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6.9.2.2 Posterior (37)

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46636 Choroidal thickness measured by spectral domain optical coherence tomography: Factors affecting thickness in glaucoma patients
Maul EA; Friedman DS; Chang DS; Boland MV; Ramulu PY; Jampel HD; Quigley HA
Ophthalmology 2011; 118: 1571-1579
46791 Retinal nerve fiber layer imaging with spectral-domain optical coherence tomography: Effect of multiple B-scan averaging on RNFL measurement
Ye C; Lam DS; Leung CK-S
Journal of Glaucoma 2011;
46961 Coupled parametric model for estimation of visual field tests based on OCT macular thickness maps, and vice versa, in glaucoma care
Tsai A; Caprioli J; Shen LQ
Medical Image Analysis 2011;
46949 Correlation between humphrey visual field, optical coherence tomography and heidelberg retina tomograph parameters in primary open-angle glaucoma, normal-tension glaucoma and ocular hypertension
Ayhan Z; Arikan G; Gunenc U; Cingil G
Turk Oftalmoloiji Dergisi 2011; 41: 143-150
46345 Relationship between standard automated perimetry and retinal nerve fiber layer parameters obtained with optical coherence tomography
Lopez-Peña MJ; Ferreras A; Larrosa JM; Polo V; Pablo LE
Journal of Glaucoma 2011; 20: 422-432
46731 Comparison of measurement error of Cirrus HD-OCT and Heidelberg Retina Tomograph 3 in patients with early glaucomatous visual field defect
Shpak AA; Sevostyanova MK; Ogorodnikova SN; Shormaz IN
Graefe's Archive for Clinical and Experimental Ophthalmology 2011;
46637 Retinal Nerve Fiber Layer Imaging with Spectral Domain OCT: Comparison with Scanning Laser Tomograph Reflectance Image
Ye C; To E; Weinreb RN; Yu M; Liu S; Lam DSC; Leung CKS
Ophthalmology 2011;
46382 Hypodense Regions ("Holes") in the Retinal Nerve Fiber Layer in Frequency-Domain OCT Scans of Glaucoma Patients and Suspects
Xin D; Talamini CL; Raza AS; De Moraes CG; Greenstein VC; Liebmann JM; Ritch R; Hood DC
Investigative Ophthalmology and Visual Science 2011; 52: 7180-7186
46924 Ganglion cell complex and retinal nerve fiber layer measured by fourier-domain optical coherence tomography for early detection of structural damage in patients with preperimetric glaucoma
Rolle T; Briamonte C; Curto D; Grignolo FM
Clinical Ophthalmology 2011; 5: 961-969
46505 Comparing the ganglion cell complex and retinal nerve fibre layer measurements by Fourier domain OCT to detect glaucoma in high myopia
Na RK; Eun SL; Gong JS; Sung YK; Ji HK; Samin H; Chan YK
British Journal of Ophthalmology 2011; 95: 1115-1121
46608 The effects of race, optic disc area, age, and disease severity on the diagnostic performance of spectral-domain optical coherence tomography
Girkin CA; Liebmann J; Fingeret M; Greenfield DS; Medeiros F
Investigative Ophthalmology and Visual Science 2011; 52: 6148-6153
47054 End-to-end pipeline for spectral domain optical coherence tomography and morphometric analysis of human optic nerve head
Lee S; Young M; Sarunic MV; Beg MF
Journal of Medical and Biological Engineering 2011; 31: 111-119
46736 Astigmatism and optical coherence tomography measurements
Hwang YH; Lee SM; Kim YY; Lee JY; Yoo C
Graefe's Archive for Clinical and Experimental Ophthalmology 2011;
46609 Diagnostic accuracy of OCT with a normative database to detect diffuse retinal nerve fiber layer atrophy: Diffuse atrophy imaging study
Jeoung JW; Kim SH; Park KH; Kim T-W; Kim DM
Investigative Ophthalmology and Visual Science 2011; 52: 6074-6080
46937 The use of optical coherence tomography for identifying retinal nerve fiber layer progressive damage
Danielescu C; Chiselita D
Oftalmologia 2010; 54: 109-114
46893 Retinal nerve fiber layer measurement and diagnostic capability of spectral-domain versus time-domain optical coherence tomography
Kaushik S; Pandav SS; Ichhpujani P; Gupta A; Gupta P
European Journal of Ophthalmology 2011; 21: 566-572
46826 Optic disc size and other parameters from optical coherence tomography in Vietnamese-Americans
Peng P-H; Fu S; Nguyen N; Porco T; Lin SC
Journal of Glaucoma 2011; 20: 355-360
46816 Comparison of optic disc parameters measured by RTVue-100 FDOCT versus HRT-II
Mesiwala NK; Pekmezci M; Huang J-Y; Porco TC; Lin SC
Journal of Glaucoma 2011;
46596 Imaging retinal nerve fiber bundles using optical coherence tomography with adaptive optics
Kocaoglu OP; Cense B; Jonnal RS; Wang Q; Lee S; Gao W; Miller DT
Vision Research 2011; 51: 1835-1844
46352 Factors associated with false positives in retinal nerve fiber layer color codes from spectral-domain optical coherence tomography
Kim NR; Lim H; Kim JH; Rho SS; Seong GJ; Kim CY
Ophthalmology 2011; 118: 1774-1781
46806 Agreement between spectral domain optical coherence tomography and retinal nerve fiber layer photography in Chinese
Wu X-S; Xu L; Jonas JB; Zhang L; Yang H; Chen C-X
Journal of Glaucoma 2011;
46798 Comparison of retinal nerve fiber layer thickness measurements using time domain and spectral domain optical coherence tomography, and visual field sensitivity
Takagishi M; Hirooka K; Baba T; Mizote M; Shiraga F
Journal of Glaucoma 2011; 20: 383-387
46459 Visualization of the lamina cribrosa using enhanced depth imaging spectral-domain optical coherence tomography
Lee EJ; Kim T-W; Weinreb RN; Park KH; Kim SH; Kim DM
American Journal of Ophthalmology 2011; 152: 87-95
46959 Polarization sensitive optical coherence tomography in the human eye
Pircher M; Hitzenberger CK; Schmidt-Erfurth U
Progress in Retinal and Eye Research 2011;
46399 Novel software strategy for glaucoma diagnosis: asymmetry analysis of retinal thickness
Asrani S; Rosdahl JA; Allingham RR
Archives of Ophthalmology 2011; 129: 1205-1211

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