated levels of multiple biomarkers of Alzheimer's disease in the aqueous humor of eyes with open-angle glaucoma
Inoue T; Kawaji T; Tanihara H
Investigative Ophthalmology and Visual Science 2013; 54: 5353-5358 (IGR: 15-3)


54620 Functional Pituitary Tumors Masquerading as Primary Glaucoma and Effect of Hypophysectomy on Intraocular Tension
Gupta S; Sihota R; Gupta V; Dada T; Gogia V; Sharma A
Journal of Glaucoma 2015; 24: e7-13 (IGR: 15-3)


53838 Compartment syndromes of the optic nerve and open-angle glaucoma
Killer HE
Journal of Glaucoma 2013; 22: S19-20 (IGR: 15-2)


53851 Production and circulation of cerebrospinal fluid with respect to the subarachnoid space of the optic nerve
Killer HE
Journal of Glaucoma 2013; 22: S8-10 (IGR: 15-2)


53839 Anatomy of the visual pathways
De Moraes CG
Journal of Glaucoma 2013; 22: S2-7 (IGR: 15-2)


53842 How to measure cerebrospinal fluid pressure invasively and noninvasively
Silverman CA; Linstrom CJ
Journal of Glaucoma 2013; 22: S26-8 (IGR: 15-2)


53837 Systemic parameters associated with cerebrospinal fluid pressure
Berdahl JP
Journal of Glaucoma 2013; 22: S17-8 (IGR: 15-2)


53889 Glaucoma classification based on visual pathway analysis using diffusion tensor imaging
El-Rafei A; Engelhorn T; Wärntges S; Dörfler A; Hornegger J; Michelson G
Magnetic Resonance Imaging 2013; 31: 1081-1091 (IGR: 15-2)


53841 Central nervous system changes in glaucoma
Yücel Y
Journal of Glaucoma 2013; 22: S24-5 (IGR: 15-2)


53835 Intracranial pressure and glaucoma
Jonas JB; Wang N
Journal of Glaucoma 2013; 22: S13-4 (IGR: 15-2)


53840 Imaging visual cortical structure and function in vivo
Majewska AK
Journal of Glaucoma 2013; 22: S21-3 (IGR: 15-2)


53848 Cerebral blood flow in glaucoma patients
Harris A; Wirostko B
Journal of Glaucoma 2013; 22: S46-8 (IGR: 15-2)


53836 Central venous pulsations: new findings, clinical importance and relation to cerebrospinal fluid pressure
Morgan WH
Journal of Glaucoma 2013; 22: S15-6 (IGR: 15-2)


54017 Reduced Cerebrovascular Reactivity in Posterior Cerebral Arteries in Patients with Primary Open-Angle Glaucoma
Zhang S; Xie Y; Yang J; Tang Y; Li R; Wang N; Zhang C
Ophthalmology 2013; 120: 2501-2507 (IGR: 15-2)


53846 Noninvasive brain stimulation in the study of the human visual system
Halko MA; Eldaief MC; Pascual-Leone A
Journal of Glaucoma 2013; 22: S39-41 (IGR: 15-2)


53834 Low cerebrospinal fluid pressure in the pathogenesis of primary open-angle glaucoma: epiphenomenon or causal relationship? The Beijing Intracranial and Intraocular Pressure (iCOP) study
Wang N; Jonas JB
Journal of Glaucoma 2013; 22: S11-2 (IGR: 15-2)


53594 Senescent Changes in Cerebrospinal Fluid Circulatory Physiology and Their Role in the Pathogenesis of Normal-tension Glaucoma
Wostyn P; De Groot V; Van Dam D; Audenaert K; De Deyn PP
American Journal of Ophthalmology 2013; 156: 5-14.e2 (IGR: 15-2)


53852 Glaucoma and CNS. Comparison of fMRI results in high tension and normal tension glaucoma
Lestak J; Tintera J; Svata Z; Ettler L; Rozsival P
Biomedical papers of the Medical Faculty of the University Palacky, Olomouc, Czechoslovakia 2014; 158: 144-153 (IGR: 15-2)


53752 Is there a link between open-angle glaucoma and dementia? The 3C-alienor cohort
Helmer C; Malet F; Rougier MB; Schweitzer C; Colin J; Delyfer MN; Korobelnik JF; Barberger-Gateau P; Dartigues JF; Delcourt C
Annals of Neurology 2013; 0: (IGR: 15-2)


53845 Alzheimer's disease and glaucoma: mechanistic similarities and differences
Ghiso JA
Journal of Glaucoma 2013; 22: S36-8 (IGR: 15-2)


52430 Correlation between lateral geniculate nucleus atrophy and damage to the optic disc in glaucoma
Chen Z; Wang J; Lin F; Dai H; Mu K; Zhang H
Journal of neuroradiology. Journal de neuroradiologie 2013; 40: 281-287 (IGR: 15-1)


53034 Structural brain abnormalities in patients with primary open-angle glaucoma: a study with 3T MR imaging
Chen WW; Wang N; Cai S; Fang Z; Yu M; Wu Q; Tang L; Guo B; Feng Y; Jonas JB; Chen X; Liu X; Gong Q
Investigative Ophthalmology and Visual Science 2013; 54: 545-554 (IGR: 15-1)


53178 Ocular integrity following manganese labeling of the visual system for MRI
Lindsey JD; Grob SR; Scadeng M; Duong-Polk K; Weinreb RN
Magnetic Resonance Imaging 2013; 31: 865-874 (IGR: 15-1)


52809 Positive correlation between the degree of visual field defect and optic radiation damage in glaucoma patients
Murai H; Suzuki Y; Kiyosawa M; Tokumaru AM; Ishii K; Mochizuki M
Japanese Journal of Ophthalmology 2013; 57: 257-262 (IGR: 15-1)


51936 Whole-brain voxel-based analysis of diffusion tensor MRI parameters in patients with primary open angle glaucoma and correlation with clinical glaucoma stage
Dai H; Yin D; Hu C; Morelli JN; Hu S; Yan X; Xu D
Neuroradiology 2013; 55: 233-243 (IGR: 14-4)


51837 Failure of axonal transport induces a spatially coincident increase in astrocyte BDNF prior to synapse loss in a central target
Crish SD; Dapper JD; MacNamee SE; Balaram P; Sidorova TN; Lambert WS; Calkins DJ
Neuroscience 2013; 229: 55-70 (IGR: 14-4)


52035 Cerebrospinal fluid pressure decreases with older age
Fleischman D; Berdahl JP; Zaydlarova J; Stinnett S; Fautsch MP; Allingham RR
PLoS ONE 2012; 7: e52664 (IGR: 14-4)


50971 Reduced white matter integrity in primary open-angle glaucoma: A DTI study using tract-based spatial statistics
Lu P; Shi L; Du H; Xie B; Li C; Li S; Liu T; Feng H; Wang J
Journal of neuroradiology. Journal de neuroradiologie 2013; 40: 89-93 (IGR: 14-3)


51281 Brain involvement in glaucoma: advanced neuroimaging for understanding and monitoring a new target for therapy
Nucci C; Martucci A; Cesareo M; Mancino R; Russo R; Bagetta G; Cerulli L; Garaci FG
Current opinion in pharmacology 2013; 13: 128-133 (IGR: 14-3)


51330 Brain antioxidant status in a high pressure-induced rat model of glaucoma
Ferreira SM; Lerner F; Reides CG; Brunzini R; Llesuy SF
Acta Ophthalmologica 2013; 91: e64-e70 (IGR: 14-3)


51279 The translaminar pressure gradient in sustained zero gravity, idiopathic intracranial hypertension, and glaucoma
Berdahl JP; Yu DY; Morgan WH
Medical Hypotheses 2012; 79: 719-724 (IGR: 14-3)


50611 Orbital Cerebrospinal Fluid Space in Glaucoma: The Beijing iCOP Study
Wang N; Xie X; Yang D; Xian J; Li Y; Ren R; Peng X; Jonas JB; Weinreb RN
Ophthalmology 2012; 119: 2065-2073.e1 (IGR: 14-2)


50442 Voxel-based Morphometry of the Visual-related Cortex in Primary Open Angle Glaucoma
Li C; Cai P; Shi L; Lin Y; Zhang J; Liu S; Xie B; Shi Y; Yang H; Li S; Du H; Wang J
Current Eye Research 2012; 37: 794-802 (IGR: 14-2)


50438 Evaluation of corpus geniculatum laterale and vitreous fluid by magnetic resonance spectroscopy in patients with glaucoma; a preliminary study
Doganay S; Cankaya C; Alkan A
Eye 2012; 26: 1044-1051 (IGR: 14-2)


50457 Changes in the modulation of retinocollicular transmission through group III mGluRs long after an increase in intraocular pressure in a rat model of glaucoma
Georgiou AL; Guo L; Cordeiro MF; Salt TE
Visual Neuroscience 2012; 0: 1-10 (IGR: 14-2)


50390 Changes of radial diffusivity and fractional anisotopy in the optic nerve and optic radiation of glaucoma patients
Engelhorn T; Michelson G; Waerntges S; Otto M; El-Rafei A; Struffert T; Doerfler A
TheScientificWorldJournal 2012; 2012: 849632 (IGR: 14-2)


50562 Diffusion tensor MRI reveals visual pathway damage that correlates with clinical severity in glaucoma
Chen Z; Lin F; Wang J; Li Z; Dai H; Mu K; Ge J; Zhang H
Clinical and Experimental Ophthalmology 2013; 41: 43-49 (IGR: 14-2)


48919 Neuroretinal rim area and body mass index
Xu L; Wang YX; Wang S; Jonas JB
PLoS ONE 2012; 7: e30104 (IGR: 14-1)


48707 Cerebrospinal fluid exchange in the optic nerve in normal-tension glaucoma
Killer HE; Miller NR; Flammer J; Meyer P; Weinreb RN; Remonda L; Jaggi GP
British Journal of Ophthalmology 2012; 96: 544-548 (IGR: 14-1)


48969 A new approach to assess intracranial white matter abnormalities in glaucoma patients: changes of fractional anisotropy detected by 3T diffusion tensor imaging
Engelhorn T; Michelson G; Waerntges S; Hempel S; El-Rafei A; Struffert T; Doerfler A
Academic Radiology 2012; 19: 485-488 (IGR: 14-1)


49276 Resting-state functional MRI: Functional connectivity analysis of the visual cortex in primary open-angle glaucoma patients
Dai H; Morelli JN; Ai F; Yin D; Hu C; Xu D; Li Y
Human Brain Mapping 2013; 34: 2455-2463 (IGR: 14-1)


48991 An alteration in the lateral geniculate nucleus of experimental glaucoma monkeys: in vivo positron emission tomography imaging of glial activation
Shimazawa M; Ito Y; Inokuchi Y; Yamanaka H; Nakanishi T; Hayashi T; Ji B; Higuchi M; Suhara T; Imamura K; Araie M; Watanabe Y; Onoe H; Hara H
PLoS ONE 2012; 7: e30526 (IGR: 14-1)


48704 Voxel-based morphometry and diffusion tensor imaging of the optic pathway in primary open-angle glaucoma: a preliminary study
Zikou AK; Kitsos G; Tzarouchi LC; Astrakas L; Alexiou GA; Argyropoulou MI
American Journal of Neuroradiology 2012; 33: 128-134 (IGR: 14-1)


49114 DTI parameters of axonal integrity and demyelination of the optic radiation correlate with glaucoma indices
Michelson G; Engelhorn T; Wä,rntges S; El Rafei A; Hornegger J; Doerfler A
Graefe's Archive for Clinical and Experimental Ophthalmology 2013; 251: 243-253 (IGR: 14-1)


48507 Lack of spatial remapping of the visual field surrounding a monocular scotoma
Westheimer G
Clinical and Experimental Optometry 2012; 95: 109-112 (IGR: 14-1)


48663 Astrocytic responses in the lateral geniculate nucleus of monkeys with experimental glaucoma
Dai Y; Sun X; Yu X; Guo W; Yu D
Veterinary Ophthalmology 2012; 15: 23-30 (IGR: 14-1)


49049 Integrity/demyelination of the optic radiation, morphology of the papilla, and contrast sensitivity in glaucoma patients
Michelson G; Wä,rntges S; Engelhorn T; El-Rafei A; Hornegger J; Dö,rfler A
Klinische Monatsblätter für Augenheilkunde 2012; 229: 143-148 (IGR: 14-1)


49025 Body mass index has a linear relationship with cerebrospinal fluid pressure
Berdahl JP; Fleischman D; Zaydlarova J; Stinnett S; Allingham RR; Fautsch MP
Investigative Ophthalmology and Visual Science 2012; 53: 1422-1427 (IGR: 14-1)


48106 Evaluation of an algorithm for detecting visual field defects due to chiasmal and postchiasmal lesions: the neurological hemifield test
Boland MV; McCoy AN; Quigley HA; Miller NR; Subramanian PS; Ramulu PY; Murakami P; Danesh-Meyer HV
Investigative Ophthalmology and Visual Science 2011; 52: 7959-7965 (IGR: 13-4)


47882 Magnetic resonance in studies of glaucoma
Fiedorowicz M; Dyda W; Rejdak R; Grieb P
Medical Science Monitor 2011; 17: RA227-RA232 (IGR: 13-4)


46351 Role of cerebrospinal fluid pressure in the pathogenesis of glaucoma
Jonas JB
Acta Ophthalmologica 2011; 89: 505-514 (IGR: 13-3)


46744 A framework for voxel-based morphometric analysis of the optic radiation using diffusion tensor imaging in glaucoma
El-Rafei A; Engelhorn T; Warntges S; Dorfler A; Hornegger J; Michelson G
Magnetic Resonance Imaging 2011; (IGR: 13-3)


46678 Assessment of lateral geniculate nucleus atrophy with 3T MR imaging and correlation with clinical stage of glaucoma
Dai H; Mu KT; Qi J; Wang CY; Zhu WZ; Xia LM; Chen ZQ; Zhang H; Ai F; Morelli JN
American Journal of Neuroradiology 2011; 32: 1347-1353 (IGR: 13-3)


46666 Molecular brain imaging in the glaucoma model of monkeys using PET and MRI
Hara H; Shimazawa M
Neuroscience Research 2011; 71: e39 (IGR: 13-3)


47098 Glaucoma-like optic neuropathy in patients with intracranial tumours
Qu Y; Wang YX; Xu L; Zhang L; Zhang J; Wang L; Yang L; Yang A; Wang J
Acta Ophthalmologica 2011; 89: e428-e433 (IGR: 13-3)


46708 Are intracranial pressure fluctuations important in glaucoma?
Wostyn P; De Groot V; Audenaert K; De Deyn PP
Medical Hypotheses 2011; (IGR: 13-3)


45737 Automated morphometry of the visual pathway in primary open-angle glaucoma
Hernowo AT; Boucard CC; Jansonius NM; Hooymans JMM; Cornelissen FW
Investigative Ophthalmology and Visual Science 2011; 52: 2758-2766 (IGR: 13-2)


