光学相干层析成像
角膜
IRIS(生物传感器)
断层摄影术
人工晶状体
光学
镜头(地质)
眼前节
材料科学
生物医学工程
医学
眼科
物理
计算机科学
计算机视觉
生物识别
作者
Joseph A. Izatt,Michael R. Hee,Eric A. Swanson,Charles P. Lin,David Huang,Joel S. Schuman,Carmen A. Puliafito,James G. Fujimoto
出处
期刊:Archives of Ophthalmology
[American Medical Association]
日期:1994-12-01
卷期号:112 (12): 1584-1584
被引量:807
标识
DOI:10.1001/archopht.1994.01090240090031
摘要
To demonstrate a new diagnostic technique, optical coherence tomography, for high-resolution cross-sectional imaging of structures in the anterior segment of the human eye in vivo. Optical coherence tomography is a new, noninvasive, noncontact optical imaging modality that has spatial resolution superior to that of conventional clinical ultrasonography (< 20 microns) and high sensitivity (dynamic range, > 90 dB).Survey of intraocular structure and dimension measurements.Laboratory.Convenience sample.Correlation with range of accepted normal intraocular structure profiles and dimensions.Direct in vivo measurements with micrometer-scale resolution were performed of corneal thickness and surface profile (including visualization of the corneal epithelium), anterior chamber depth and angle, and iris thickness and surface profile. Dense nuclear cataracts were successfully imaged through their full thickness in a cold cataract model in calf eyes in vitro.Optical coherence tomography has potential as a diagnostic tool for applications in noncontact biometry, anterior chamber angle assessment, identification and monitoring of intraocular masses and tumors, and elucidation of abnormalities of the cornea, iris, and crystalline lens.
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