论文标题

实时,非接触,细胞成像和人角膜和边缘的血管造影,带有普通路径全田/SDOCT

Real-time, non-contact, cellular imaging and angiography of human cornea and limbus with common-path Full-field/SDOCT

论文作者

Mazlin, Viacheslav, Xiao, Peng, Scholler, Jules, Irsch, Kristina, Grieve, Kate, Fink, Mathias, Boccara, A. Claude

论文摘要

在当今的诊所中,只有通过体内共聚焦显微镜(IVCM)与眼睛接触,才能实现角膜的细胞分辨率视图。在这里,我们提出了一个普通路径的全场/光谱域OCT显微镜(FF/SD OCT),该显微镜首次实现了整个眼表面(中央和外围角膜,山膜,巩膜,泪液,撕裂膜)的细胞触觉成像,无需实时和实时接触。该设备已在人类受试者中成功进行了测试,现在已准备好在临床研究中直接实施。实时性能是通过快速的轴向眼睛跟踪和同时进行散焦校正来实现的。从实时视频中提取的图像包含细胞和神经,这些图像可以在毫米视野中量化,超出了IVCM和常规OCT的能力。在沃格特(Vogt)的帕利斯德(Palisades),血管和血流可以通过高对比度解决而没有对比剂注射。 275帧/s(6亿像素/s)的快速成像速度允许直接监测血流动力学,从而可以首次创建高分辨率速度图。泪流速度和蒸发时间可以在没有荧光素给药的情况下测量。

In today's clinics, a cellular-resolution view of the cornea can be achieved only with an in vivo confocal microscope (IVCM) in contact with the eye. Here, we present a common-path Full-field/Spectral-domain OCT microscope (FF/SD OCT), which, for the first time, enables cell-detail imaging of the entire ocular surface (central and peripheral cornea, limbus, sclera, tear film) without contact and in real time. The device, which has been successfully tested in human subjects, is now ready for direct implementation in clinical research. Real-time performance is achieved through rapid axial eye tracking and simultaneous defocusing correction. Images, extracted from real-time videos, contain cells and nerves, which can be quantified over a millimetric field-of-view, beyond the capability of IVCM and conventional OCT. In the limbus, Palisades of Vogt, vessels and blood flow can be resolved with high contrast without contrast agent injection. The fast imaging speed of 275 frames/s (0.6 billion pixels/s) allowed direct monitoring of blood flow dynamics, enabling creation of high-resolution velocity maps for the first time. Tear flow velocity and evaporation time could be measured without fluorescein administration.

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