45656 Effect of experimental glaucoma on the non-image forming visual system
de Zavalia N; Plano SA; Fernandez DC; Lanzani MF; Salido E; Belforte N; Sarmiento MIK; Golombek DA; Rosenstein RE
Journal of Neurochemistry 2011; 117: 904-914 (IGR: 13-2)


45792 Pituitary tumour mimicking glaucoma: Two case reports
Ali H; Shibeb J
Neuro-Ophthalmology 2011; 35: 64 (IGR: 13-2)


45793 Bilateral supraclinoid aneurysms associated with progressive visual loss
Carmen Garcia M; Canovas D; Marco M; Hervas M; Estela J; Ribera G
Neuro-Ophthalmology 2011; 35: 43 (IGR: 13-2)


46286 REVIEW: An approach for neuroprotective therapies of secondary brain damage after excitotoxic retinal injury in mice
Ito Y; Shimazawa M; Hara H
CNS neuroscience & therapeutics 2010; 16: 169-179 (IGR: 13-2)


45673 Basic and clinical studies of pressure-independent damaging factors of open angle glaucoma
Araie M
Nippon Ganka Gakkai Zasshi 2011; 115: 213-236 (IGR: 13-2)


28109 Diffusion Tensor Imaging Detects Rarefaction of Optic Radiation in Glaucoma Patients
Engelhorn T; Michelson G; Waerntges S; Struffert T; Haider S; Doerfler A
Academic Radiology 2011; 18:764-769 (IGR: 13-1)


27725 Cerebrospinal fluid pressure in ocular hypertension
Ren R; Zhang X; Wang N; Li B; Tian G; Jonas JB
Acta Ophthalmologica 2011; 89: 142-148 (IGR: 13-1)


28034 Involvement of endoplasmic reticulum stress on neuronal cell death in the lateral geniculate nucleus in the monkey glaucoma model
Ito Y; Shimazawa M; Inokuchi Y; Yamanaka H; Tsuruma K; Imamura K; Onoe H; Watanabe Y; Aihara M; Araie M
European Journal of Neuroscience 2011; 33:843-855 (IGR: 13-1)


27865 Dendritic changes in visual pathways in glaucoma and other neurodegenerative conditions
Liu M; Duggan J; Salt TE; Cordeiro MF
Experimental Eye Research 2011; 92: 244-250 (IGR: 13-1)


27951 In vivo multiparametric magnetic resonance imaging and spectroscopy of rodent visual system
Chan KC; Cheung MM; Wu EX
Journal of Integrative Neuroscience 2010; 9: 477-508 (IGR: 13-1)


27908 Dendrite plasticity in the lateral geniculate nucleus in primate glaucoma
Ly T; Gupta N; Weinreb RN; Kaufman PL; Yucel YH
Vision Research 2011; 51: 243-250 (IGR: 13-1)


27571 Functional MRI signal changes in primary visual cortex corresponding to the central normal visual field of patients with primary open-angle glaucoma
Qing G; Zhang S; Wang B; Wang N
Investigative ophthalmology & visual science 2010; 51: 4627-4634 (IGR: 12-4)


27472 Evaluation of functional integrity of the retinohypothalamic tract in advanced glaucoma using multifocal electroretinography and light-induced melatonin suppression
Perez-Rico C; de la Villa P; Arribas-Gomez I; Blanco R
Experimental Eye Research 2010; 91: 578-583 (IGR: 12-4)


27267 CNS Targets Support and Sustain Differentiation of Cultured Neuronal and Retinal Progenitor Cells
Sharma RK; Zhou Q; Netland PA
Neurochemical Research 2010; 1-8 (IGR: 12-4)


27646 An approach for neuroprotective therapies of secondary brain damage after excitotoxic retinal injury in Mice
Ito Y; Shimazawa M; Hara H
CNS Neuroscience and Therapeutics 2010; 16: 169-179 (IGR: 12-4)


26516 Neuro-imaging examination of glaucomatous visual field defects
Yoshida M; Boucard CC; Hernowo AT; Ida M; Nishio T; Nishimoto F; Kato M; Nguyen Th; Istoc A; Iba-Zizen MT
Neuro-Ophthalmology 2010; 34: 180-181 (IGR: 12-3)


26384 Functional MRI signal changes in primary visual cortex corresponding to the central normal visual field of patients with primary open-angle glaucoma
Qing G; Zhang S; Wang B; Wang N
Investigative Ophthalmology and Visual Science 2010; 51: 4627-4634 (IGR: 12-3)


26010 Recovery of function and plasticity after lesions of the central visual pathway
Gall C; Prilloff S; Sabel BA
Journal fur Neurologie, Neurochirurgie und Psychiatrie 2010; 11: 18-30 (IGR: 12-2)


25661 Glaucoma in patient with pituitary tumor--case report
Lesiewska-Junk H; Malukiewicz G
Klinika Oczna 2009; 111: 336-338 (IGR: 12-2)


26171 Chiasmal compression misdiagnosed as normal-tension glaucoma: can we avoid the pitfalls?
Drummond SR; Weir C
International Ophthalmology 2010; 30: 215-219 (IGR: 12-2)


25645 Intracranial tumors in patients referred for optical coherence tomography examination as glaucoma suspects: Case report
Neto LB; de Mesquita AS
Arquivos Brasileiros de Oftalmologia 2009; 72: 701-705 (IGR: 12-2)


25076 Intracranial pressure and glaucoma
Berdahl JP; Allingham RR
Current Opinions in Ophthalmology 2010; 21: 106-111 (IGR: 12-1)


25137 Cerebrospinal Fluid Pressure in Glaucoma A Prospective Study
Ren R; Jonas JB; Tian G; Zhen Y; Ma K; Li S; Wang H; Li B; Zhang X; Wang N
Ophthalmology 2010; 117: 259-266 (IGR: 12-1)


25261 Conventional MRI and magnetisation transfer imaging of the brain and optic pathway in primary open-angle glaucoma
Kitsos G; Zikou A K; Bagli E; Kosta P; Argyropoulou M I
British Journal of Radiology 2009; 82: 983: 896-900 (IGR: 12-1)


25340 Role of cerebrospinal fluid in glaucoma: Pressure and beyond
Yang Y; Yu M; Zhu J; Chen X; Liu X
Medical Hypotheses 2010; 74: 31-34 (IGR: 12-1)


25546 Current research advance of MRI changes in visual pathway of glaucoma
Wang L -R; Ma X
International Journal of Ophthalmology 2010; 10: 93-96 (IGR: 12-1)


25439 PAX6 aniridia and interhemispheric brain anomalies.
Abouzeid H; Youssef M A; ElShakankiri N; Hauser P; Munier F L; Schorderet D F
Molecular Vision 2009; 15: 2074-2083 (IGR: 12-1)


25589 Conventional MRI and magnetisation transfer imaging of the brain and optic pathway in primary open-angle glaucoma.
Kitsos G; Zikou A K; Bagli E; Kosta P; Argyropoulou M I
The British journal of radiology 2009; 82: 896-900 (IGR: 12-1)


25571 Expression of nitric oxide synthase in the lateral geniculate nucleus of rats with acute ocular hypertension
Hang H; Zhu C -H; Liu H; Ma Y -P
International Journal of Ophthalmology 2009; 9: 2315-2317 (IGR: 12-1)


24675 Changes in cortical grey matter density associated with long-standing retinal visual field defects
Boucard CC; Hernowo AT; Maguire RP; Jansonius NM; Roerdink JB; Hooymans JM; Cornelissen FW
Brain: a journal of neurology 2009; 132:Pt 7 1898-1906 (IGR: 11-4)


24547 Optic nerve and optic radiation neurodegeneration in glaucoma patients: An in vivo analysis with 3 tesla MR diffusion tensor imaging
Ondo EA; Meschini E; Garaci F; Bolacchi F; Manenti G; Melis M; Floris R; Nucci C; Simonetti G
Neuroradiology 2009; 51: S96 (IGR: 11-4)


24548 Voxel-based morphometry and diffusion tensor imaging of the optic pathway in primary open-angle glaucoma
Zikou AK; Kitsos G; Tzarouchi LC; Astrakas L; Argyropoulou MI
Neuroradiology 2009; 51: S44-S45 (IGR: 11-4)


24689 Optic nerve and optic radiation neurodegeneration in patients with glaucoma: in vivo analysis with 3-T diffusion-tensor MR imaging
Garaci FG; Bolacchi F; Cerulli A; Melis M; Spano A; Cedrone C; Floris R; Simonetti G; Nucci C
Radiology 2009; 252: 496-501 (IGR: 11-4)


22571 Atrophy of the lateral geniculate nucleus in human glaucoma detected by magnetic resonance imaging
Gupta N; Greenberg G; de Tilly LN; Gray B; Polemidiotis M; Yücel YH
British Journal of Ophthalmology 2009; 93: 56-60 (IGR: 11-1)


22819 Glaucoma alters the expression of NGF and NGF receptors in visual cortex and geniculate nucleus of rats: Effect of eye NGF application
Sposato V; Parisi V; Manni L; Antonucci MT; Fausto VD; Sornelli F; Aloe L
Vision Research 2009; 49: 54-63 (IGR: 11-1)


22975 Molecular imaging reveals unique degenerative changes in experimental glaucoma
Imamura K; Onoe H; Shimazawa M; Nozaki S; Wada Y; Kato K; Nakajima H; Mizuma H; Onoe K; Taniguchi T
Neuroreport 2009; 20: 139-144 (IGR: 11-1)


22512 Proton magnetic resonance spectroscopy revealed choline reduction in the visual cortex in an experimental model of chronic glaucoma
Chan KC; So KF; Wu EX
Experimental Eye Research 2009; 88: 65-70 (IGR: 11-1)


23056 Retrograde labeling of retinal ganglion cells by application of fluoro-gold on the surface of superior colliculus
Chiu K; Lau WM; Yeung SC; Chang RC; So KF
Journal of Vision Exp 2008; 16: (IGR: 11-1)


21336 Paying attention to the cerebrovascular system in glaucoma
Yücel YH; Gupta N
Canadian Journal of Ophthalmology 2008; 43: 342-346 (IGR: 10-2)


20863 Changes in visual fields and lateral geniculate nucleus in monkey laser-induced high intraocular pressure model
Sasaoka M; Nakamura K; Shimazawa M; Ito Y; Araie M; Hara H
Experimental Eye Research 2008; 86: 770-782 (IGR: 10-2)


21017 Hypophysial macroadenoma revealed by clinical symptoms simulating chronic glaucoma
El Fekih L; Hmaied W; Moalla S; El Hif S; Kchaou I; Abid M; Sakka S; Darmoul M; Bouhaouala M
Journal Français d'Ophtalmologie 2008; 31: 303-306 (IGR: 10-2)


19703 Brain MRI findings in infants with primary congenital glaucoma
Dai AI; Saygili O
Annals of Saudi Medicine 2007; 27: 264-267 (IGR: 9-4)


17963 Should we treat the brain in glaucoma?
Gupta N; Yücel YH
Canadian Journal of Ophthalmology 2007; 42: 409-413 (IGR: 9-2)


16936 Retinotopic organization of primary visual cortex in glaucoma: Comparing fMRI measurements of cortical function with visual field loss
Duncan RO; Sample PA; Weinreb RN; Bowd C; Zangwill LM
Progress in Retinal and Eye Research 2007; 26: 38-56 (IGR: 9-1)


16991 Retinotopic organization of primary visual cortex in glaucoma: a method for comparing cortical function with damage to the optic disk
Duncan RO; Sample PA; Weinreb RN; Bowd C; Zangwill LM
Investigative Ophthalmology and Visual Science 2007; 48: 733-744 (IGR: 9-1)


16816 Chronic ocular hypertension induces dendrite pathology in the lateral geniculate nucleus of the brain
Gupta N; Ly T; Zhang Q; Kaufman PL; Weinreb RN; Yucel YH
Experimental Eye Research 2007; 84: 176-184 (IGR: 9-1)


16787 Glaucoma as a neurodegenerative disease
Gupta N; Yucel YH
Current Opinions in Ophthalmology 2007; 18: 110-114 (IGR: 9-1)


17065 Possible relationship between delayed myelinization and primary congenital glaucoma
Dai AI; Saygili O
Neurology Psychiatry and Brain Research 2006; 13: 201-204 (IGR: 9-1)


17064 Primary congenital glaucoma and agenesis of corpus callosum
Saygili O; Dai AI
Neurology Psychiatry and Brain Research 2006; 13: 221-224 (IGR: 9-1)


15109 Consequences of glaucoma on circadian and central visual systems
Chiquet C; Drouyer E; Woldemussie E; Ruiz G; Wheeler L; Denis P; Cooper H; Romanet JP
Journal Français d'Ophtalmologie 2006; 29: 847-851 (IGR: 8-4)


15259 Assessment of axonal degeneration along the human visual pathway using diffusion trace analysis
Ueki S; Fujii Y; Matsuzawa H; Takagi M; Abe H; Kwee IL; Nakada T
American Journal of Ophthalmology 2006; 142: 591-596 (IGR: 8-4)


12537 Differential behavior of simple and complex cells in visual cortex during a brief IOP elevation
Chen X; Liang Z; Shen W; Shou T
Investigative Ophthalmology and Visual Science 2005; 46: 2611-2619 (IGR: 7-2)


12325 Expression of immediate early gene c-fos in the lateral geniculate nucleus of rats with optic nerve injury
Dai Y; Sun XH
Chinese Journal of Ophthalmology 2005; 41: 321-324 (IGR: 7-2)


11870 Oxidative injury by peroxynitrite in neural and vascular tissue of the lateral geniculate nucleus in experimental glaucoma
Luthra A; Gupta N; Kaufman PL; Weinreb RN; Yucel YH
Experimental Eye Research 2005; 80: 43-49 (IGR: 7-1)


10573 Functional and structural analysis of the visual system in the rhesus monkey model of optic nerve head ischemia
Brooks DE; Kallberg ME; Cannon RL; Komaromy AM; Ollivier FJ; Malakhova OE; Dawson WW; Sherwood MB; Kuekuerichkina EE; Lambrou GN
Investigative Ophthalmology and Visual Science 2004; 45: 1830-40 (IGR: 6-2)


10697 Association of magnetic resonance imaging of anterior optic pathway with glaucomatous visual field damage and optic disc cupping
Kashiwagi K; Okubo T; Tsukahara S
Journal of Glaucoma 2004; 13:189-95 (IGR: 6-2)


9110 Neurochemical correlates of cortical plasticity after unilateral elevated intraocular pressure in a primate model of glaucoma
Lam DY; Kaufman PL; Gabelt BT; To EC; Matsubara JA
Investigative Ophthalmology and Visual Science 2003; 44: 2573-2581 (IGR: 5-2)


8653 Brain changes in glaucoma
Gupta N; Yucel YH
European Journal of Ophthalmology 2003; 13 Suppl 3: S32-5 (IGR: 5-1)


8750 Detection of visual activation of lateral geniculate nucleus by positron emission tomography
Mizoguchi S; Suzuki Y; Kiyosawa M; Mochizuki M; Kawasaki T; Ishii K; Senda M
Graefe's Archive for Clinical and Experimental Ophthalmology 2003; 241: 8-12 (IGR: 5-1)


