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2.13 Retina and retinal nerve fibre layer (30)

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Display all abstracts in classification 2.13 Retina and retinal nerve fibre layer

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45782 Neurodegeneration of the retina in mouse models of Alzheimer's disease: what can we learn from the retina?
Chiu K; Chan T-F; Wu A; Leung IY-P; So K-F; Chang RC-C
Age 2011; 1-17
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
45516 Glaucomatous eye macular ganglion cell complex thickness and its relation to temporal circumpapillary retinal nerve fiber layer thickness
Kita Y; Kita R; Nitta A; Nishimura C; Tomita G
Japanese Journal of Ophthalmology 2011; 55: 228-234
45726 Distortion of axonal cytoskeleton: An early sign of glaucomatous damage
Huang X; Kong W; Zhou Y; Gregori G
Investigative Ophthalmology and Visual Science 2011; 52: 2879-2888
45851 Removal of melatonin receptor type 1 increases intraocular pressure and retinal ganglion cells death in the mouse
Alcantara-Contreras S; Baba K; Tosini G
Neuroscience Letters 2011; 494: 61-64
45636 Retinal proteomic changes following unilateral optic nerve transection and early experimental glaucoma in non-human primate eyes
Stowell C; Arbogast B; Cioffi G; Burgoyne C; Zhou A
Experimental Eye Research 2011; 93: 13-28
45499 Retinal nerve fiber layer assessment: area versus thickness measurements from elliptical scans centered on the optic nerve
Patel NB; Luo X; Wheat JL; Harwerth RS
Investigative Ophthalmology and Visual Science 2011; 52: 2477-2489
45909 Imaging apoptosis in the eye
Cordeiro MF; Migdal C; Bloom P; Fitzke FW; Moss SE
Eye 2011; 25: 545-553
45557 Axotomy-induced retinal ganglion cell death in adult mice: quantitative and topographic time course analyses
Galindo-Romero C; Avilés-Trigueros M; Jiménez-López M; Valiente-Soriano FJ; Salinas-Navarro M; Nadal-Nicolás F; Villegas-Pérez MP; Vidal-Sanz M; Agudo-Barriuso M
Experimental Eye Research 2011; 92: 377-387
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
46204 Modeling the patterns of visual field loss in glaucoma
Carreras FJ; Rica R; Delgado AV
Optometry and Vision Science 2011; 88: 63-79
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;
45498 GDx Staging System: A New Method for Retinal Nerve Fiber Layer Damage Classification
Brusini P
Journal of Glaucoma 2011; 20: 287-293
45770 Influence of Disc Size on Optic Nerve Head versus Retinal Nerve Fiber Layer Assessment for Diagnosing Glaucoma
Oddone F; Centofanti M; Tanga L; Parravano M; Michelessi M; Schiavone M; Villani CM; Fogagnolo P; Manni G
Ophthalmology 2011; 118: 1340-1347
45456 Determinants of perimacular inner retinal layer thickness in normal eyes measured by fourier-domain optical coherence tomography
Kim NR; Kim JH; Lee J; Lee ES; Seong GJ; Kim CY
Investigative Ophthalmology and Visual Science 2011; 52: 3413-3418
45554 Pattern of retinal ganglion cell loss in dominant optic atrophy due to OPA1 mutations
Yu-Wai-Man P; Bailie M; Atawan A; Chinnery PF; Griffiths PG
Eye 2011; 25: 596-602
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
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
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
45781 Evaluation of Retinal Nerve Fiber Layer Progression in Glaucoma. A Comparison between Spectral-Domain and Time-Domain Optical Coherence Tomography
Leung CK-S; Chiu V; Weinreb RN; Liu S; Ye C; Yu M; Cheung CY-L; Lai G; Lam DS-C
Ophthalmology 2011;
46305 Quantification of retinal nerve fiber layer thickness in normal eyes, eyes with ocular hypertension, and glaucomatous eyes with SD-OCT
Mansoori T; Viswanath K; Balakrishna N
Ophthalmic surgery, lasers & imaging : the official journal of the International Society for Imaging in the Eye 2010; 41: 50-57
45767 Detection of Localized Retinal Nerve Fiber Layer Defects in Glaucoma Using Enhanced Spectral-Domain Optical Coherence Tomography
Nukada M; Hangai M; Mori S; Nakano N; Nakanishi H; Ohashi-Ikeda H; Nonaka A; Yoshimura N
Ophthalmology 2011; 118: 1038-1048
45507 Reproducibility of high-resolution optical coherence tomography measurements of the nerve fibre layer with the new Heidelberg Spectralis optical coherence tomography
Serbecic N; Beutelspacher SC; Aboul-Enein FC; Kircher K; Reitner A; Schmidt-Erfurth U
British Journal of Ophthalmology 2011; 95: 804-810
45735 Retinal nerve fiber layer normative classification by optical coherence tomography for prediction of future visual field loss
Sung KR; Kim S; Lee Y; Yun S-C; Na JH
Investigative Ophthalmology and Visual Science 2011; 52: 2634-2639

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