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Classification #6.9.2.2
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6.9.2.2 Posterior
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6.9.2.2 Posterior
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45484
Enhanced depth imaging of the choroid in open-angle glaucoma: A preliminary study
Fénolland JR; Giraud JM; Maÿ F; Mouinga A; Seck S; Renard JP
Journal Français d'Ophtalmologie
2011; 34: 313-317
45949
Characterization of peripapillary atrophy using spectral domain optical coherence tomography
Na JH; Moon BG; Sung KR; Lee Y; Kook MS
Korean Journal of Ophthalmology
2010; 24: 353-359
45774
Retinal nerve fiber layer thickness is decreased in the fellow eyes of patients with unilateral retinal vein occlusion
Kim MJ; Woo SJ; Park KH; Kim T-W
Ophthalmology
2011; 118: 706-710
45540
Postural changes in intraocular pressure are associated with asymmetrical retinal nerve fiber thinning in treated patients with primary open-angle glaucoma
Mizokami J; Yamada Y; Negi A; Nakamura M
Graefe's Archive for Clinical and Experimental Ophthalmology
2011; 249: 879-885
46028
Macular retinal ganglion cell complex damage in the apparently normal visual field of glaucomatous eyes with hemifield defects
Takagi ST; Kita Y; Yagi F; Tomita G
Journal of Glaucoma
2011;
45988
Effect of optic disc size and disease severity on the diagnostic capability of glaucoma imaging technologies in an Indian population
Garudadri CS; Rao HL; Parikh RS; Jonnadula GB; Selvaraj P; Nutheti R; Thomas R
Journal of Glaucoma
2011;
45833
Role of imaging in glaucoma diagnosis and follow-up
Vizzeri G; Kjaergaard S; Rao H; Zangwill L
Indian Journal of Ophthalmology
2011; 59: 59-68
46098
Diagnostic capability of scanning laser polarimetry with and without enhanced corneal compensation and optical coherence tomography
Benitez-del-Castillo J; Martinez A; Regi T
European Journal of Ophthalmology
2011; 21: 228-236
46133
Correlation between scanning laser polarimetry with and without enhanced corneal compensation and high-definition optical coherence tomography in normal and glaucomatous eyes
Benitez-del-Castillo J; Martinez A; Regi T
International Journal of Clinical Pract
2011; 65: 807-816
45799
Measurement of birefringence of the retinal nerve fiber layer using swept source polarization sensitive optical coherence tomography (1 UM)
Elmaanaoui B; Dwelle J; McElroy A; Paranjape A; Liu S; Rylander H; Milner T
Lasers in Surgery and Medicine
2010; 42: 16
46188
Comparison of scanning laser polarimetry and optical coherence tomography in preperimetric glaucoma
Kim HG; Heo H; Park SW
Optometry and Vision Science
2011; 88: 124-129
46310
Quantification of change in axonal birefringence following surgical reduction in intraocular pressure
Sehi M; Grewal DS; Zhu H; Feuer WJ; Greenfield DS
Ophthalmic surgery, lasers & imaging : the official journal of the International Society for Imaging in the Eye
2011; 42: 45-52
45611
Comparative study of retinal nerve fibre layer measurement by RTVue OCT and GDx VCC
Wang X; Fu J; Wu G; Mu D; Li S; Wang J; Wang N
British Journal of Ophthalmology
2011; 95: 509-513
45674
Imagings of glaucoma: characteristics of ocular configurations and automated diagnosis
Tomidokoro A
Nippon Ganka Gakkai Zasshi
2011; 115: 276-295
46304
Spectral domain optical coherence tomography in the diagnosis and management of glaucoma
Aref AA; Budenz DL
Ophthalmic surgery, lasers & imaging : the official journal of the International Society for Imaging in the Eye
2010; 41: 15-27
46149
Comparison of the influence of cataract and pupil size on retinal nerve fibre layer thickness measurements with time-domain and spectral-domain optical coherence tomography
Cheng CS; Natividad MG; Earnest A; Yong V; Lim BA; Wong HT; Yip LW
Clinical and Experimental Ophthalmology
2011; 39: 215-221
46092
Intrasession, intersession, and interexaminer variabilities of retinal nerve fiber layer measurements with spectral-domain OCT
Cremasco F; Massa G; Vidotti VG; Lupinacci APC; Costa VP
European Journal of Ophthalmology
2011; 21: 264-270
45878
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
2011; 249: 575-584
45445
Optical coherence tomography: history, current status, and laboratory work
Gabriele ML; Wollstein G; Ishikawa H; Kagemann L; Xu J; Folio LS; Schuman JS
Investigative Ophthalmology and Visual Science
2011; 52: 2425-2436
45524
Accuracy of the RTVue-100 Fourier-domain optical coherence tomograph in an optic neuropathy screening trial
Garas A; Kóthy P; Holló G
International Ophthalmology
2011; 31: 175-182
46200
Reliability of a computer-aided manual procedure for segmenting optical coherence tomography scans
Hood DC; Cho J; Raza AS; Dale EA; Wang M
Optometry and Vision Science
2011; 88: 113-123
46009
Comparison between deviation map algorithm and peripapillary retinal nerve fiber layer measurements using cirrus HD-OCT in the detection of localized glaucomatous visual field defects
Kang SY; Sung KR; Na JH; Choi EH; Cho JW; Cheon MH; Kim KH; Kook MS
Journal of Glaucoma
2011;
45525
Effect of signal strength on reproducibility of circumpapillary retinal nerve fiber layer thickness measurement and its classification by spectral-domain optical coherence tomography
Kim JH; Kim NR; Kim H; Lee ES; Seong GJ; Kim CY
Japanese Journal of Ophthalmology
2011; 55: 220-227
46012
Comparison of the optic nerve imaging by time-domain optical coherence tomography and fourier-domain optical coherence tomography in distinguishing normal eyes from those with glaucoma
Kim NR; Kim JH; Kim CY; Jun I; Je Seong G; Lee ES
Journal of Glaucoma
2011;
45462
Reproducibility of Retinal Nerve Fiber Layer Thickness Measurements Using the Eye Tracker and the Retest Function of Spectralis SD-OCT in Glaucomatous and Healthy Control Eyes
Langenegger SJ; Funk J; Töteberg-Harms M
Investigative Ophthalmology and Visual Science
2011; 52: 3338-3344
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