8765 Multifaceted roles of nitric oxide in the lateral geniculate nucleus: From visual signal transduction to neuronal apoptosis
Nucci C; Morrone L; Rombola L; Nistico R; Piccirilli S; Cerulli L
Toxicology Letters 2003; 139: 163-173 (IGR: 5-1)


3441 C-fos and c-jun expressions in nitric oxide synthase immunoreactive neurons in the lateral geniculate nucleus of experimental glaucomatous rats
Wang X; Tay SSW; Ng YK
Experimental Brain Research 2002; 144: 365-372 (IGR: 4-2)


18480 Measurement of intraocular pressure in awake mice
Cohan BE; Bohr DF
Investigative Ophthalmology and Visual Science 2001; 42: 2560-2562 (IGR: 3-3)


18479 Effect of pneumatic suction ring placement on intraocular pressure in cats
Li B
Ophthalmic Research 2001; 33: 271-275 (IGR: 3-3)


18478 The changes of vitreous pH values in an acute glaucoma rabbit model
Lu DW; Chang CJ; Wu JN
Journal of Ocular Pharmacology and Therapeutics 2001; 17: 343-350 (IGR: 3-3)


18477 Effect of topical administration of 2% dorzlamide hydrochloride or 2% dorzlamide hydrochloride-0.5% timolol maleate on intraocular pressure in clinically normal horses
Willis AM; Robbin TE; Hoshaw-Woodard S; Wilkie DA; Schmall ML
American Journal of Veterinary Research 2001; 62: 709-713 (IGR: 3-3)



5.2 Primates (374 abstracts found)


91836 Quantification of Translaminar Pressure Gradient (TLPG) With Continuous Wireless Telemetry in Nonhuman Primates (NHPs)
Jasien JV; Fazio MA; Samuels BC; Johnston JM; Downs JC
Translational vision science & technology 2020; 9: 18 (IGR: 21-4)


90127 Suppression of Oxidative Stress as Potential Therapeutic Approach for Normal Tension Glaucoma
Harada C
Antioxidants (Basel, Switzerland) 2020; 9: (IGR: 21-3)


90284 Longitudinal assessment of optic nerve head changes using optical coherence tomography in a primate microbead model of ocular hypertension
Chan ASY
Scientific reports 2020; 10: 14709 (IGR: 21-3)


90027 Experimental models of glaucoma filtration surgery
Chong RS; Crowston JG
Acta Ophthalmologica 2021; 99: 9-15 (IGR: 21-3)


90284 Longitudinal assessment of optic nerve head changes using optical coherence tomography in a primate microbead model of ocular hypertension
Tun TA
Scientific reports 2020; 10: 14709 (IGR: 21-3)


90127 Suppression of Oxidative Stress as Potential Therapeutic Approach for Normal Tension Glaucoma
Noro T
Antioxidants (Basel, Switzerland) 2020; 9: (IGR: 21-3)


90284 Longitudinal assessment of optic nerve head changes using optical coherence tomography in a primate microbead model of ocular hypertension
Allen JC
Scientific reports 2020; 10: 14709 (IGR: 21-3)


90127 Suppression of Oxidative Stress as Potential Therapeutic Approach for Normal Tension Glaucoma
Kimura A
Antioxidants (Basel, Switzerland) 2020; 9: (IGR: 21-3)


90027 Experimental models of glaucoma filtration surgery
Wong TT
Acta Ophthalmologica 2021; 99: 9-15 (IGR: 21-3)


90284 Longitudinal assessment of optic nerve head changes using optical coherence tomography in a primate microbead model of ocular hypertension
Lynn MN
Scientific reports 2020; 10: 14709 (IGR: 21-3)


90127 Suppression of Oxidative Stress as Potential Therapeutic Approach for Normal Tension Glaucoma
Guo X; Namekata K
Antioxidants (Basel, Switzerland) 2020; 9: (IGR: 21-3)


90284 Longitudinal assessment of optic nerve head changes using optical coherence tomography in a primate microbead model of ocular hypertension
Tun SBB
Scientific reports 2020; 10: 14709 (IGR: 21-3)


90127 Suppression of Oxidative Stress as Potential Therapeutic Approach for Normal Tension Glaucoma
Nakano T
Antioxidants (Basel, Switzerland) 2020; 9: (IGR: 21-3)


90284 Longitudinal assessment of optic nerve head changes using optical coherence tomography in a primate microbead model of ocular hypertension
Barathi VA; Girard MJA
Scientific reports 2020; 10: 14709 (IGR: 21-3)


90127 Suppression of Oxidative Stress as Potential Therapeutic Approach for Normal Tension Glaucoma
Harada T
Antioxidants (Basel, Switzerland) 2020; 9: (IGR: 21-3)


90284 Longitudinal assessment of optic nerve head changes using optical coherence tomography in a primate microbead model of ocular hypertension
Aung T; Aihara M
Scientific reports 2020; 10: 14709 (IGR: 21-3)


84885 C3 Transferase-Expressing scAAV2 Transduces Ocular Anterior Segment Tissues and Lowers Intraocular Pressure in Mouse and Monkey
Tan J; Wang X; Cai S; He F; Zhang D; Li D; Zhu X; Zhou L; Fan N; Liu X
Molecular therapy. Methods & clinical development 2020; 17: 143-155 (IGR: 21-1)


82591 The Relationship Between Scleral Strain Change and Differential Cumulative Intraocular Pressure Exposure in the Nonhuman Primate Chronic Ocular Hypertension Model
Fazio MA
Investigative Ophthalmology and Visual Science 2019; 60: 4141-4150 (IGR: 20-4)


82641 Pharmacokinetics and intraocular pressure-lowering activity of TAK-639, a novel C-type natriuretic peptide analog, in rabbit, dog, and monkey
Savinainen A
Experimental Eye Research 2019; 189: 107836 (IGR: 20-4)


82835 Acute Stress Increases Intraocular Pressure in Nonhuman Primates
Turner DC
Ophthalmology. Glaucoma 2019; 2: 210-214 (IGR: 20-4)


82202 Towards A Microbead Occlusion Model of Glaucoma for a Non-Human Primate
Lambert WS
Scientific reports 2019; 9: 11572 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Thackaberry EA
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82641 Pharmacokinetics and intraocular pressure-lowering activity of TAK-639, a novel C-type natriuretic peptide analog, in rabbit, dog, and monkey
Savinainen A
Experimental Eye Research 2019; 189: 107836 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Noro T; Namekata K
Scientific reports 2019; 9: 14852 (IGR: 20-4)


82835 Acute Stress Increases Intraocular Pressure in Nonhuman Primates
Miranda M
Ophthalmology. Glaucoma 2019; 2: 210-214 (IGR: 20-4)


82202 Towards A Microbead Occlusion Model of Glaucoma for a Non-Human Primate
Carlson BJ
Scientific reports 2019; 9: 11572 (IGR: 20-4)


82591 The Relationship Between Scleral Strain Change and Differential Cumulative Intraocular Pressure Exposure in the Nonhuman Primate Chronic Ocular Hypertension Model
Girard MJA
Investigative Ophthalmology and Visual Science 2019; 60: 4141-4150 (IGR: 20-4)


82641 Pharmacokinetics and intraocular pressure-lowering activity of TAK-639, a novel C-type natriuretic peptide analog, in rabbit, dog, and monkey
Prusakiewicz JJ
Experimental Eye Research 2019; 189: 107836 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Zhou Y
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82641 Pharmacokinetics and intraocular pressure-lowering activity of TAK-639, a novel C-type natriuretic peptide analog, in rabbit, dog, and monkey
Oswald J
Experimental Eye Research 2019; 189: 107836 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Zuch de Zafra CL
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82591 The Relationship Between Scleral Strain Change and Differential Cumulative Intraocular Pressure Exposure in the Nonhuman Primate Chronic Ocular Hypertension Model
Lee W
Investigative Ophthalmology and Visual Science 2019; 60: 4141-4150 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Kimura A
Scientific reports 2019; 9: 14852 (IGR: 20-4)


82202 Towards A Microbead Occlusion Model of Glaucoma for a Non-Human Primate
Ghose P
Scientific reports 2019; 9: 11572 (IGR: 20-4)


82835 Acute Stress Increases Intraocular Pressure in Nonhuman Primates
Morris JS
Ophthalmology. Glaucoma 2019; 2: 210-214 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Azuchi Y
Scientific reports 2019; 9: 14852 (IGR: 20-4)


82835 Acute Stress Increases Intraocular Pressure in Nonhuman Primates
Girkin CA
Ophthalmology. Glaucoma 2019; 2: 210-214 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Fuh G
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82202 Towards A Microbead Occlusion Model of Glaucoma for a Non-Human Primate
Vest VD
Scientific reports 2019; 9: 11572 (IGR: 20-4)


82641 Pharmacokinetics and intraocular pressure-lowering activity of TAK-639, a novel C-type natriuretic peptide analog, in rabbit, dog, and monkey
Spencer E
Experimental Eye Research 2019; 189: 107836 (IGR: 20-4)


82591 The Relationship Between Scleral Strain Change and Differential Cumulative Intraocular Pressure Exposure in the Nonhuman Primate Chronic Ocular Hypertension Model
Morris JS
Investigative Ophthalmology and Visual Science 2019; 60: 4141-4150 (IGR: 20-4)


82202 Towards A Microbead Occlusion Model of Glaucoma for a Non-Human Primate
Yao V
Scientific reports 2019; 9: 11572 (IGR: 20-4)


82835 Acute Stress Increases Intraocular Pressure in Nonhuman Primates
Downs JC
Ophthalmology. Glaucoma 2019; 2: 210-214 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Hashimoto N
Scientific reports 2019; 9: 14852 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Lee CV
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82591 The Relationship Between Scleral Strain Change and Differential Cumulative Intraocular Pressure Exposure in the Nonhuman Primate Chronic Ocular Hypertension Model
Burgoyne CF
Investigative Ophthalmology and Visual Science 2019; 60: 4141-4150 (IGR: 20-4)


82641 Pharmacokinetics and intraocular pressure-lowering activity of TAK-639, a novel C-type natriuretic peptide analog, in rabbit, dog, and monkey
Lou Z
Experimental Eye Research 2019; 189: 107836 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Moriya-Ito K
Scientific reports 2019; 9: 14852 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Sanowar S
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82591 The Relationship Between Scleral Strain Change and Differential Cumulative Intraocular Pressure Exposure in the Nonhuman Primate Chronic Ocular Hypertension Model
Downs JC
Investigative Ophthalmology and Visual Science 2019; 60: 4141-4150 (IGR: 20-4)


82641 Pharmacokinetics and intraocular pressure-lowering activity of TAK-639, a novel C-type natriuretic peptide analog, in rabbit, dog, and monkey
Cohen ML
Experimental Eye Research 2019; 189: 107836 (IGR: 20-4)


82202 Towards A Microbead Occlusion Model of Glaucoma for a Non-Human Primate
Calkins DJ
Scientific reports 2019; 9: 11572 (IGR: 20-4)


82641 Pharmacokinetics and intraocular pressure-lowering activity of TAK-639, a novel C-type natriuretic peptide analog, in rabbit, dog, and monkey
Rashidzadeh H
Experimental Eye Research 2019; 189: 107836 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Komaki Y
Scientific reports 2019; 9: 14852 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Ridgway JB; Kusi AM
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82641 Pharmacokinetics and intraocular pressure-lowering activity of TAK-639, a novel C-type natriuretic peptide analog, in rabbit, dog, and monkey
Josiah S; Josiah S
Experimental Eye Research 2019; 189: 107836 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Lee CY
Scientific reports 2019; 9: 14852 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Farman C
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Okahara N; Guo X
Scientific reports 2019; 9: 14852 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Booler H
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Harada C
Scientific reports 2019; 9: 14852 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Sheinson D; Rasmussen CA
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Kim E; Nakano T
Scientific reports 2019; 9: 14852 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Miller PE
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Tsuneoka H
Scientific reports 2019; 9: 14852 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Wakshull E; Yan M
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Inoue T
Scientific reports 2019; 9: 14852 (IGR: 20-4)


82538 Rapid Development of Glaucoma Via ITV Nonselective ANGPT 1/2 Antibody: A Potential Role for ANGPT/TIE2 Signaling in Primate Aqueous Humor Outflow
Bantseev V
Investigative Ophthalmology and Visual Science 2019; 60: 4097-4108 (IGR: 20-4)


82627 Normal tension glaucoma-like degeneration of the visual system in aged marmosets
Sasaki E; Tokuno H; Harada T
Scientific reports 2019; 9: 14852 (IGR: 20-4)


81217 Cyclic Pattern of Intraocular Pressure (IOP) and Transient IOP Fluctuations in Nonhuman Primates Measured with Continuous Wireless Telemetry
Jasien JV
Current Eye Research 2019; 0: 1-9 (IGR: 20-3)


81419 Posture-Dependent 24-Hour Intraocular Pressure Fluctuation Patterns in an Intraocular Hypertension Monkey Model
Tu S
Translational vision science & technology 2019; 8: 63 (IGR: 20-3)


80919 Effects of chronic elevated intraocular pressure on parameters of optical coherence tomography in rhesus monkeys
Yan ZC
International Journal of Ophthalmology 2019; 12: 542-548 (IGR: 20-3)


81133 Lentiviral Vector-Mediated Expression of Exoenzyme C3 Transferase Lowers Intraocular Pressure in Monkeys
Tan J
Molecular Therapy 2019; 27: 1327-1338 (IGR: 20-3)


81234 Impact of acute intraocular pressure elevation on the visual acuity of non-human primates
Li M; Yuan N
EBioMedicine 2019; 44: 554-562 (IGR: 20-3)


80919 Effects of chronic elevated intraocular pressure on parameters of optical coherence tomography in rhesus monkeys
Yang XJ
International Journal of Ophthalmology 2019; 12: 542-548 (IGR: 20-3)


81133 Lentiviral Vector-Mediated Expression of Exoenzyme C3 Transferase Lowers Intraocular Pressure in Monkeys
Liu G
Molecular Therapy 2019; 27: 1327-1338 (IGR: 20-3)


81419 Posture-Dependent 24-Hour Intraocular Pressure Fluctuation Patterns in an Intraocular Hypertension Monkey Model
Li K
Translational vision science & technology 2019; 8: 63 (IGR: 20-3)


81217 Cyclic Pattern of Intraocular Pressure (IOP) and Transient IOP Fluctuations in Nonhuman Primates Measured with Continuous Wireless Telemetry
Turner DC; Girkin CA
Current Eye Research 2019; 0: 1-9 (IGR: 20-3)


81234 Impact of acute intraocular pressure elevation on the visual acuity of non-human primates
Chen X
EBioMedicine 2019; 44: 554-562 (IGR: 20-3)


81419 Posture-Dependent 24-Hour Intraocular Pressure Fluctuation Patterns in an Intraocular Hypertension Monkey Model
Hu D
Translational vision science & technology 2019; 8: 63 (IGR: 20-3)


