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6.20 Progression (156)

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Display all abstracts in classification 6.20 Progression

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86566 Pre-perimetric Open Angle Glaucoma with Young Age of Onset: Natural Clinical Course and Risk Factors for Progression
Bak E
American Journal of Ophthalmology 2020; 216: 121-131
86675 Detection of Progression With 10-2 Standard Automated Perimetry: Development and Validation of an Event-Based Algorithm
De Moraes CG
American Journal of Ophthalmology 2020; 216: 37-43
86625 The Relationship Between Intraocular Pressure and Rates of Central Versus Peripheral Visual Field Progression
Shukla AG
Journal of Glaucoma 2020; 29: 435-440
86751 A CNN-aided method to predict glaucoma progression using DARC (Detection of Apoptosing Retinal Cells)
Normando EM
Expert review of molecular diagnostics 2020; 20: 737-748
86552 Progression from ocular hypertension to visual field loss in the English hospital eye service
Kelly SR
British Journal of Ophthalmology 2020; 104: 1406-1411
86606 Pointwise Methods to Measure Long-term Visual Field Progression in Glaucoma
Salazar D
JAMA ophthalmology 2020; 138: 536-543
86550 Genetic Variants Associated With the Onset and Progression of Primary Open-Angle Glaucoma
Mabuchi F
American Journal of Ophthalmology 2020; 215: 135-140
86566 Pre-perimetric Open Angle Glaucoma with Young Age of Onset: Natural Clinical Course and Risk Factors for Progression
Bak E
American Journal of Ophthalmology 2020; 216: 121-131
86204 One year structural and functional glaucoma progression after trabeculectomy
Chua J
Scientific reports 2020; 10: 2808
86840 Morphological characteristics of parapapillary atrophy and subsequent visual field progression in primary open-angle glaucoma
Ha A
British Journal of Ophthalmology 2021; 105: 361-366
86566 Pre-perimetric Open Angle Glaucoma with Young Age of Onset: Natural Clinical Course and Risk Factors for Progression
Bak E
American Journal of Ophthalmology 2020; 216: 121-131
86577 Relationship Between Contact Lens Sensor Output Parameters and Visual Field Progression in Open-angle Glaucoma: Assessment of a Practical Tool to Guide Clinical Risk-assessment
Gillmann K
Journal of Glaucoma 2020; 29: 461-466
86696 Disc Hemorrhages Are Associated With the Presence and Progression of Glaucomatous Central Visual Field Defects
Shukla AG
Journal of Glaucoma 2020; 29: 429-434
86566 Pre-perimetric Open Angle Glaucoma with Young Age of Onset: Natural Clinical Course and Risk Factors for Progression
Bak E
American Journal of Ophthalmology 2020; 216: 121-131
86625 The Relationship Between Intraocular Pressure and Rates of Central Versus Peripheral Visual Field Progression
Shukla AG
Journal of Glaucoma 2020; 29: 435-440
86848 Functional assessment of glaucoma: Uncovering progression
Hu R
Survey of Ophthalmology 2020; 65: 639-661
86350 Visual field progression 8 years after trabeculectomy in Asian eyes: results from The Singapore 5-Fluorouracil Study
Ang BCH
British Journal of Ophthalmology 2020; 104: 1690-1696
86766 Monitoring Glaucomatous Functional Loss Using an Artificial Intelligence-Enabled Dashboard
Yousefi S
Ophthalmology 2020; 127: 1170-1178
86141 The optic nerve head vasoreactive response to systemic hyperoxia and visual field defect progression in open-angle glaucoma, a pilot study
Kiyota N
Acta Ophthalmologica 2020; 98: e747-e753
86696 Disc Hemorrhages Are Associated With the Presence and Progression of Glaucomatous Central Visual Field Defects
Shukla AG
Journal of Glaucoma 2020; 29: 429-434
86329 Nasalization of Central Retinal Vessel Trunk Predicts Rapid Progression of Central Visual Field in Open-Angle Glaucoma
Shon K
Scientific reports 2020; 10: 3789
86602 Glaucomatous visual field loss in eyes undergoing first trabeculectomy in Iceland
Tryggvadottir EB
Laeknabladid 2020; 106: 187-192
86550 Genetic Variants Associated With the Onset and Progression of Primary Open-Angle Glaucoma
Mabuchi N
American Journal of Ophthalmology 2020; 215: 135-140
86204 One year structural and functional glaucoma progression after trabeculectomy
Kadziauskienė A
Scientific reports 2020; 10: 2808
86141 The optic nerve head vasoreactive response to systemic hyperoxia and visual field defect progression in open-angle glaucoma, a pilot study
Shiga Y
Acta Ophthalmologica 2020; 98: e747-e753

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