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In vivo volumetric imaging of human retinal circulation with phase-variance optical coherence tomography

机译:相变光学相干层析成像技术在人视网膜循环中的体内体积成像

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We present in vivo volumetric images of human retinal micro-circulation using Fourier-domain optical coherence tomography (Fd-OCT) with the phase-variance based motion contrast method. Currently fundus fluorescein angiography (FA) is the standard technique in clinical settings for visualizing blood circulation of the retina. High contrast imaging of retinal vasculature is achieved by injection of a fluorescein dye into the systemic circulation. We previously reported phase-variance optical coherence tomography (pvOCT) as an alternative and non-invasive technique to image human retinal capillaries. In contrast to FA, pvOCT allows not only noninvasive visualization of a two-dimensional retinal perfusion map but also volumetric morphology of retinal microvasculature with high sensitivity. In this paper we report high-speed acquisition at 125 kHz A-scans with pvOCT to reduce motion artifacts and increase the scanning area when compared with previous reports. Two scanning schemes with different sampling densities and scanning areas are evaluated to find optimal parameters for high acquisition speed in vivo imaging. In order to evaluate this technique, we compare pvOCT capillary imaging at 3x3 mm2 and 1.5x1.5 mm2 with fundus FA for a normal human subject. Additionally, a volumetric view of retinal capillaries and a stitched image acquired with ten 3x3 mm2 pvOCT sub-volumes are presented. Visualization of retinal vasculature with pvOCT has potential for diagnosis of retinal vascular diseases.
机译:我们提出基于傅立叶域光学相干断层扫描(Fd-OCT)与基于相差的运动对比方法的人类视网膜微循环的体内体积图像。目前,眼底荧光血管造影(FA)是临床环境中用于可视化视网膜血液循环的标准技术。视网膜血管系统的高对比度成像是通过将荧光素染料注入体循环来实现的。我们先前报道了相差光学相干断层扫描(pvOCT)作为对人类视网膜毛细血管成像的替代性和非侵入性技术。与FA相比,pvOCT不仅允许二维视网膜灌注图的无创可视化,而且允许视网膜微脉管系统的体积形态具有高灵敏度。在本文中,我们报告了使用pvOCT在125 kHz A扫描下进行高速采集,与以前的报告相比,可以减少运动伪像并增加扫描面积。对具有不同采样密度和扫描面积的两种扫描方案进行了评估,以找到用于体内成像高采集速度的最佳参数。为了评估该技术,我们将正常人受试者在3x3 mm2和1.5x1.5 mm2的pvOCT毛细管成像与眼底FA进行了比较。此外,还提供了视网膜毛细血管的体积图和用十个3x3 mm2 pvOCT子体积获取的缝合图像。用pvOCT可视化视网膜血管具有诊断视网膜血管疾病的潜力。

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