80919 Effects of chronic elevated intraocular pressure on parameters of optical coherence tomography in rhesus monkeys
Chen HR
International Journal of Ophthalmology 2019; 12: 542-548 (IGR: 20-3)


81133 Lentiviral Vector-Mediated Expression of Exoenzyme C3 Transferase Lowers Intraocular Pressure in Monkeys
Zhu X
Molecular Therapy 2019; 27: 1327-1338 (IGR: 20-3)


81234 Impact of acute intraocular pressure elevation on the visual acuity of non-human primates
Lu Y
EBioMedicine 2019; 44: 554-562 (IGR: 20-3)


81133 Lentiviral Vector-Mediated Expression of Exoenzyme C3 Transferase Lowers Intraocular Pressure in Monkeys
Wu Z
Molecular Therapy 2019; 27: 1327-1338 (IGR: 20-3)


81217 Cyclic Pattern of Intraocular Pressure (IOP) and Transient IOP Fluctuations in Nonhuman Primates Measured with Continuous Wireless Telemetry
Downs JC
Current Eye Research 2019; 0: 1-9 (IGR: 20-3)


80919 Effects of chronic elevated intraocular pressure on parameters of optical coherence tomography in rhesus monkeys
Deng SF
International Journal of Ophthalmology 2019; 12: 542-548 (IGR: 20-3)


81419 Posture-Dependent 24-Hour Intraocular Pressure Fluctuation Patterns in an Intraocular Hypertension Monkey Model
Ge J
Translational vision science & technology 2019; 8: 63 (IGR: 20-3)


80919 Effects of chronic elevated intraocular pressure on parameters of optical coherence tomography in rhesus monkeys
Zhu YT
International Journal of Ophthalmology 2019; 12: 542-548 (IGR: 20-3)


81133 Lentiviral Vector-Mediated Expression of Exoenzyme C3 Transferase Lowers Intraocular Pressure in Monkeys
Wang N
Molecular Therapy 2019; 27: 1327-1338 (IGR: 20-3)


81234 Impact of acute intraocular pressure elevation on the visual acuity of non-human primates
Gong H
EBioMedicine 2019; 44: 554-562 (IGR: 20-3)


81133 Lentiviral Vector-Mediated Expression of Exoenzyme C3 Transferase Lowers Intraocular Pressure in Monkeys
Zhou L
Molecular Therapy 2019; 27: 1327-1338 (IGR: 20-3)


80919 Effects of chronic elevated intraocular pressure on parameters of optical coherence tomography in rhesus monkeys
Zhuo YH
International Journal of Ophthalmology 2019; 12: 542-548 (IGR: 20-3)


81234 Impact of acute intraocular pressure elevation on the visual acuity of non-human primates
Qian L; Wu J
EBioMedicine 2019; 44: 554-562 (IGR: 20-3)


81133 Lentiviral Vector-Mediated Expression of Exoenzyme C3 Transferase Lowers Intraocular Pressure in Monkeys
Zhang X
Molecular Therapy 2019; 27: 1327-1338 (IGR: 20-3)


81234 Impact of acute intraocular pressure elevation on the visual acuity of non-human primates
Zhang S
EBioMedicine 2019; 44: 554-562 (IGR: 20-3)


81133 Lentiviral Vector-Mediated Expression of Exoenzyme C3 Transferase Lowers Intraocular Pressure in Monkeys
Fan N; Liu X
Molecular Therapy 2019; 27: 1327-1338 (IGR: 20-3)


81234 Impact of acute intraocular pressure elevation on the visual acuity of non-human primates
Shipp S; Andolina IM; Sun X; Wang W
EBioMedicine 2019; 44: 554-562 (IGR: 20-3)


79303 New MiniPromoter Ple345 (NEFL) Drives Strong and Specific Expression in Retinal Ganglion Cells of Mouse and Primate Retina
Simpson EM; Korecki AJ; Fornes O; McGill TJ; Cueva-Vargas JL; Agostinone J; Farkas RA; Hickmott JW; Lam SL; Mathelier A; Renner LM; Stoddard J; Zhou M; Di Polo A; Neuringer M; Wasserman WW
Human Genetics and Therapeutics 2019; 30: 257-272 (IGR: 20-1)


78100 Identification of a Selective, Non-Prostanoid EP2 Receptor Agonist for the Treatment of Glaucoma: Omidenepag and its Prodrug Omidenepag Isopropyl
Iwamura R
Journal of Medicinal Chemistry 2018; 61: 6869-6891 (IGR: 19-4)


78091 Effects of a Novel Selective EP2 Receptor Agonist, Omidenepag Isopropyl, on Aqueous Humor Dynamics in Laser-Induced Ocular Hypertensive Monkeys
Fuwa M
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 531-537 (IGR: 19-4)


78164 Intracranial pressure and glaucoma: Is there a new therapeutic perspective on the horizon?
Wostyn P
Medical Hypotheses 2018; 118: 98-102 (IGR: 19-4)


78100 Identification of a Selective, Non-Prostanoid EP2 Receptor Agonist for the Treatment of Glaucoma: Omidenepag and its Prodrug Omidenepag Isopropyl
Iwamura R; Tanaka M
Journal of Medicinal Chemistry 2018; 61: 6869-6891 (IGR: 19-4)


78164 Intracranial pressure and glaucoma: Is there a new therapeutic perspective on the horizon?
Van Dam D
Medical Hypotheses 2018; 118: 98-102 (IGR: 19-4)


78091 Effects of a Novel Selective EP2 Receptor Agonist, Omidenepag Isopropyl, on Aqueous Humor Dynamics in Laser-Induced Ocular Hypertensive Monkeys
Toris CB
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 531-537 (IGR: 19-4)


78164 Intracranial pressure and glaucoma: Is there a new therapeutic perspective on the horizon?
De Deyn PP
Medical Hypotheses 2018; 118: 98-102 (IGR: 19-4)


78100 Identification of a Selective, Non-Prostanoid EP2 Receptor Agonist for the Treatment of Glaucoma: Omidenepag and its Prodrug Omidenepag Isopropyl
Okanari E
Journal of Medicinal Chemistry 2018; 61: 6869-6891 (IGR: 19-4)


78091 Effects of a Novel Selective EP2 Receptor Agonist, Omidenepag Isopropyl, on Aqueous Humor Dynamics in Laser-Induced Ocular Hypertensive Monkeys
Fan S
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 531-537 (IGR: 19-4)


78100 Identification of a Selective, Non-Prostanoid EP2 Receptor Agonist for the Treatment of Glaucoma: Omidenepag and its Prodrug Omidenepag Isopropyl
Kirihara T
Journal of Medicinal Chemistry 2018; 61: 6869-6891 (IGR: 19-4)


78091 Effects of a Novel Selective EP2 Receptor Agonist, Omidenepag Isopropyl, on Aqueous Humor Dynamics in Laser-Induced Ocular Hypertensive Monkeys
Taniguchi T
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 531-537 (IGR: 19-4)


78100 Identification of a Selective, Non-Prostanoid EP2 Receptor Agonist for the Treatment of Glaucoma: Omidenepag and its Prodrug Omidenepag Isopropyl
Odani-Kawabata N
Journal of Medicinal Chemistry 2018; 61: 6869-6891 (IGR: 19-4)


78091 Effects of a Novel Selective EP2 Receptor Agonist, Omidenepag Isopropyl, on Aqueous Humor Dynamics in Laser-Induced Ocular Hypertensive Monkeys
Ichikawa M
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 531-537 (IGR: 19-4)


78100 Identification of a Selective, Non-Prostanoid EP2 Receptor Agonist for the Treatment of Glaucoma: Omidenepag and its Prodrug Omidenepag Isopropyl
Shams N
Journal of Medicinal Chemistry 2018; 61: 6869-6891 (IGR: 19-4)


78091 Effects of a Novel Selective EP2 Receptor Agonist, Omidenepag Isopropyl, on Aqueous Humor Dynamics in Laser-Induced Ocular Hypertensive Monkeys
Odani-Kawabata N; Iwamura R
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 531-537 (IGR: 19-4)


78100 Identification of a Selective, Non-Prostanoid EP2 Receptor Agonist for the Treatment of Glaucoma: Omidenepag and its Prodrug Omidenepag Isopropyl
Yoneda K
Journal of Medicinal Chemistry 2018; 61: 6869-6891 (IGR: 19-4)


78091 Effects of a Novel Selective EP2 Receptor Agonist, Omidenepag Isopropyl, on Aqueous Humor Dynamics in Laser-Induced Ocular Hypertensive Monkeys
Iwamura R; Yoneda K; Matsugi T; Shams NK; Zhang JZ
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 531-537 (IGR: 19-4)


76843 A Novel Selective Soluble Guanylate Cyclase Activator, MGV354, Lowers Intraocular Pressure in Preclinical Models, Following Topical Ocular Dosing
Prasanna G; Ferrara L; Adams C; Adams C; Ehara T; Li B; Yang L; Xiang C; Ng CTH; Kim S; Towler C; Topley T; McAllister C; Ghosh M; Newton R; Newton R; Stacy R; Stacy R; Rice DS; Mogi M
Investigative Ophthalmology and Visual Science 2018; 59: 1704-1716 (IGR: 19-3)


75496 The Magnitude and Time Course of IOP Change in Response to Body Position Change in Nonhuman Primates Measured Using Continuous IOP Telemetry
Turner DC; Samuels BC; Huisingh C; Girkin CA; Downs JC
Investigative Ophthalmology and Visual Science 2017; 58: 6232-6240 (IGR: 19-2)


74139 Effects of Vitrectomy and Lensectomy on Older Rhesus Macaques: Oxygen Distribution, Antioxidant Status, and Aqueous Humor Dynamics
Siegfried CJ
Investigative Ophthalmology and Visual Science 2017; 58: 4003-4014 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Yan Z
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74711 Biomechanical, ultrastructural, and electrophysiological characterization of the non-human primate experimental glaucoma model
Raghunathan V
Scientific reports 2017; 7: 14329 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Liao H
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74711 Biomechanical, ultrastructural, and electrophysiological characterization of the non-human primate experimental glaucoma model
Eaton JS
Scientific reports 2017; 7: 14329 (IGR: 19-1)


74139 Effects of Vitrectomy and Lensectomy on Older Rhesus Macaques: Oxygen Distribution, Antioxidant Status, and Aqueous Humor Dynamics
Shui YB; Tian B
Investigative Ophthalmology and Visual Science 2017; 58: 4003-4014 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Chen H
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74711 Biomechanical, ultrastructural, and electrophysiological characterization of the non-human primate experimental glaucoma model
Christian BJ
Scientific reports 2017; 7: 14329 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Deng S
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74711 Biomechanical, ultrastructural, and electrophysiological characterization of the non-human primate experimental glaucoma model
Morgan JT
Scientific reports 2017; 7: 14329 (IGR: 19-1)


74139 Effects of Vitrectomy and Lensectomy on Older Rhesus Macaques: Oxygen Distribution, Antioxidant Status, and Aqueous Humor Dynamics
Nork TM; Heatley GA
Investigative Ophthalmology and Visual Science 2017; 58: 4003-4014 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Jia Y
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74711 Biomechanical, ultrastructural, and electrophysiological characterization of the non-human primate experimental glaucoma model
Ver Hoeve JN
Scientific reports 2017; 7: 14329 (IGR: 19-1)


74139 Effects of Vitrectomy and Lensectomy on Older Rhesus Macaques: Oxygen Distribution, Antioxidant Status, and Aqueous Humor Dynamics
Kaufman PL
Investigative Ophthalmology and Visual Science 2017; 58: 4003-4014 (IGR: 19-1)


74711 Biomechanical, ultrastructural, and electrophysiological characterization of the non-human primate experimental glaucoma model
Yang CC
Scientific reports 2017; 7: 14329 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Deng C
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74711 Biomechanical, ultrastructural, and electrophysiological characterization of the non-human primate experimental glaucoma model
Gong H
Scientific reports 2017; 7: 14329 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Lin J; Ge J
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74711 Biomechanical, ultrastructural, and electrophysiological characterization of the non-human primate experimental glaucoma model
Rasmussen CA
Scientific reports 2017; 7: 14329 (IGR: 19-1)


74653 Elevated Intraocular Pressure Induces Amyloid-β Deposition and Tauopathy in the Lateral Geniculate Nucleus in a Monkey Model of Glaucoma
Zhuo Y
Investigative Ophthalmology and Visual Science 2017; 58: 5434-5443 (IGR: 19-1)


74711 Biomechanical, ultrastructural, and electrophysiological characterization of the non-human primate experimental glaucoma model
Miller PE; Russell P; Nork TM; Murphy CJ
Scientific reports 2017; 7: 14329 (IGR: 19-1)


73280 Discovery and Preclinical Development of Netarsudil, a Novel Ocular Hypotensive Agent for the Treatment of Glaucoma
Lin CW
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 40-51 (IGR: 18-4)


72651 The connective tissue phenotype of glaucomatous cupping in the monkey eye - Clinical and research implications
Yang H; Reynaud J
Progress in Retinal and Eye Research 2017; 59: 1-52 (IGR: 18-4)


73280 Discovery and Preclinical Development of Netarsudil, a Novel Ocular Hypotensive Agent for the Treatment of Glaucoma
Sherman B; Moore LA
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 40-51 (IGR: 18-4)


72651 The connective tissue phenotype of glaucomatous cupping in the monkey eye - Clinical and research implications
Lockwood H; Williams G
Progress in Retinal and Eye Research 2017; 59: 1-52 (IGR: 18-4)


73280 Discovery and Preclinical Development of Netarsudil, a Novel Ocular Hypotensive Agent for the Treatment of Glaucoma
Laethem CL
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 40-51 (IGR: 18-4)


72651 The connective tissue phenotype of glaucomatous cupping in the monkey eye - Clinical and research implications
Hardin C
Progress in Retinal and Eye Research 2017; 59: 1-52 (IGR: 18-4)


73280 Discovery and Preclinical Development of Netarsudil, a Novel Ocular Hypotensive Agent for the Treatment of Glaucoma
Lu DW; Pattabiraman PP
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 40-51 (IGR: 18-4)


72651 The connective tissue phenotype of glaucomatous cupping in the monkey eye - Clinical and research implications
Reyes L
Progress in Retinal and Eye Research 2017; 59: 1-52 (IGR: 18-4)


73280 Discovery and Preclinical Development of Netarsudil, a Novel Ocular Hypotensive Agent for the Treatment of Glaucoma
Rao PV
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 40-51 (IGR: 18-4)


72651 The connective tissue phenotype of glaucomatous cupping in the monkey eye - Clinical and research implications
Stowell C
Progress in Retinal and Eye Research 2017; 59: 1-52 (IGR: 18-4)


73280 Discovery and Preclinical Development of Netarsudil, a Novel Ocular Hypotensive Agent for the Treatment of Glaucoma
deLong MA
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 40-51 (IGR: 18-4)


72651 The connective tissue phenotype of glaucomatous cupping in the monkey eye - Clinical and research implications
Gardiner SK; Burgoyne CF
Progress in Retinal and Eye Research 2017; 59: 1-52 (IGR: 18-4)


