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Transscleral optical coherence tomography---An experimental study in ex-vivo human eyes.

机译:Transscleral光学相干断层扫描——一个在体外实验研究人类的眼睛。

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Background and Objective To evaluate the potentials of a 1310-nm optical coherence tomography (OCT) system to penetrate the highly backscattering sclera in enucleated human eyes and provide visualization of intraocular structures by transscleral imaging. Study Design/Materials and Methods OCT-images were generated by an experimental prototype (Medical Laser Center, Lubeck, Germany) using a superluminescence diode with a wavelength of 1310 nm. OCT-images were taken from two enucleated human eyes using 100-200 axial scans with 60 Hz line scan frequency and compared to subsequent histologic sections. RESULTS: Transscleral OCT allowed penetration of the sclera and the anterior chamber angle could be completely identified. Some change within the anterior eye segment could be demonstrated with high accuracy. Additionally, limited demonstration of the ciliary body region was achieved. Due to limited signal intensity no detailed imaging of the pars plana and pars plicata region was possible. However, more posterior measurements allowed transscleral visualization of a retinal detachment. CONCLUSIONS: OCT using lightsources with a wavelength longer than that used in conventional OCT provides a promising imaging technique at high resolution allowing transscleral imaging of the anterior eye segment. Copyright 2002 Wiley-Liss, Inc.
机译:背景和客观的评价势的1310 nm光学相干断层摄影术(OCT)系统穿透高度反向散射巩膜在无核的人类的眼睛并提供可视化的眼内结构由transscleral成像。OCT-images设计/材料和方法由一个实验原型(医学激光中心,吕贝克,德国)使用1310年superluminescence二极管的波长nm。人类的眼睛用100 - 200轴向扫描60赫兹行扫描频率和后续组织学部分。允许巩膜和渗透前房角完全可以识别。段可以显示精度高。另外,有限的示范睫状体地区。信号强度没有详细的pars成像术后和pars plicata地区是可能的。然而,更多的允许后测量transscleral可视化的视网膜超然。中使用的波长更长10月传统提供了一个有前途的成像以高分辨率技术允许transscleral前眼段的成像。版权2002 Wiley-Liss公司。

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