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WGC-2021

3.9 Pathophysiology (190)

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84914 Vitreous albumin redox state in open-angle glaucoma patients and controls: a pilot study
Schwab C
International Ophthalmology 2020; 0:
84633 Elevated pressure influences relative distribution of segmental regions of the trabecular meshwork
Vranka JA
Experimental Eye Research 2020; 190: 107888
84885 C3 Transferase-Expressing scAAV2 Transduces Ocular Anterior Segment Tissues and Lowers Intraocular Pressure in Mouse and Monkey
Tan J
Molecular therapy. Methods & clinical development 2020; 17: 143-155
84606 Intracranial pressure modulates aqueous humour dynamics of the eye
Ficarrotta KR
Journal of Physiology 2020; 598: 403-413
84685 Increased stiffness and flow resistance of the inner wall of Schlemm's canal in glaucomatous human eyes
Vahabikashi A
Proceedings of the National Academy of Sciences of the United States of America 2019; 0:
84277 Glaucoma After Corneal Trauma or Surgery-A Rapid, Inflammatory, IOP-Independent Pathway
Dohlman CH
Cornea 2019; 38: 1589-1594
84293 Correlating Structural and Functional Damage in Glaucoma
Torres LA
Journal of Glaucoma 2019; 28: 1079-1085
85051 Vps35 Deficiency Impairs Cdk5/p35 Degradation and Promotes the Hyperphosphorylation of Tau Protein in Retinal Ganglion Cells
Gao L
Investigative Ophthalmology and Visual Science 2020; 61: 1
84756 Potential mechanisms of retinal ganglion cell type-specific vulnerability in glaucoma
Wang AY
Clinical and Experimental Optometry 2020; 103: 562-571
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
84283 The Probable Mechanism of Traumatic Angle Recession and Cyclodialysis
Pujari A
Journal of Glaucoma 2020; 29: 67-70
85159 Pathogenic roles of retinal glia in glaucoma
Shinozaki Y
Nippon yakurigaku zasshi 2020; 155: 87-92
85214 Retinal correlates of psychiatric disorders
Almonte MT
Therapeutic advances in chronic disease 2020; 11: 2040622320905215
85158 Expression changes in microRNA in the retina of retinal degenerative diseases
Sakamoto K
Nippon yakurigaku zasshi 2020; 155: 81-86
85004 Elevated Intraocular Pressure Causes Abnormal Reactivity of Mouse Retinal Arterioles
Gericke A
Oxidative medicine and cellular longevity 2019; 2019: 9736047
84908 Involvement of regulated necrosis in blinding diseases: Focus on necroptosis and ferroptosis
Peng JJ
Experimental Eye Research 2020; 191: 107922
85210 The Role of Autophagy in Glaucomatous Optic Neuropathy
Adornetto A
Frontiers in cell and developmental biology 2020; 8: 121
85009 Ocular Accommodation, Intraocular Pressure, Development of Myopia and Glaucoma: Role of Ciliary Muscle, Choroid and Metabolism
Aggarwala KRG
Medical hypothesis, discovery and innovation in ophthalmology 2020; 9: 66-70
85221 The role of the endothelin system in the pathogenesis of eye diseases
Chesnokova NB
Vestnik Oftalmologii 2020; 136: 117-123
84590 Under pressure: Cerebrospinal fluid contribution to the physiological homeostasis of the eye
Mirra S
Seminars in Cell and Developmental Biology 2019; 0:
84756 Potential mechanisms of retinal ganglion cell type-specific vulnerability in glaucoma
Wang AY
Clinical and Experimental Optometry 2020; 103: 562-571
84627 Role of Fibronectin in Primary Open Angle Glaucoma
Faralli JA
Cells 2019; 8:
84764 TRPC5 regulates axonal outgrowth in developing retinal ganglion cells
Oda M
Laboratory Investigation 2020; 100: 297-310
84639 Oxidative stress and antioxidants in the trabecular meshwork
Wang M
PeerJ 2019; 7: e8121
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

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