73280 Discovery and Preclinical Development of Netarsudil, a Novel Ocular Hypotensive Agent for the Treatment of Glaucoma
Kopczynski CC
Journal of Ocular Pharmacology and Therapeutics 2018; 34: 40-51 (IGR: 18-4)


71360 Improved Intravitreal AAV-Mediated Inner Retinal Gene Transduction after Surgical Internal Limiting Membrane Peeling in Cynomolgus Monkeys
Takahashi K
Molecular Therapy 2017; 25: 296-302 (IGR: 18-3)


71574 Aqueous Angiography in Living Nonhuman Primates Shows Segmental, Pulsatile, and Dynamic Angiographic Aqueous Humor Outflow
Huang AS; Li M
Ophthalmology 2017; 124: 793-803 (IGR: 18-3)


71360 Improved Intravitreal AAV-Mediated Inner Retinal Gene Transduction after Surgical Internal Limiting Membrane Peeling in Cynomolgus Monkeys
Igarashi T; Miyake K
Molecular Therapy 2017; 25: 296-302 (IGR: 18-3)


71574 Aqueous Angiography in Living Nonhuman Primates Shows Segmental, Pulsatile, and Dynamic Angiographic Aqueous Humor Outflow
Yang D; Wang H
Ophthalmology 2017; 124: 793-803 (IGR: 18-3)


71360 Improved Intravitreal AAV-Mediated Inner Retinal Gene Transduction after Surgical Internal Limiting Membrane Peeling in Cynomolgus Monkeys
Kobayashi M
Molecular Therapy 2017; 25: 296-302 (IGR: 18-3)


71574 Aqueous Angiography in Living Nonhuman Primates Shows Segmental, Pulsatile, and Dynamic Angiographic Aqueous Humor Outflow
Wang N
Ophthalmology 2017; 124: 793-803 (IGR: 18-3)


71360 Improved Intravitreal AAV-Mediated Inner Retinal Gene Transduction after Surgical Internal Limiting Membrane Peeling in Cynomolgus Monkeys
Yaguchi C; Iijima O
Molecular Therapy 2017; 25: 296-302 (IGR: 18-3)


71574 Aqueous Angiography in Living Nonhuman Primates Shows Segmental, Pulsatile, and Dynamic Angiographic Aqueous Humor Outflow
Weinreb RN
Ophthalmology 2017; 124: 793-803 (IGR: 18-3)


71360 Improved Intravitreal AAV-Mediated Inner Retinal Gene Transduction after Surgical Internal Limiting Membrane Peeling in Cynomolgus Monkeys
Yamazaki Y; Katakai Y; Miyake N; Kameya S; Shimada T; Takahashi H; Okada T
Molecular Therapy 2017; 25: 296-302 (IGR: 18-3)


70135 Latanoprost-Eluting Contact Lenses in Glaucomatous Monkeys
Ciolino JB; Ross AE; Tulsan R; Watts AC; Wang RF; Zurakowski D; Serle JB; Kohane DS
Ophthalmology 2016; 123: 2085-2092 (IGR: 18-2)


69314 Comparing Optic Nerve Head Rim Width, Rim Area, and Peripapillary Retinal Nerve Fiber Layer Thickness to Axon Count in Experimental Glaucoma
Fortune B
Investigative Ophthalmology and Visual Science 2016; 57: OCT404-12 (IGR: 18-1)


69487 Experimental Glaucoma Causes Optic Nerve Head Neural Rim Tissue Compression: A Potentially Important Mechanism of Axon Injury
Fortune B
Investigative Ophthalmology and Visual Science 2016; 57: 4403-4411 (IGR: 18-1)


69238 Lamina Cribrosa Microarchitecture in Monkey Early Experimental Glaucoma: Global Change
Reynaud J
Investigative Ophthalmology and Visual Science 2016; 57: 3451-3469 (IGR: 18-1)


69091 Effects of Rho Kinase Inhibitors on Intraocular Pressure and Aqueous Humor Dynamics in Nonhuman Primates and Rabbits
Toris CB
Journal of Ocular Pharmacology and Therapeutics 2016; 32: 355-364 (IGR: 18-1)


69313 In Vivo Detection of Laminar and Peripapillary Scleral Hypercompliance in Early Monkey Experimental Glaucoma
Ivers KM; Yang H
Investigative Ophthalmology and Visual Science 2016; 57: OCT388-403 (IGR: 18-1)


69487 Experimental Glaucoma Causes Optic Nerve Head Neural Rim Tissue Compression: A Potentially Important Mechanism of Axon Injury
Reynaud J
Investigative Ophthalmology and Visual Science 2016; 57: 4403-4411 (IGR: 18-1)


69091 Effects of Rho Kinase Inhibitors on Intraocular Pressure and Aqueous Humor Dynamics in Nonhuman Primates and Rabbits
McLaughlin MA
Journal of Ocular Pharmacology and Therapeutics 2016; 32: 355-364 (IGR: 18-1)


69238 Lamina Cribrosa Microarchitecture in Monkey Early Experimental Glaucoma: Global Change
Lockwood H
Investigative Ophthalmology and Visual Science 2016; 57: 3451-3469 (IGR: 18-1)


69314 Comparing Optic Nerve Head Rim Width, Rim Area, and Peripapillary Retinal Nerve Fiber Layer Thickness to Axon Count in Experimental Glaucoma
Hardin C
Investigative Ophthalmology and Visual Science 2016; 57: OCT404-12 (IGR: 18-1)


69238 Lamina Cribrosa Microarchitecture in Monkey Early Experimental Glaucoma: Global Change
Gardiner SK
Investigative Ophthalmology and Visual Science 2016; 57: 3451-3469 (IGR: 18-1)


69091 Effects of Rho Kinase Inhibitors on Intraocular Pressure and Aqueous Humor Dynamics in Nonhuman Primates and Rabbits
Dworak DP
Journal of Ocular Pharmacology and Therapeutics 2016; 32: 355-364 (IGR: 18-1)


69313 In Vivo Detection of Laminar and Peripapillary Scleral Hypercompliance in Early Monkey Experimental Glaucoma
Gardiner SK
Investigative Ophthalmology and Visual Science 2016; 57: OCT388-403 (IGR: 18-1)


69314 Comparing Optic Nerve Head Rim Width, Rim Area, and Peripapillary Retinal Nerve Fiber Layer Thickness to Axon Count in Experimental Glaucoma
Reynaud J
Investigative Ophthalmology and Visual Science 2016; 57: OCT404-12 (IGR: 18-1)


69487 Experimental Glaucoma Causes Optic Nerve Head Neural Rim Tissue Compression: A Potentially Important Mechanism of Axon Injury
Hardin C
Investigative Ophthalmology and Visual Science 2016; 57: 4403-4411 (IGR: 18-1)


69091 Effects of Rho Kinase Inhibitors on Intraocular Pressure and Aqueous Humor Dynamics in Nonhuman Primates and Rabbits
Fan S
Journal of Ocular Pharmacology and Therapeutics 2016; 32: 355-364 (IGR: 18-1)


69238 Lamina Cribrosa Microarchitecture in Monkey Early Experimental Glaucoma: Global Change
Williams G
Investigative Ophthalmology and Visual Science 2016; 57: 3451-3469 (IGR: 18-1)


69313 In Vivo Detection of Laminar and Peripapillary Scleral Hypercompliance in Early Monkey Experimental Glaucoma
Qin L
Investigative Ophthalmology and Visual Science 2016; 57: OCT388-403 (IGR: 18-1)


69314 Comparing Optic Nerve Head Rim Width, Rim Area, and Peripapillary Retinal Nerve Fiber Layer Thickness to Axon Count in Experimental Glaucoma
Cull G
Investigative Ophthalmology and Visual Science 2016; 57: OCT404-12 (IGR: 18-1)


69487 Experimental Glaucoma Causes Optic Nerve Head Neural Rim Tissue Compression: A Potentially Important Mechanism of Axon Injury
Wang L
Investigative Ophthalmology and Visual Science 2016; 57: 4403-4411 (IGR: 18-1)


69314 Comparing Optic Nerve Head Rim Width, Rim Area, and Peripapillary Retinal Nerve Fiber Layer Thickness to Axon Count in Experimental Glaucoma
Yang H
Investigative Ophthalmology and Visual Science 2016; 57: OCT404-12 (IGR: 18-1)


69487 Experimental Glaucoma Causes Optic Nerve Head Neural Rim Tissue Compression: A Potentially Important Mechanism of Axon Injury
Sigal IA
Investigative Ophthalmology and Visual Science 2016; 57: 4403-4411 (IGR: 18-1)


69313 In Vivo Detection of Laminar and Peripapillary Scleral Hypercompliance in Early Monkey Experimental Glaucoma
Reyes L
Investigative Ophthalmology and Visual Science 2016; 57: OCT388-403 (IGR: 18-1)


69238 Lamina Cribrosa Microarchitecture in Monkey Early Experimental Glaucoma: Global Change
Yang H
Investigative Ophthalmology and Visual Science 2016; 57: 3451-3469 (IGR: 18-1)


69091 Effects of Rho Kinase Inhibitors on Intraocular Pressure and Aqueous Humor Dynamics in Nonhuman Primates and Rabbits
Havens S
Journal of Ocular Pharmacology and Therapeutics 2016; 32: 355-364 (IGR: 18-1)


69487 Experimental Glaucoma Causes Optic Nerve Head Neural Rim Tissue Compression: A Potentially Important Mechanism of Axon Injury
Burgoyne CF
Investigative Ophthalmology and Visual Science 2016; 57: 4403-4411 (IGR: 18-1)


69313 In Vivo Detection of Laminar and Peripapillary Scleral Hypercompliance in Early Monkey Experimental Glaucoma
Fortune B
Investigative Ophthalmology and Visual Science 2016; 57: OCT388-403 (IGR: 18-1)


69091 Effects of Rho Kinase Inhibitors on Intraocular Pressure and Aqueous Humor Dynamics in Nonhuman Primates and Rabbits
Zhan GL
Journal of Ocular Pharmacology and Therapeutics 2016; 32: 355-364 (IGR: 18-1)


69314 Comparing Optic Nerve Head Rim Width, Rim Area, and Peripapillary Retinal Nerve Fiber Layer Thickness to Axon Count in Experimental Glaucoma
Wang L
Investigative Ophthalmology and Visual Science 2016; 57: OCT404-12 (IGR: 18-1)


69238 Lamina Cribrosa Microarchitecture in Monkey Early Experimental Glaucoma: Global Change
Burgoyne CF
Investigative Ophthalmology and Visual Science 2016; 57: 3451-3469 (IGR: 18-1)


69091 Effects of Rho Kinase Inhibitors on Intraocular Pressure and Aqueous Humor Dynamics in Nonhuman Primates and Rabbits
Horan N
Journal of Ocular Pharmacology and Therapeutics 2016; 32: 355-364 (IGR: 18-1)


69313 In Vivo Detection of Laminar and Peripapillary Scleral Hypercompliance in Early Monkey Experimental Glaucoma
Burgoyne CF
Investigative Ophthalmology and Visual Science 2016; 57: OCT388-403 (IGR: 18-1)


69314 Comparing Optic Nerve Head Rim Width, Rim Area, and Peripapillary Retinal Nerve Fiber Layer Thickness to Axon Count in Experimental Glaucoma
Burgoyne CF
Investigative Ophthalmology and Visual Science 2016; 57: OCT404-12 (IGR: 18-1)


69091 Effects of Rho Kinase Inhibitors on Intraocular Pressure and Aqueous Humor Dynamics in Nonhuman Primates and Rabbits
Prasanna G
Journal of Ocular Pharmacology and Therapeutics 2016; 32: 355-364 (IGR: 18-1)


67157 Macular Structure and Function in Nonhuman Primate Experimental Glaucoma
Wilsey LJ; Reynaud J; Cull G; Burgoyne CF; Fortune B
Investigative Ophthalmology and Visual Science 2016; 57: 1892-1900 (IGR: 17-4)


65953 Ocular Hypotensive Response in Nonhuman Primates of (8R)-1-(2S)-2-Aminopropyl-8,9-dihydro-7H-pyrano2,3-gindazol-8-ol a Selective 5-HT2 Receptor Agonist
May JA
Journal of Medicinal Chemistry 2015; 58: 8818-8833 (IGR: 17-3)


65847 The Connective Tissue Components of Optic Nerve Head Cupping in Monkey Experimental Glaucoma Part 1: Global Change
Yang H
Investigative Ophthalmology and Visual Science 2015; 56: 7661-7678 (IGR: 17-3)


65953 Ocular Hypotensive Response in Nonhuman Primates of (8R)-1-(2S)-2-Aminopropyl-8,9-dihydro-7H-pyrano2,3-gindazol-8-ol a Selective 5-HT2 Receptor Agonist
Sharif NA
Journal of Medicinal Chemistry 2015; 58: 8818-8833 (IGR: 17-3)


65847 The Connective Tissue Components of Optic Nerve Head Cupping in Monkey Experimental Glaucoma Part 1: Global Change
Ren R
Investigative Ophthalmology and Visual Science 2015; 56: 7661-7678 (IGR: 17-3)


65953 Ocular Hypotensive Response in Nonhuman Primates of (8R)-1-(2S)-2-Aminopropyl-8,9-dihydro-7H-pyrano2,3-gindazol-8-ol a Selective 5-HT2 Receptor Agonist
McLaughlin MA
Journal of Medicinal Chemistry 2015; 58: 8818-8833 (IGR: 17-3)


65847 The Connective Tissue Components of Optic Nerve Head Cupping in Monkey Experimental Glaucoma Part 1: Global Change
Lockwood H; Williams G
Investigative Ophthalmology and Visual Science 2015; 56: 7661-7678 (IGR: 17-3)


65953 Ocular Hypotensive Response in Nonhuman Primates of (8R)-1-(2S)-2-Aminopropyl-8,9-dihydro-7H-pyrano2,3-gindazol-8-ol a Selective 5-HT2 Receptor Agonist
Chen HH
Journal of Medicinal Chemistry 2015; 58: 8818-8833 (IGR: 17-3)


65847 The Connective Tissue Components of Optic Nerve Head Cupping in Monkey Experimental Glaucoma Part 1: Global Change
Libertiaux V
Investigative Ophthalmology and Visual Science 2015; 56: 7661-7678 (IGR: 17-3)


65953 Ocular Hypotensive Response in Nonhuman Primates of (8R)-1-(2S)-2-Aminopropyl-8,9-dihydro-7H-pyrano2,3-gindazol-8-ol a Selective 5-HT2 Receptor Agonist
Severns BS
Journal of Medicinal Chemistry 2015; 58: 8818-8833 (IGR: 17-3)


65847 The Connective Tissue Components of Optic Nerve Head Cupping in Monkey Experimental Glaucoma Part 1: Global Change
Downs C
Investigative Ophthalmology and Visual Science 2015; 56: 7661-7678 (IGR: 17-3)


65953 Ocular Hypotensive Response in Nonhuman Primates of (8R)-1-(2S)-2-Aminopropyl-8,9-dihydro-7H-pyrano2,3-gindazol-8-ol a Selective 5-HT2 Receptor Agonist
Kelly CR; Holt WF
Journal of Medicinal Chemistry 2015; 58: 8818-8833 (IGR: 17-3)


