Quantification of photoreceptor layer thickness in normal eyes using optical coherence tomography

被引:45
作者
Chan, Annie
Duker, Jay S.
Ishikawa, Hiroshi
Ko, Tony H.
Schuman, Joel S.
Fujimoto, James G.
机构
[1] Tufts Univ, New England Med Ctr, New England Eye Ctr, Sch Med, Boston, MA 02111 USA
[2] Univ Pittsburgh, Sch Med, Ctr Eye, Dept Ophthalmol,Med Ctr, Pittsburgh, PA 15260 USA
[3] MIT, Dept Elect Engn & Comp Sci, Res Lab Elect, Cambridge, MA 02139 USA
来源
RETINA-THE JOURNAL OF RETINAL AND VITREOUS DISEASES | 2006年 / 26卷 / 06期
关键词
optical coherence tomography; photoreceptor; retinal imaging;
D O I
10.1097/00006982-200607000-00011
中图分类号
R77 [眼科学];
学科分类号
100212 ;
摘要
Objective: To demonstrate the ability to segment and analyze individual intraretinal layers, including the outer retinal complex (ORC; outer nuclear layer and inner and outer segments of the photoreceptor cells), in healthy eyes using images acquired from the latest commercially available optical coherence tomography (OCT) system (StratusOCT; Carl Zeiss Meditec, Inc., Dublin, CA) and from the ultrahigh resolution OCT (UHR-OCT) prototype. Methods: Thirty-seven eyes from 37 healthy subjects underwent complete ophthalmologic examination using StratusOCT and UHR-OCT. ORC was identified and measured using a segmentation algorithm. Results: For StratusOCT, mean weighted ORC thickness +/- SD was 91.1 +/- 7.9 mu m, and mean weighted total retinal thickness +/- SD was determined to be 258.9 +/- 10.1 mu m. For UHR-OCT, mean weighted ORC thickness SD was 96.4 +/- 6.3 mu m, and mean weighted total retinal thickness +/- SD was determined to be 263.4 +/- 9.2 mu m. There was a higher rate of algorithm failure with UHR-OCT images. Conclusions: Photoreceptor layer thickness can be calculated by measuring ORC on OCT images using a macular segmentation algorithm. ORC values may serve as a useful objective parameter in determining the efficacy of various therapeutic modalities that target the photoreceptor layer in various diseases.
引用
收藏
页码:655 / 660
页数:6
相关论文
共 19 条
[1]   Ultrahigh resolution optical coherence tomography of the monkey fovea. Identification of retinal sublayers by correlation with semithin histology sections [J].
Anger, EM ;
Unterhuber, A ;
Hermann, B ;
Sattmann, H ;
Schubert, C ;
Morgan, JE ;
Cowey, A ;
Ahnelt, PK ;
Drexler, W .
EXPERIMENTAL EYE RESEARCH, 2004, 78 (06) :1117-1125
[2]  
FANKHAUSER F, 1961, Am J Ophthalmol, V52, P767
[3]   Histologic correlation of pig retina radial stratification with ultrahigh-resolution optical coherence tomography [J].
Gloesmann, M ;
Hermann, B ;
Schubert, C ;
Sattmann, H ;
Ahnelt, PK ;
Drexler, W .
INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2003, 44 (04) :1696-1703
[4]   QUANTITATIVE ASSESSMENT OF MACULAR EDEMA WITH OPTICAL COHERENCE TOMOGRAPHY [J].
HEE, MR ;
PULIAFITO, CA ;
WONG, C ;
DUKER, JS ;
REICHEL, E ;
RUTLEDGE, B ;
SCHUMAN, JS ;
SWANSON, EA ;
FUJIMOTO, JG .
ARCHIVES OF OPHTHALMOLOGY, 1995, 113 (08) :1019-1029
[5]   OPTICAL COHERENCE TOMOGRAPHY OF THE HUMAN RETINA [J].
HEE, MR ;
IZATT, JA ;
SWANSON, EA ;
HUANG, D ;
SCHUMAN, JS ;
LIN, CP ;
PULIAFITO, CA ;
FUJIMOTO, JG .
ARCHIVES OF OPHTHALMOLOGY, 1995, 113 (03) :325-332
[6]  
HEE MR, 1998, TOPOGRAPHY DIABETIC, V105, P36
[7]   THE DEVELOPMENT OF PARAFOVEAL AND MID-PERIPHERAL HUMAN RETINA [J].
HENDRICKSON, A ;
DRUCKER, D .
BEHAVIOURAL BRAIN RESEARCH, 1992, 49 (01) :21-31
[8]  
HERMANN B, 2004, QUANTIFICATION PHOTO
[9]   Photoreceptor inner segments in monkey and human retina: Mitochondrial density, optics, and regional variation [J].
Hoang, QV ;
Linsenmeier, RA ;
Chung, CK ;
Curcio, CA .
VISUAL NEUROSCIENCE, 2002, 19 (04) :395-407
[10]   OPTICAL COHERENCE TOMOGRAPHY [J].
HUANG, D ;
SWANSON, EA ;
LIN, CP ;
SCHUMAN, JS ;
STINSON, WG ;
CHANG, W ;
HEE, MR ;
FLOTTE, T ;
GREGORY, K ;
PULIAFITO, CA ;
FUJIMOTO, JG .
SCIENCE, 1991, 254 (5035) :1178-1181