首页> 外文期刊>Journal of optics >In vivo volumetric depth-resolved vasculature imaging of human limbus and sclera with 1 mu m swept source phase-variance optical coherence angiography
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In vivo volumetric depth-resolved vasculature imaging of human limbus and sclera with 1 mu m swept source phase-variance optical coherence angiography

机译:1μm扫描源相差光学相干血管造影技术对人角膜缘和巩膜进行体内体积深度分辨血管成像

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摘要

We present in vivo volumetric depth-resolved vasculature images of the anterior segment of the human eye acquired with phase-variance based motion contrast using a high-speed (100 kHz, 10(5) A-scans/s) swept source optical coherence tomography system (SSOCT). High phase stability SSOCT imaging was achieved by using a computationally efficient phase stabilization approach. The human corneo-scleral junction and sclera were imaged with swept source phase-variance optical coherence angiography and compared with slit lamp images from the same eyes of normal subjects. Different features of the rich vascular system in the conjunctiva and episclera were visualized and described. This system can be used as a potential tool for ophthalmological research to determine changes in the outflow system, which may be helpful for identification of abnormalities that lead to glaucoma.
机译:我们介绍了使用高速(100 kHz,10(5)A-scans / s)扫描源光学相干断层扫描基于相差基于运动对比获得的人眼前节的体内体积深度分辨血管图像系统(SSOCT)。通过使用计算有效的相位稳定方法,可以实现高相位稳定性SSOCT成像。用扫描源相差光学相干血管造影对人角膜-巩膜交界处和巩膜成像,并与正常受试者同一只眼睛的裂隙灯图像进行比较。可视化和描述了结膜和上巩膜中丰富的血管系统的不同特征。该系统可以用作眼科研究以确定流出系统变化的潜在工具,这可能有助于识别导致青光眼的异常。

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