65847 The Connective Tissue Components of Optic Nerve Head Cupping in Monkey Experimental Glaucoma Part 1: Global Change
Gardiner SK
Investigative Ophthalmology and Visual Science 2015; 56: 7661-7678 (IGR: 17-3)


65953 Ocular Hypotensive Response in Nonhuman Primates of (8R)-1-(2S)-2-Aminopropyl-8,9-dihydro-7H-pyrano2,3-gindazol-8-ol a Selective 5-HT2 Receptor Agonist
Young R
Journal of Medicinal Chemistry 2015; 58: 8818-8833 (IGR: 17-3)


65847 The Connective Tissue Components of Optic Nerve Head Cupping in Monkey Experimental Glaucoma Part 1: Global Change
Burgoyne CF
Investigative Ophthalmology and Visual Science 2015; 56: 7661-7678 (IGR: 17-3)


65953 Ocular Hypotensive Response in Nonhuman Primates of (8R)-1-(2S)-2-Aminopropyl-8,9-dihydro-7H-pyrano2,3-gindazol-8-ol a Selective 5-HT2 Receptor Agonist
Glennon RA; Hellberg MR; Dean TR
Journal of Medicinal Chemistry 2015; 58: 8818-8833 (IGR: 17-3)


61686 Rat, mouse, and primate models of chronic glaucoma show sustained elevation of extracellular ATP and altered purinergic signaling in the posterior eye
Lu W
Investigative Ophthalmology and Visual Science 2015; 56: 3075-3083 (IGR: 17-1)


61418 Animal models of glucocorticoid-induced glaucoma
Overby DR
Experimental Eye Research 2015; 141: 15-22 (IGR: 17-1)


61731 Non-continuous measurement of intraocular pressure in laboratory animals
Millar JC
Experimental Eye Research 2015; 141: 74-90 (IGR: 17-1)


61322 Microbead models in glaucoma
Morgan JE
Experimental Eye Research 2015; 141: 9-14 (IGR: 17-1)


60996 Relating Retinal Ganglion Cell Function and Retinal Nerve Fiber Layer (RNFL) Retardance to Progressive Loss of RNFL Thickness and Optic Nerve Axons in Experimental Glaucoma
Fortune B
Investigative Ophthalmology and Visual Science 2015; 56: 3936-3944 (IGR: 17-1)


61579 A framework to explore the visual brain in glaucoma with lessons from models and man
Yucel YH
Experimental Eye Research 2015; 141: 171-178 (IGR: 17-1)


61055 Genetic studies on the Cayo Santiago rhesus macaques: A review of 40 years of research
Widdig A
American journal of primatology 2016; 78: 44-62 (IGR: 17-1)


61392 The non-human primate experimental glaucoma model
Burgoyne CF
Experimental Eye Research 2015; 141: 57-73 (IGR: 17-1)


61528 IOP telemetry in the nonhuman primate
Downs JC
Experimental Eye Research 2015; 141: 91-98 (IGR: 17-1)


61505 In Vivo Changes in Lamina Cribrosa Microarchitecture and Optic Nerve Head Structure in Early Experimental Glaucoma
Ivers KM
PLoS ONE 2015; 10: e0134223 (IGR: 17-1)


61018 Experimentally Induced Mammalian Models of Glaucoma
Ishikawa M
BioMed research international 2015; 2015: 281214 (IGR: 17-1)


60996 Relating Retinal Ganglion Cell Function and Retinal Nerve Fiber Layer (RNFL) Retardance to Progressive Loss of RNFL Thickness and Optic Nerve Axons in Experimental Glaucoma
Cull G
Investigative Ophthalmology and Visual Science 2015; 56: 3936-3944 (IGR: 17-1)


61579 A framework to explore the visual brain in glaucoma with lessons from models and man
Gupta N
Experimental Eye Research 2015; 141: 171-178 (IGR: 17-1)


61418 Animal models of glucocorticoid-induced glaucoma
Clark AF
Experimental Eye Research 2015; 141: 15-22 (IGR: 17-1)


61686 Rat, mouse, and primate models of chronic glaucoma show sustained elevation of extracellular ATP and altered purinergic signaling in the posterior eye
Hu H
Investigative Ophthalmology and Visual Science 2015; 56: 3075-3083 (IGR: 17-1)


61505 In Vivo Changes in Lamina Cribrosa Microarchitecture and Optic Nerve Head Structure in Early Experimental Glaucoma
Sredar N
PLoS ONE 2015; 10: e0134223 (IGR: 17-1)


61731 Non-continuous measurement of intraocular pressure in laboratory animals
Pang IH
Experimental Eye Research 2015; 141: 74-90 (IGR: 17-1)


61018 Experimentally Induced Mammalian Models of Glaucoma
Yoshitomi T
BioMed research international 2015; 2015: 281214 (IGR: 17-1)


61055 Genetic studies on the Cayo Santiago rhesus macaques: A review of 40 years of research
Kessler MJ
American journal of primatology 2016; 78: 44-62 (IGR: 17-1)


61322 Microbead models in glaucoma
Tribble JR
Experimental Eye Research 2015; 141: 9-14 (IGR: 17-1)


61055 Genetic studies on the Cayo Santiago rhesus macaques: A review of 40 years of research
Bercovitch FB
American journal of primatology 2016; 78: 44-62 (IGR: 17-1)


61018 Experimentally Induced Mammalian Models of Glaucoma
Zorumski CF
BioMed research international 2015; 2015: 281214 (IGR: 17-1)


61686 Rat, mouse, and primate models of chronic glaucoma show sustained elevation of extracellular ATP and altered purinergic signaling in the posterior eye
Sévigny J
Investigative Ophthalmology and Visual Science 2015; 56: 3075-3083 (IGR: 17-1)


60996 Relating Retinal Ganglion Cell Function and Retinal Nerve Fiber Layer (RNFL) Retardance to Progressive Loss of RNFL Thickness and Optic Nerve Axons in Experimental Glaucoma
Reynaud J
Investigative Ophthalmology and Visual Science 2015; 56: 3936-3944 (IGR: 17-1)


61505 In Vivo Changes in Lamina Cribrosa Microarchitecture and Optic Nerve Head Structure in Early Experimental Glaucoma
Patel NB
PLoS ONE 2015; 10: e0134223 (IGR: 17-1)


61018 Experimentally Induced Mammalian Models of Glaucoma
Izumi Y
BioMed research international 2015; 2015: 281214 (IGR: 17-1)


61686 Rat, mouse, and primate models of chronic glaucoma show sustained elevation of extracellular ATP and altered purinergic signaling in the posterior eye
Gabelt BT
Investigative Ophthalmology and Visual Science 2015; 56: 3075-3083 (IGR: 17-1)


60996 Relating Retinal Ganglion Cell Function and Retinal Nerve Fiber Layer (RNFL) Retardance to Progressive Loss of RNFL Thickness and Optic Nerve Axons in Experimental Glaucoma
Wang L
Investigative Ophthalmology and Visual Science 2015; 56: 3936-3944 (IGR: 17-1)


61055 Genetic studies on the Cayo Santiago rhesus macaques: A review of 40 years of research
Berard JD
American journal of primatology 2016; 78: 44-62 (IGR: 17-1)


61505 In Vivo Changes in Lamina Cribrosa Microarchitecture and Optic Nerve Head Structure in Early Experimental Glaucoma
Rajagopalan L; Queener HM
PLoS ONE 2015; 10: e0134223 (IGR: 17-1)


61055 Genetic studies on the Cayo Santiago rhesus macaques: A review of 40 years of research
Duggleby C
American journal of primatology 2016; 78: 44-62 (IGR: 17-1)


61686 Rat, mouse, and primate models of chronic glaucoma show sustained elevation of extracellular ATP and altered purinergic signaling in the posterior eye
Kaufman PL
Investigative Ophthalmology and Visual Science 2015; 56: 3075-3083 (IGR: 17-1)


60996 Relating Retinal Ganglion Cell Function and Retinal Nerve Fiber Layer (RNFL) Retardance to Progressive Loss of RNFL Thickness and Optic Nerve Axons in Experimental Glaucoma
Burgoyne CF
Investigative Ophthalmology and Visual Science 2015; 56: 3936-3944 (IGR: 17-1)


61505 In Vivo Changes in Lamina Cribrosa Microarchitecture and Optic Nerve Head Structure in Early Experimental Glaucoma
Twa MD
PLoS ONE 2015; 10: e0134223 (IGR: 17-1)


61055 Genetic studies on the Cayo Santiago rhesus macaques: A review of 40 years of research
Nürnberg P
American journal of primatology 2016; 78: 44-62 (IGR: 17-1)


61686 Rat, mouse, and primate models of chronic glaucoma show sustained elevation of extracellular ATP and altered purinergic signaling in the posterior eye
Johnson EC
Investigative Ophthalmology and Visual Science 2015; 56: 3075-3083 (IGR: 17-1)


61055 Genetic studies on the Cayo Santiago rhesus macaques: A review of 40 years of research
Rawlins RG
American journal of primatology 2016; 78: 44-62 (IGR: 17-1)


61505 In Vivo Changes in Lamina Cribrosa Microarchitecture and Optic Nerve Head Structure in Early Experimental Glaucoma
Harwerth RS
PLoS ONE 2015; 10: e0134223 (IGR: 17-1)


61686 Rat, mouse, and primate models of chronic glaucoma show sustained elevation of extracellular ATP and altered purinergic signaling in the posterior eye
Morrison JC
Investigative Ophthalmology and Visual Science 2015; 56: 3075-3083 (IGR: 17-1)


61055 Genetic studies on the Cayo Santiago rhesus macaques: A review of 40 years of research
Sauermann U
American journal of primatology 2016; 78: 44-62 (IGR: 17-1)


61505 In Vivo Changes in Lamina Cribrosa Microarchitecture and Optic Nerve Head Structure in Early Experimental Glaucoma
Porter J
PLoS ONE 2015; 10: e0134223 (IGR: 17-1)


61686 Rat, mouse, and primate models of chronic glaucoma show sustained elevation of extracellular ATP and altered purinergic signaling in the posterior eye
Zode GS; Sheffield VC
Investigative Ophthalmology and Visual Science 2015; 56: 3075-3083 (IGR: 17-1)


61055 Genetic studies on the Cayo Santiago rhesus macaques: A review of 40 years of research
Wang Q; Krawczak M
American journal of primatology 2016; 78: 44-62 (IGR: 17-1)


61686 Rat, mouse, and primate models of chronic glaucoma show sustained elevation of extracellular ATP and altered purinergic signaling in the posterior eye
Zhang X; Laties AM
Investigative Ophthalmology and Visual Science 2015; 56: 3075-3083 (IGR: 17-1)


61055 Genetic studies on the Cayo Santiago rhesus macaques: A review of 40 years of research
Schmidtke J
American journal of primatology 2016; 78: 44-62 (IGR: 17-1)


61686 Rat, mouse, and primate models of chronic glaucoma show sustained elevation of extracellular ATP and altered purinergic signaling in the posterior eye
Mitchell CH
Investigative Ophthalmology and Visual Science 2015; 56: 3075-3083 (IGR: 17-1)


60162 Effect of 0.04% AR-13324, a ROCK, and norepinephrine transporter inhibitor, on aqueous humor dynamics in normotensive monkey eyes
Wang RF
Journal of Glaucoma 2015; 24: 51-54 (IGR: 16-4)


60167 Analysis of a method for establishing a model with more stable chronic glaucoma in rhesus monkeys
Yan Z; Tian Z
Experimental Eye Research 2015; 131: 56-62 (IGR: 16-4)


60162 Effect of 0.04% AR-13324, a ROCK, and norepinephrine transporter inhibitor, on aqueous humor dynamics in normotensive monkey eyes
Williamson JE
Journal of Glaucoma 2015; 24: 51-54 (IGR: 16-4)


60167 Analysis of a method for establishing a model with more stable chronic glaucoma in rhesus monkeys
Chen H
Experimental Eye Research 2015; 131: 56-62 (IGR: 16-4)


60162 Effect of 0.04% AR-13324, a ROCK, and norepinephrine transporter inhibitor, on aqueous humor dynamics in normotensive monkey eyes
Kopczynski C
Journal of Glaucoma 2015; 24: 51-54 (IGR: 16-4)


60167 Analysis of a method for establishing a model with more stable chronic glaucoma in rhesus monkeys
Deng S
Experimental Eye Research 2015; 131: 56-62 (IGR: 16-4)


60162 Effect of 0.04% AR-13324, a ROCK, and norepinephrine transporter inhibitor, on aqueous humor dynamics in normotensive monkey eyes
Serle JB
Journal of Glaucoma 2015; 24: 51-54 (IGR: 16-4)


60167 Analysis of a method for establishing a model with more stable chronic glaucoma in rhesus monkeys
Lin J; Liao H; Yang X; Ge J; Zhuo Y
Experimental Eye Research 2015; 131: 56-62 (IGR: 16-4)


59057 Age-related differences in longitudinal structural change by spectral-domain optical coherence tomography in early experimental glaucoma
Yang H; He L; Gardiner SK; Reynaud J; Williams G; Hardin C; Strouthidis NG; Downs JC; Fortune B; Burgoyne CF
Investigative Ophthalmology and Visual Science 2014; 55: 6409-6420 (IGR: 16-3)


58819 Effects of a conventional photocoagulator and a 3-ns pulse laser on preconditioning responses and retinal ganglion cell survival after optic nerve crush
Shibeeb O; Wood JP; Casson RJ; Chidlow G
Experimental Eye Research 2014; 127: 77-90 (IGR: 16-3)


59175 The relationship between retinal nerve fiber layer thickness and optic nerve head neuroretinal rim tissue in glaucoma
Patel NB; Sullivan-Mee M; Harwerth RS
Investigative Ophthalmology and Visual Science 2014; 55: 6802-6816 (IGR: 16-3)


59466 Regional choroidal blood flow and multifocal electroretinography in experimental glaucoma in rhesus macaques
Nork TM; Kim CB; Munsey KM; Dashek RJ; Hoeve JN
Investigative Ophthalmology and Visual Science 2014; 55: 7786-7798 (IGR: 16-3)


58516 Prospects for lentiviral vector mediated prostaglandin F synthase gene delivery in monkey eyes in vivo
Lee ES; Rasmussen CA; Filla MS; Slauson SR; Kolb AW; Peters DM; Kaufman PL; Gabelt BT; Brandt CR
Current Eye Research 2014; 39: 859-870 (IGR: 16-3)


57488 Long-term effect of laser-induced ocular hypertension on the cone electroretinogram and central macular thickness in monkeys
Liu K; Wang N; Peng X; Yang D; Wang C; Zeng H
Photomedicine and Laser Surgery 2014; 32: 371-378 (IGR: 16-2)


57047 Optic neuropathy induced by experimentally reduced cerebrospinal fluid pressure in monkeys
Yang D; Fu J; Hou R; Liu K; Jonas JB; Wang H; Chen W; Li Z; Sang J; Zhang Z; Liu S; Cao Y; Xie X; Ren R; Lu Q; Weinreb RN; Wang N
Investigative Ophthalmology and Visual Science 2014; 55: 3067-3073 (IGR: 16-2)


