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12-4
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Classification #6.6.2
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6.6.2 Automated
(21)
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6.6.2 Automated
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27486
The role of clinical parapapillary atrophy evaluation in the diagnosis of open angle glaucoma
Ehrlich JR; Radcliffe NM
Clinical Ophthalmology
2010; 4: 971-976
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
27107
Agreement of visual field interpretation among glaucoma specialists and comprehensive ophthalmologists: Comparison of time and methods
Lin AP; Katz LJ; Spaeth GL; Moster MR; Henderer JD; Schmidt CM; Myers JS
British Journal of Ophthalmology
2010;
27206
The distribution of visual field defects per quadrant in standard automated perimetry as compared to frequency doubling technology perimetry
Zein WM; Bashshur ZF; Jaafar RF; Noureddin BN
International Ophthalmology
2010;
27066
The distribution of visual field defects per quadrant in standard automated perimetry as compared to frequency doubling technology perimetry.
Zein WM; Bashshur ZF; Jaafar RF; Noureddin BN
International Ophthalmology
2010; 30: 683-689
27278
Characteristics of visual field defects in primary angle-closure glaucoma
Han F; Yuan Y-S
Chinese Journal of Ophthalmology
2009; 45: 14-20
27310
A review of current technology used in evaluating visual function in glaucoma
Turalba AV; Grosskreutz C
Seminars in Ophthalmology
2010; 25: 309-316
27499
Correlation between morphology of optic disc determined by heidelberg retina tomograph ii and visual function in eyes with open-angle glaucoma
Omodaka K; Nakazawa T; Otomo T; Nakamura M; Fuse N; Nishida K
Clinical Ophthalmology
2010; 4: 765-772
27198
Determinants of agreement between the confocal scanning laser tomograph and standardized assessment of glaucomatous progression
Vizzeri G; Bowd C; Weinreb RN; Balasubramanian M; Medeiros FA; Sample PA; Zangwill LM
Ophthalmology
2010; 117: 1953-1959
26963
Predicting visual function from the measurements of retinal nerve fiber layer structure.
Zhu H; Crabb DP; Schlottmann PG; Lemij HG; Reus NJ; Healey PR; Mitchell P; Ho T; Garway-Heath DF
Investigative Ophthalmology and Visual Science
2010; 51: 5657-5666
27086
Structure-function relationships using spectral-domain optical coherence tomography: Comparison with scanning laser polarimetry
Aptel F; Sayous R; Fortoul V; Beccat S; Denis P
American Journal of Ophthalmology
2010; 150: 825-833
27565
Structure-function relationship and diagnostic value of macular ganglion cell complex measurement using Fourier-domain OCT in glaucoma
Kim NR; Lee ES; Seong GJ; Kim JH; An HG; Kim CY
Investigative ophthalmology & visual science
2010; 51: 4646-4651
27607
Application of optical coherence tomography and standard automatic permetry in the early glaucoma
Wu F-F; Jia H-Q; Zhao Z-L
International Journal of Ophthalmology
2010; 10: 1760-1762
27295
Correlation between nerve fibre layer thickness measured with spectral domain OCT and visual field in patients with different stages of glaucoma
Cvenkel B; Sket Kontestabile A
Graefe's Archive for Clinical and Experimental Ophthalmology
2010; 1-10
27010
Structure-function relationships in normal and glaucomatous eyes determined by time- and spectral-domain optical coherence tomography.
Lee JR; Jeoung JW; Choi J; Choi JY; Park KH; Kim YD
Investigative Ophthalmology and Visual Science
2010; 51: 6424-6430
26971
Relationship between Visual Field Sensitivity and Macular Ganglion Cell Complex Thickness as Measured by Spectral-Domain Optical Coherence Tomography.
Cho JW; Sung KR; Lee S; Yun SC; Kang SY; Choi J; Na JH; Lee Y; Kook MS
Investigative Ophthalmology and Visual Science
2010; 51: 6401-6407
27199
The relationship between intraocular pressure reduction and rates of progressive visual field loss in eyes with optic disc hemorrhage
Medeiros FA; Alencar LM; Sample PA; Zangwill LM; Susanna Jr R; Weinreb RN
Ophthalmology
2010; 117: 2061-2066
26940
Longitudinal and Cross-sectional Analyses of Visual Field Progression in Participants of the Ocular Hypertension Treatment Study
PH Artes; BC Chauhan; JL Keltner; KE Cello; CA Johnson; DR Anderson; MO Gordon; MA Kass
Archives of Ophthalmology
2010; 128: 1528-1532
26992
Continued visual field progression in eyes with prior visual field progression in patients with open-angle glaucoma.
Chen PP; Cady RS; Mudumbai RC; Ngan R
Journal of Glaucoma
2010; 19: 598-603
27489
Clinical distinction between nasal optic disc hypoplasia (NOH) and glaucoma with NOH-like temporal visual field defects
Ohguro H; Ohguro I; Tsuruta M; Katai M; Tanaka S
Clinical Ophthalmology
2010; 4: 547-555
26988
Methodologic Quality of Studies on Prognostic Factors for Primary Open-angle Glaucoma Progression Measured by Visual Field Deterioration.
Júlvez LP; Del Castillo Sánchez JB; Feijoo JG; Rubio-Terrés C
Journal of Glaucoma
2010; 19: 587-591
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