In vivo optical biopsy of the human retina using optical coherence tomography

被引:2
作者
Drexler, W [1 ]
Ghanta, RK [1 ]
Schuman, JS [1 ]
Ko, T [1 ]
Morgner, U [1 ]
Kärtner, FX [1 ]
Fujimoto, JG [1 ]
机构
[1] MIT, Dept Elect Engn & Comp Sci, Cambridge, MA 02139 USA
来源
COHERENCE DOMAIN OPTICAL METHODS IN BIOMEDICAL SCIENCE AND CLINICA APPLICATIONS V | 2001年 / 4251卷
关键词
optical coherence tomography; optical biopsy; Ti : Al2O3 laser; retinal imaging; ophthalmology;
D O I
10.1117/12.427892
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Using state of the art laser technology, third generation ophthalmologic optical coherence tomography (OCT) has been developed which enables ultrahigh resolution, non-invasive in vivo imaging of retinal morphology with an unprecedented axial resolution of 3 mum This represents a quantum leap in performance over the 10-15 mum resolution currently available in ophthalmic OCT systems and, to our knowledge, is the highest resolution in vivo ophthalmologic imaging achieved to date. This resolution enables optical biopsy, i.e. the in vivo visualization of intraretinal architectural morphology which had previously only been possible with histopathology. Image processing and segmentation techniques are demonstrated for automatic identification and quantification of retinal morphology. Ultrahigh resolution ophthalmic OCT has the potential to enhance the sensitivity and specificity for early diagnosis of several ocular diseases, e.g. glaucoma, which requires precise imaging and measurement of retinal nerve fiber layer thickness, as well as improve monitoring of disease progression and efficacy of therapy.
引用
收藏
页码:183 / 187
页数:5
相关论文
共 18 条
[1]  
Bamber JC., 1988, PHYS MED IMAGING, P319
[2]  
BILLE JF, 1990, NONINVASIVE DIAGNOST, P528
[3]   Optical coherence tomography: High-resolution imaging in nontransparent tissue [J].
Brezinski, ME ;
Fujimoto, JG .
IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 1999, 5 (04) :1185-1192
[4]   In vivo ultrahigh-resolution optical coherence tomography [J].
Drexler, W ;
Morgner, U ;
Kärtner, FX ;
Pitris, C ;
Boppart, SA ;
Li, XD ;
Ippen, EP ;
Fujimoto, JG .
OPTICS LETTERS, 1999, 24 (17) :1221-1223
[5]  
Fercher A F, 1996, J Biomed Opt, V1, P157, DOI 10.1117/12.231361
[6]   OPTICAL BIOPSY AND IMAGING USING OPTICAL COHERENCE TOMOGRAPHY [J].
FUJIMOTO, JG ;
BREZINSKI, ME ;
TEARNEY, GJ ;
BOPPART, SA ;
BOUMA, B ;
HEE, MR ;
SOUTHERN, JF ;
SWANSON, EA .
NATURE MEDICINE, 1995, 1 (09) :970-972
[7]   Optical coherence tomography: An emerging technology for biomedical imaging and optical biopsy [J].
Fujimoto, JG ;
Pitris, C ;
Boppart, SA ;
Brezinski, ME .
NEOPLASIA, 2000, 2 (1-2) :9-25
[8]  
Gass J., 1997, Stereoscopic atlas of macular diseases. Diagnosis and treatment, V1, P304
[9]   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
[10]   REAL-TIME SCANNING SLIT CONFOCAL MICROSCOPY OF THE IN-VIVO HUMAN CORNEA [J].
MASTERS, BR ;
THAER, AA .
APPLIED OPTICS, 1994, 33 (04) :695-701