57468 Relation between macular retinal ganglion cell/inner plexiform layer thickness and multifocal electroretinogram measures in experimental glaucoma
Luo X; Patel NB; Rajagopalan LP; Harwerth RS; Frishman LJ
Investigative Ophthalmology and Visual Science 2014; 55: 4512-4524 (IGR: 16-2)


57185 Longitudinal alterations in the dynamic autoregulation of optic nerve head blood flow revealed in experimental glaucoma
Wang L; Cull G; Burgoyne CF; Thompson S; Fortune B
Investigative Ophthalmology and Visual Science 2014; 55: 3509-3516 (IGR: 16-2)


57369 Optic Nerve Head Blood Flow Response to Reduced Ocular Perfusion Pressure by Alteration of Either the Blood Pressure or Intraocular Pressure
Wang L; Cull GA; Fortune B
Current Eye Research 2014; 0: 1-9 (IGR: 16-2)


55981 Longitudinal detection of optic nerve head changes by spectral domain optical coherence tomography in early experimental glaucoma
He L; Yang H; Gardiner SK; Williams G; Hardin C; Strouthidis NG; Fortune B; Burgoyne CF
Investigative Ophthalmology and Visual Science 2014; 55: 574-586 (IGR: 16-1)


56148 Static blood flow autoregulation in the optic nerve head in normal and experimental glaucoma
Wang L; Burgoyne CF; Cull G; Thompson S; Fortune B
Investigative Ophthalmology and Visual Science 2014; 55: 873-880 (IGR: 16-1)


56313 Mechanism - Based Translational Pharmacokinetic - Pharmacodynamic Model to Predict Intraocular Pressure Lowering Effect of Drugs in Patients with Glaucoma or Ocular Hypertension
Durairaj C; Shen J; Cherukury M
Pharmaceutical Research 2014; 31: 2095-2106 (IGR: 16-1)


55230 Autophagy in retinal ganglion cells in a rhesus monkey chronic hypertensive glaucoma model
Deng S; Wang M; Yan Z; Tian Z; Chen H; Yang X; Zhuo Y
PLoS ONE 2013; 8: e77100 (IGR: 15-4)


55319 Does optic nerve head surface topography change prior to loss of retinal nerve fiber layer thickness: a test of the site of injury hypothesis in experimental glaucoma
Fortune B; Reynaud J; Wang L; Burgoyne CF
PLoS ONE 2013; 8: e77831 (IGR: 15-4)


55381 A Novel Schlemm's Canal Scaffold: Histologic Observations
Grierson I; Saheb H; Kahook MY; Johnstone MA; Ahmed II; Schieber AT; Toris CB
Journal of Glaucoma 2015; 24: 460-468 (IGR: 15-4)


54352 Effect of nitric oxide on anterior segment physiology in monkeys
Heyne GW; Kiland JA; Kaufman PL; Gabelt BT
Investigative Ophthalmology and Visual Science 2013; 54: 5103-5110 (IGR: 15-3)


54440 Onset and progression of peripapillary retinal nerve fiber layer (RNFL) retardance changes occur earlier than RNFL thickness changes in experimental glaucoma
Fortune B; Burgoyne CF; Cull G; Reynaud J; Wang L
Investigative Ophthalmology and Visual Science 2013; 54: 5653-5661 (IGR: 15-3)


53886 Translational models of ocular disease
Zeiss CJ
Veterinary Ophthalmology 2013; 16: 15-33 (IGR: 15-2)


53615 Structural and functional effects of hemiretinal endodiathermy axotomy in cynomolgus macaques
Dashek RJ; Kim CB; Rasmussen CA; Hennes-Beean EA; Ver Hoeve JN; Nork TM
Investigative Ophthalmology and Visual Science 2013; 54: 3479-3492 (IGR: 15-2)


53854 Longitudinal hemodynamic changes within the optic nerve head in experimental glaucoma
Cull G; Burgoyne CF; Fortune B; Wang L
Investigative Ophthalmology and Visual Science 2013; 54: 4271-4277 (IGR: 15-2)


51660 Anatomical and functional damage in experimental glaucoma
Agudo-Barriuso M; Villegas-Pérez MP; de Imperial JM; Vidal-Sanz M
Current opinion in pharmacology 2013; 13: 5-11 (IGR: 14-4)


51848 Anterior and posterior optic nerve head blood flow in nonhuman primate experimental glaucoma model measured by laser speckle imaging technique and microsphere method
Wang L; Cull GA; Piper C; Burgoyne CF; Fortune B
Investigative Ophthalmology and Visual Science 2012; 53: 8303-8309 (IGR: 14-4)


51849 Induction of amyloid-β(1-42) in the retina and optic nerve head of chronic ocular hypertensive monkeys
Ito Y; Shimazawa M; Tsuruma K; Mayama C; Ishii K; Onoe H; Aihara M; Araie M; Hara H
Molecular Vision 2012; 18: 2647-2657 (IGR: 14-4)


51236 Intraocular pressure magnitude and variability as predictors of rates of structural change in non-human primate experimental glaucoma
Gardiner SK; Fortune B; Wang L; Downs JC; Burgoyne CF
Experimental Eye Research 2012; 103: 1-8 (IGR: 14-3)


51120 Phase-sensitive optical coherence tomography characterization of pulse-induced trabecular meshwork displacement in ex vivo nonhuman primate eyes
Li P; Reif R; Zhi Z; Martin E; Shen TT; Johnstone M; Wang RK
Journal of biomedical Optics 2012; 17: 076026 (IGR: 14-3)


50567 Changes in optic nerve head circulation in response to vasoactive agents: inter-eye comparison in monkeys with experimental unilateral glaucoma
Mayama C; Ishii K; Ota T; Tomidokoro A; Araie M
Investigative Ophthalmology and Visual Science 2012; 53: 5771-5778 (IGR: 14-2)


50492 IOP Change Undergoing Anesthesia in Rhesus Macaques (Macaca mulatta) with Laser-Induced Ocular Hypertension
Kim J; Sapp HL; Plummer CE; Brooks DE; Kim D; Kim MS
Journal of Veterinary Medical Science 2012; 74: 1359-1361 (IGR: 14-2)


50385 Structural and functional abnormalities of retinal ganglion cells measured in vivo at the onset of optic nerve head surface change in experimental glaucoma
Fortune B; Burgoyne CF; Cull GA; Reynaud J; Wang L
Investigative Ophthalmology and Visual Science 2012; 53: 3939-3950 (IGR: 14-2)


50354 Thickness, phase retardation, birefringence, and reflectance of the retinal nerve fiber layer in normal and glaucomatous non-human primates
Dwelle J; Liu S; Wang B; McElroy A; Ho D; Markey MK; Milner T; Rylander HG
Investigative Ophthalmology and Visual Science 2012; 53: 4380-4395 (IGR: 14-2)


48991 An alteration in the lateral geniculate nucleus of experimental glaucoma monkeys: in vivo positron emission tomography imaging of glial activation
Shimazawa M; Ito Y; Inokuchi Y; Yamanaka H; Nakanishi T; Hayashi T; Ji B; Higuchi M; Suhara T; Imamura K; Araie M; Watanabe Y; Onoe H; Hara H
PLoS ONE 2012; 7: e30526 (IGR: 14-1)


49147 Lamina Cribrosa Thickening in Early Glaucoma Predicted by a Microstructure Motivated Growth and Remodeling Approach
Grytz R; Sigal IA; Ruberti JW; Meschke G; Downs JC
Mechanics of Materials: an International Journal 2012; 44: 99-109 (IGR: 14-1)


48840 1α,25-Dihydroxyvitamin D(3) and its analog, 2-methylene-19-nor-(20S)-1α,25-dihydroxyvitamin D(3) (2MD), suppress intraocular pressure in non-human primates
Kutuzova GD; Gabelt BT; Kiland JA; Hennes-Beann EA; Kaufman PL; DeLuca HF
Archives of Biochemistry and Biophysics 2012; 518: 53-60 (IGR: 14-1)


48771 Spectral-domain optical coherence tomography enhanced depth imaging of the normal and glaucomatous nonhuman primate optic nerve head
Yang H; Qi J; Hardin C; Gardiner SK; Strouthidis NG; Fortune B; Burgoyne CF
Investigative Ophthalmology and Visual Science 2012; 53: 394-405 (IGR: 14-1)


48740 Quantitative study of the topographic distribution of conjunctival lymphatic vessels in the monkey
Guo W; Zhu Y; Yu PK; Yu X; Sun X; Cringle SJ; Su EN; Yu DY
Experimental Eye Research 2012; 94: 90-97 (IGR: 14-1)


49287 Automated Quantification of Optic Nerve Axons in Primate Glaucomatous and Normal Eyes - Method and Comparison to Semi-automated Manual Quantification
Reynaud J; Cull GA; Wang L; Fortune B; Gardiner SK; Burgoyne CF; Cioffi G
Investigative Ophthalmology and Visual Science 2012; 53: 2951-2959 (IGR: 14-1)


48663 Astrocytic responses in the lateral geniculate nucleus of monkeys with experimental glaucoma
Dai Y; Sun X; Yu X; Guo W; Yu D
Veterinary Ophthalmology 2012; 15: 23-30 (IGR: 14-1)


49228 Structure/Function studies and the effects of memantine in monkeys with experimental glaucoma
Gabelt BT; Rasmussen CA; Tektas OY; Kim CB; Peterson JC; Nork TM; Hoeve JN; Lü,tjen-Drecoll E; Kaufman PL
Investigative Ophthalmology and Visual Science 2012; 53: 2368-2376 (IGR: 14-1)


48875 Ischaemia in the Zinn-Haller circle and glaucomatous optic neuropathy in macaque monkeys
Hiraoka M; Inoue K; Ninomiya T; Takada M
British Journal of Ophthalmology 2012; 96: 597-603 (IGR: 14-1)


49179 Retina ganglion cell degeneration in glaucoma: an opportunity missed? A review
Morgan JE
Clinical and Experimental Ophthalmology 2012; 40: 364-368 (IGR: 14-1)


48812 Effect of SPP 635, a renin inhibitor, on intraocular pressure in glaucomatous monkey eyes
Wang RF; Podos SM; Serle JB; Baltatu OC
Experimental Eye Research 2012; 94: 146-149 (IGR: 14-1)


49091 Definition of glaucoma: clinical and experimental concepts
Casson RJ; Chidlow G; Wood JP; Crowston JG; Goldberg I
Clinical and Experimental Ophthalmology 2012; 40: 341-349 (IGR: 14-1)


48135 IOP-Induced Lamina Cribrosa Deformation and Scleral Canal Expansion: Independent or Related?
Sigal IA; Yang H; Roberts MD; Grimm JL; Burgoyne CF; Demirel S; Downs JC
Investigative Ophthalmology and Visual Science 2011; 52: 9023-9032 (IGR: 13-4)


48385 3-D spheroid culture of bone marrow mesenchymal stem cell of rhesus monkey with improved multi-differentiation potential to epithelial progenitors and neuron in vitro
Jing Y; Jian-Xiong Y
Clinical and Experimental Ophthalmology 2011; 39: 808-819 (IGR: 13-4)


48351 A preliminary study of reduced expression of aquaporin-9 in the optic nerve of primate and human eyes with glaucoma
Mizokami J; Kanamori A; Negi A; Nakamura M
Current Eye Research 2011; 36: 1064-1067 (IGR: 13-4)


48317 Effect of nitric oxide compounds on monkey ciliary muscle in vitro
Gabelt BT; Kaufman PL; Rasmussen CA
Experimental Eye Research 2011; 93: 321-327 (IGR: 13-4)


48052 The Effect of Acute Intraocular Pressure Elevation on the Monkey Optic Nerve Head As Detected by Spectral Domain Optical Coherence Tomography
Strouthidis NG; Fortune B; Yang H; Sigal IA; Burgoyne CF
Investigative Ophthalmology and Visual Science 2011; 52: 9431-9437 (IGR: 13-4)


48323 Similar hydrodynamic and morphological changes in the aqueous humor outflow pathway after washout and Y27632 treatment in monkey eyes
Lu Z; Zhang Y; Freddo TF; Gong H
Experimental Eye Research 2011; 93: 397-404 (IGR: 13-4)


46435 Biomechanical Changes in the Sclera of Monkey Eyes Exposed to Chronic IOP Elevations
Girard MJ; Suh JK; Bottlang M; Burgoyne CF; Downs JC
Investigative Ophthalmology and Visual Science 2011; 52: 5656-5669 (IGR: 13-3)


46428 Calpain, not caspase, is the causative protease for hypoxic damage in cultured monkey retinal cells
Nakajima E; Hammond KB; Rosales JL; Shearer TR; Azuma M
Investigative Ophthalmology and Visual Science 2011; 52: 7059-7067 (IGR: 13-3)


46429 Posterior (Outward) Migration of the Lamina Cribrosa and Early Cupping in Monkey Experimental Glaucoma
Yang H; Williams G; Downs JC; Sigal IA; Roberts MD; Thompson H; Burgoyne CF
Investigative Ophthalmology and Visual Science 2011; (IGR: 13-3)


47088 Thickness of the lamina cribrosa and peripapillary sclera in Rhesus monkeys with nonglaucomatous or glaucomatous optic neuropathy
Jonas JB; Hayreh SS; Yong T
Acta Ophthalmologica 2011; 89: 423-427 (IGR: 13-3)


46850 Characterization of intraocular pressure responses of the Tibetan monkey (Macaca Thibetana)
Liu G; Zeng T; Yu W; Yan N; Wang H; Cai S-P; Pang I-H; Liu X
Molecular Vision 2011; 17: 1405-1413 (IGR: 13-3)


46666 Molecular brain imaging in the glaucoma model of monkeys using PET and MRI
Hara H; Shimazawa M
Neuroscience Research 2011; 71: e39 (IGR: 13-3)


47041 Loss of the low-frequency component of the global-flash multifocal electroretinogram in primate eyes with experimental glaucoma
Luo X; Patel NB; Harwerth RS; Frishman LJ
Investigative ophthalmology & visual science 2011; 52: 3792-3804 (IGR: 13-3)


45636 Retinal proteomic changes following unilateral optic nerve transection and early experimental glaucoma in non-human primate eyes
Stowell C; Arbogast B; Cioffi G; Burgoyne C; Zhou A
Experimental Eye Research 2011; 93: 13-28 (IGR: 13-2)


45499 Retinal nerve fiber layer assessment: area versus thickness measurements from elliptical scans centered on the optic nerve
Patel NB; Luo X; Wheat JL; Harwerth RS
Investigative Ophthalmology and Visual Science 2011; 52: 2477-2489 (IGR: 13-2)


45633 Evaluation of rebound tonometry in non-human primates
Elsmo EJ; Kiland JA; Kaufman PL; McLellan GJ
Experimental Eye Research 2011; 92: 268-273 (IGR: 13-2)


