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3.9 Pathophysiology (78)

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Display all abstracts in classification 3.9 Pathophysiology

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81438 Identifying the Critical Factors Governing Translaminar Pressure Differential Through a Compartmental Model
Kaskar OG
Investigative Ophthalmology and Visual Science 2019; 60: 3204-3214
80993 Chlorogenic acid relieved oxidative stress injury in retinal ganglion cells through IncRNA-TUG1/Nrf2
Gong W
Cell cycle (Georgetown, Tex.) 2019; 18: 1549-1559
81068 Potential role of P2X7 receptor in neurodegenerative processes in a murine model of glaucoma
Pérez de Lara MJ
Brain Research Bulletin 2019; 150: 61-74
80476 Lessons from glaucoma: rethinking the fluid-brain barriers in common neurodegenerative disorders
Carreras FJ
Neural Regeneration Research 2019; 14: 962-966
81313 Vascular Inflammation Risk Factors in Retinal Disease
Soto I
Annual review of vision science 2019; 5: 99-122
80915 Optic Nerve Lipidomics Reveal Impaired Glucosylsphingosine Lipids Pathway in Glaucoma
Chauhan MZ
Investigative Ophthalmology and Visual Science 2019; 60: 1789-1798
81314 Menopause exacerbates visual dysfunction in experimental glaucoma
Feola AJ
Experimental Eye Research 2019; 186: 107706
80472 Fisetin rescues retinal functions by suppressing inflammatory response in a DBA/2J mouse model of glaucoma
Li L
Documenta Ophthalmologica 2019; 138: 125-135
80929 Hyperhomocysteinemia-induced death of retinal ganglion cells: The role of Müller glial cells and NRF2
Navneet S
Redox biology 2019; 24: 101199
80801 Platelet-generated amyloid beta peptides in Alzheimer's disease and glaucoma
Inyushin M
Histology and Histopathology 2019; 34: 843-856
80847 Evaluation of dynamic thiol-disulfide homeostasis in glaucoma patients and the correlation with retinal nerve fiber layer analysis
Gulpamuk B
European Journal of Ophthalmology 2019; 0: 1120672119839582
80900 Relating glaucomatous visual field loss to retinal oxygen delivery and metabolism
Aref AA
Acta Ophthalmologica 2019; 97: e968-e972
80918 Optimising the Structure-Function Relationship at the Locus of Deficit in Retinal Disease
Phu J
Frontiers in neuroscience 2019; 13: 306
81337 Mendelian genes in primary open angle glaucoma
Sears NC
Experimental Eye Research 2019; 186: 107702
80897 How does a protein's structure spell the difference between health and disease? Our journey to understand glaucoma-associated myocilin
Lieberman RL
PLoS biology 2019; 17: e3000237
81353 Cholinergic nervous system and glaucoma: From basic science to clinical applications
Faiq MA
Progress in Retinal and Eye Research 2019; 72: 100767
80929 Hyperhomocysteinemia-induced death of retinal ganglion cells: The role of Müller glial cells and NRF2
Zhao J
Redox biology 2019; 24: 101199
81337 Mendelian genes in primary open angle glaucoma
Boese EA
Experimental Eye Research 2019; 186: 107702
80900 Relating glaucomatous visual field loss to retinal oxygen delivery and metabolism
Maleki S
Acta Ophthalmologica 2019; 97: e968-e972
80918 Optimising the Structure-Function Relationship at the Locus of Deficit in Retinal Disease
Kalloniatis M
Frontiers in neuroscience 2019; 13: 306
81313 Vascular Inflammation Risk Factors in Retinal Disease
Krebs MP
Annual review of vision science 2019; 5: 99-122
80472 Fisetin rescues retinal functions by suppressing inflammatory response in a DBA/2J mouse model of glaucoma
Qin J
Documenta Ophthalmologica 2019; 138: 125-135
80847 Evaluation of dynamic thiol-disulfide homeostasis in glaucoma patients and the correlation with retinal nerve fiber layer analysis
Elgin U
European Journal of Ophthalmology 2019; 0: 1120672119839582
81068 Potential role of P2X7 receptor in neurodegenerative processes in a murine model of glaucoma
Avilés-Trigueros M
Brain Research Bulletin 2019; 150: 61-74
81438 Identifying the Critical Factors Governing Translaminar Pressure Differential Through a Compartmental Model
Fleischman D
Investigative Ophthalmology and Visual Science 2019; 60: 3204-3214

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