45477 Nonarteritic anterior ischemic optic neuropathy (NAION) and its experimental models
Bernstein SL; Johnson MA; Miller NR
Progress in Retinal and Eye Research 2011; 30: 167-187 (IGR: 13-2)


46034 Ocular hypotensive effect of tafluprost in latanoprost low-responder cynomolgus monkeys
Kurashima H; Asai Y; Aihara M; Ishida N; Nakamura M; Araie M
Journal of Glaucoma 2011; (IGR: 13-2)


45628 Effect of PF-04217329 a prodrug of a selective prostaglandin EP(2) agonist on intraocular pressure in preclinical models of glaucoma
Prasanna G; Carreiro S; Anderson S; Gukasyan H; Sartnurak S; Younis H; Gale D; Xiang C; Wells P; Dinh D
Experimental Eye Research 2011; (IGR: 13-2)


28034 Involvement of endoplasmic reticulum stress on neuronal cell death in the lateral geniculate nucleus in the monkey glaucoma model
Ito Y; Shimazawa M; Inokuchi Y; Yamanaka H; Tsuruma K; Imamura K; Onoe H; Watanabe Y; Aihara M; Araie M
European Journal of Neuroscience 2011; 33:843-855 (IGR: 13-1)


28116 Cationic nano-copolymers mediated IKK(beta) targeting siRNA to modulate wound healing in a monkey model of glaucoma filtration surgery
Ye H; Qian Y; Lin M; Duan Y; Sun X; Zhuo Y; Ge J
Molecular Vision 2010; 16: 2502-2510 (IGR: 13-1)


28188 Modeling glaucomatous neurodegeneration using diffusion tensor imaging
Hayashi T; Shimazawa M; Inoguchi Y; Ito Y; Yamanaka H; Iida H; Watanabe Y; Hara H; Onoe H
Molecular Imaging and Biology 2010; 12: 1244 (IGR: 13-1)


27838 Predictive value of the efficacy of glaucoma medications in animal models: Preclinical to regulatory studies
Stewart WC; Magrath GN; Demos CM; Nelson LA; Stewart JA
British Journal of Ophthalmology 2011; (IGR: 13-1)


27734 Deformation of the Early Glaucomatous Monkey Optic Nerve Head Connective Tissue after Acute IOP Elevation in 3-D Histomorphometric Reconstructions
Yang H; Thompson H; Roberts MD; Sigal IA; Downs JC; Burgoyne CF
Investigative Ophthalmology and Visual Science 2011; 52: 345-363 (IGR: 13-1)


27908 Dendrite plasticity in the lateral geniculate nucleus in primate glaucoma
Ly T; Gupta N; Weinreb RN; Kaufman PL; Yucel YH
Vision Research 2011; 51: 243-250 (IGR: 13-1)


27958 Effect of SPP 301, an endothelin antagonist, on intraocular pressure in glaucomatous monkey eyes
Wang R-F; Podos SM; Serle JB; Baltatu OC
Current Eye Research 2011; 36: 41-46 (IGR: 13-1)


27731 Responses of Primate Retinal Ganglion Cells to Perimetric Stimuli
Swanson WH; Sun H; Lee BB; Cao D
Investigative Ophthalmology and Visual Science 2011; 52: 764-771 (IGR: 13-1)


26961 Changes in the biomechanical response of the optic nerve head in early experimental glaucoma.
Roberts MD; Sigal IA; Liang Y; Burgoyne CF; Downs JC
Investigative Ophthalmology and Visual Science 2010; 51: 5675-5684 (IGR: 12-4)


27132 Aqueous humor dynamics in inbred rhesus monkeys with naturally occurring ocular hypertension
Toris CB; Risma JM; Gonzales-Martinez J; McLaughlin MA; Dawson WW
Experimental Eye Research 2010; 91: 860-865 (IGR: 12-4)


27029 Sodium orthovanadate effect on outflow facility and intraocular pressure in live monkeys.
Tan JC; Kiland JA; Gonzalez JM; Gabelt BT; Peters DM; Kaufman PL
Experimental Eye Research 2010; 91: 486-490 (IGR: 12-4)


26319 Histamine reduces flash sensitivity of on ganglion cells in the primate retina
Akimov NP; Marshak DW; Frishman LJ; Glickman RD; Yusupov RG
Investigative Ophthalmology and Visual Science 2010; 51: 3825-3834 (IGR: 12-3)


26797 Effects of topical phenylephrine and tafluprost on optic nerve head circulation in monkeys with unilateral experimental glaucoma
Mayama C; Ishii K; Saeki T; Ota T; Tomidokoro A; Araie M
Investigative Ophthalmology and Visual Science 2010; 51: 4117-4124 (IGR: 12-3)


26623 Benzothiophene containing Rho kinase inhibitors: Efficacy in an animal model of glaucoma
Davis RL; Kahraman M; Prins TJ; Beaver Y; Cook TG; Cramp J; Cayanan CS; Gardiner EMM; McLaughlin MA; Clark AF
Bioorganic and Medicinal Chemistry Letters 2010; 20: 3361-3366 (IGR: 12-3)


26162 COCH transgene expression in cultured human trabecular meshwork cells and its effect on outflow facility in monkey organ cultured anterior segments
Lee ES; Gabelt BT; Faralli JA; Peters DM; Brandt CR; Kaufman PL; Bhattacharya SK
Investigative Ophthalmology and Visual Science 2010; 51: 2060-2066 (IGR: 12-2)


26255 Serial multifocal electroretinograms during long-term elevation and reduction of intraocular pressure in non-human primates
Michael Nork T; Kim CB; Heatley GA; Kaufman PL; Lucarelli MJ; Levin LA; Ver Hoeve JN
Documenta Ophthalmologica 2010; 120: 273-289 (IGR: 12-2)


25839 A novel nitric oxide releasing prostaglandin analog, NCX 125, reduces intraocular pressure in rabbit, dog, and primate models of glaucoma
Borghi V; Bastia E; Guzzetta M; Chiroli V; Toris CB; Batugo MR; Carreiro ST; Chong WKM; Gale DC; Kucera DJ
Journal of Ocular Pharmacology and Therapeutics 2010; 26: 125-131 (IGR: 12-2)


25987 Effect of the Age Cross-Link Breaker Alagebrium on Anterior Segment Physiology, Morphology, and Ocular Age and Rage
Kiland JA; Gabelt BT; Tezel G; Lutjen-Drecoll E; Kaufman PL
Transactions of the American Ophthalmological Society 2009; 107: 146-158 (IGR: 12-2)


25164 Elevated albumin in retinas of monkeys with experimental glaucoma
Carter-Dawson L; Zhang Y; Harwerth RS; Rojas R; Dash P; Zhao XC; Woldemussie E; Ruiz G; Chuang A; Dubinsky WP
Investigative Ophthalmology and Visual Science 2010; 51: 952-959 (IGR: 12-1)


25371 Primate glaucoma models
Harwerth R S
Neuromethods 2010; 46: 165-189 (IGR: 12-1)


25187 Reduced myocilin expression in cultured monkey trabecular meshwork cells induced by a selective glucocorticoid receptor agonist: comparison with steroids
Pfeffer BA; DeWitt CA; Salvador-Silva M; Cavet ME; López FJ; Ward KW
Investigative Ophthalmology and Visual Science 2010; 51: 437-446 (IGR: 12-1)


25147 Correlation between local stress and strain and lamina cribrosa connective tissue volume fraction in normal monkey eyes
Roberts MD; Liang Y; Sigal IA; Grimm J; Reynaud J; Bellezza A; Burgoyne CF; Downs JC
Investigative Ophthalmology and Visual Science 2010; 51: 295-307 (IGR: 12-1)


25054 Quantification of dynamic blood flow autoregulation in optic nerve head of rhesus monkeys
Liang Y; Fortune B; Cull G; Cioffi GA; Wang L
Experimental Eye Research 2010; 90: 203-209 (IGR: 12-1)


25430 Effects of mitomycin C on the expression of chymase and mast cells in the conjunctival scar of a monkey trabeculectomy model.
Okada K; Sugiyama T; Takai S; Jin D; Ishida O; Fukmoto M; Oku H; Miyazaki M; Ikeda T
Molecular Vision 2009; 15: 2029-2036 (IGR: 12-1)


24881 Scleral biomechanics in the aging monkey eye
Girard MJ; Suh JK; Bottlang M; Burgoyne CF; Downs JC
Investigative Ophthalmology and Visual Science 2009; 50: 5226-5237 (IGR: 11-4)


24926 Deformation of the normal monkey optic nerve head connective tissue after acute IOP elevation within 3-D histomorphometric reconstructions
Yang H; Downs JC; Sigal IA; Roberts MD; Thompson H; Burgoyne CF
Investigative Ophthalmology and Visual Science 2009; 50: 5785-5799 (IGR: 11-4)


24844 Morphological and hydrodynamic correlates in monkey eyes with laser induced glaucoma
Zhang Y; Toris CB; Liu Y; Ye W; Gong H
Experimental Eye Research 2009; 89: 748-756 (IGR: 11-4)


24068 Prostanoid EP4 receptor stimulation produces ocular hypotension by a mechanism that does not appear to involve uveoscleral outflow
Woodward DF; Nilsson SF; Toris CB; Kharlamb AB; Nieves AL; Krauss AH
Investigative Ophthalmology and Visual Science 2009; 50: 3320-3328 (IGR: 11-3)


24229 Peripapillary and posterior scleral mechanics--part II: experimental and inverse finite element characterization
Girard MJ; Downs JC; Bottlang M; Burgoyne CF; Suh JK
Journal of Biomechanical Engineering 2009; 131: 051012 (IGR: 11-3)


24228 Peripapillary and posterior scleral mechanics--part I: development of an anisotropic hyperelastic constitutive model
Girard MJ; Downs JC; Burgoyne CF; Suh JK
Journal of Biomechanical Engineering 2009; 131: 051011 (IGR: 11-3)


24045 Morphological changes in the visual pathway induced by experimental glaucoma in Japanese monkeys
Ito Y; Shimazawa M; Chen YN; Tsuruma K; Yamashima T; Araie M; Hara H
Experimental Eye Research 2009; 89: 246-255 (IGR: 11-3)


23511 Prolonged transgene expression with lentiviral vectors in the aqueous humor outflow pathway of nonhuman primates
Barraza RA; Rasmussen CA; Loewen N; Cameron JD; Gabelt BT; Teo W-L; Kaufman PL; Poeschla EM
Human Genetics and Therapeutics 2009; 20: 191-200 (IGR: 11-2)


22711 Physiologic intereye differences in monkey optic nerve head architecture and their relation to changes in early experimental glaucoma
Yang H; Downs JC; Burgoyne CF
Investigative Ophthalmology and Visual Science 2009; 50: 224-234 (IGR: 11-1)


22689 Identification of the active site in the heparin II domain of fibronectin that increases outflow facility in cultured monkey anterior segments
Gonzalez JM Jr; Hu Y; Gabelt BT; Kaufman PL; Peters DM
Investigative Ophthalmology and Visual Science 2009; 50: 235-241 (IGR: 11-1)


22532 Cochlin expression in anterior segment organ culture models after TGFβ2 treatment
Bhattacharya SK; Gabelt BT; Ruiz J; Picciani R; Kaufman PL
Investigative Ophthalmology and Visual Science 2009; 50: 551-559 (IGR: 11-1)


22975 Molecular imaging reveals unique degenerative changes in experimental glaucoma
Imamura K; Onoe H; Shimazawa M; Nozaki S; Wada Y; Kato K; Nakajima H; Mizuma H; Onoe K; Taniguchi T
Neuroreport 2009; 20: 139-144 (IGR: 11-1)


22701 Femtosecond laser photodisruption of primate trabecular meshwork: an ex vivo study
Nakamura H; Liu Y; Witt TE; Gordon RJ; Edward DP
Investigative Ophthalmology and Visual Science 2009; 50: 1198-1204 (IGR: 11-1)


22598 Effect of daily prolonged ketamine anesthesia on intraocular pressure in monkeys
Bunch TJ; Tian B; Seeman JL; Gabelt BT; Lin TL; Kaufman PL
Current Eye Research 2008; 33: 946-953 (IGR: 11-1)


20863 Changes in visual fields and lateral geniculate nucleus in monkey laser-induced high intraocular pressure model
Sasaoka M; Nakamura K; Shimazawa M; Ito Y; Araie M; Hara H
Experimental Eye Research 2008; 86: 770-782 (IGR: 10-2)


20100 3-D histomorphometry of the normal and early glaucomatous monkey optic nerve head: prelaminar neural tissues and cupping
Yang H; Downs JC; Bellezza A; Thompson H; Burgoyne CF
Investigative Ophthalmology and Visual Science 2007; 48: 5068-5084 (IGR: 9-4)


20090 3-D histomorphometry of the normal and early glaucomatous monkey optic nerve head: lamina cribrosa and peripapillary scleral position and thickness
Yang H; Downs JC; Girkin C; Sakata L; Bellezza A; Thompson H; Burgoyne CF
Investigative Ophthalmology and Visual Science 2007; 48: 4597-4607 (IGR: 9-4)


19522 Expression of ephrinB1 and its receptor in glaucomatous optic neuropathy
Schmidt JF; Agapova OA; Yang P; Kaufman PL; Hernandez MR
British Journal of Ophthalmology 2007; 91: 1219-1224 (IGR: 9-3)


19646 Optical coherence tomography and histologic measurements of nerve fiber layer thickness in normal and glaucomatous monkey eyes
Schuman JS; Pedut-Kloizman T; Pakter H; Wang N; Guedes V; Huang L; Pieroth L; Scott W; Hee MR; Fujimoto JG
Investigative Ophthalmology and Visual Science 2007; 48: 3645-3654 (IGR: 9-3)


19656 Three-dimensional histomorphometry of the normal and early glaucomatous monkey optic nerve head: neural canal and subarachnoid space architecture
Downs JC; Yang H; Girkin C; Sakata L; Bellezza A; Thompson H; Burgoyne CF
Investigative Ophthalmology and Visual Science 2007; 48: 3195-208 (IGR: 9-3)


19441 Combined effects of H7 and pilocarpine on anterior segment physiology in monkey eyes
Tian B; Kaufman PL
Current Eye Research 2007; 32: 491-500 (IGR: 9-3)


19598 Effect of 15-keto latanoprost on intraocular pressure and aqueous humor dynamics in monkey eyes
Wang R-F; Gagliuso DJ; Mittag TW; Podos SM
Investigative Ophthalmology and Visual Science 2007; 48: 4143-4147 (IGR: 9-3)


18018 Surgical lowering of elevated intraocular pressure in monkeys prevents progression of glaucomatous disease
Nickells RW; Schlamp CL; Li Y; Kaufman PL; Heatley G; Peterson JC; Faha B; Ver Hoeve JN
Experimental Eye Research 2007; 84: 729-736 (IGR: 9-2)


16816 Chronic ocular hypertension induces dendrite pathology in the lateral geniculate nucleus of the brain
Gupta N; Ly T; Zhang Q; Kaufman PL; Weinreb RN; Yucel YH
Experimental Eye Research 2007; 84: 176-184 (IGR: 9-1)


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