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Retinal angiography with real-time speckle variance optical coherence tomography

机译:实时散斑方差光学相干断层扫描技术进行视网膜血管造影

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摘要

This report describes a novel, non-invasive and label-free optical imaging technique, speckle variance optical coherence tomography (svOCT), for visualising blood flow within human retinal capillary networks. This imaging system uses a custom-built swept source OCT system operating at a line rate of 100 kHz. Real-time processing and visualisation is implemented on a consumer grade graphics processing unit. To investigate the quality of microvascular detail acquired with this device we compared images of human capillary networks acquired with svOCT and fluorescein angiography. We found that the density of capillary microvasculature acquired with this svOCT device was visibly greater than fluorescein angiography. We also found that this svOCT device had the capacity to generate en face images of distinct capillary networks that are morphologically comparable with previously published histological studies. Finally, we found that this svOCT device has the ability to non-invasively illustrate the common manifestations of diabetic retinopathy and retinal vascular occlusion. The results of this study suggest that graphics processing unit accelerated svOCT has the potential to non-invasively provide useful quantitative information about human retinal capillary networks. Therefore svOCT may have clinical and research applications for the management of retinal microvascular diseases, which are a major cause of visual morbidity worldwide.
机译:本报告介绍了一种新颖的,无创且无标签的光学成像技术,即散斑方差光学相干断层扫描(svOCT),用于可视化人类视网膜毛细血管网络内的血流。此成像系统使用以100 kHz的线速运行的定制扫频源OCT系统。实时处理和可视化在消费级图形处理单元上实现。为了调查使用此设备获得的微血管细节的质量,我们比较了用svOCT和荧光素血管造影术获得的人毛细血管网络的图像。我们发现用此svOCT设备获得的毛细血管的密度明显大于荧光素血管造影。我们还发现,该svOCT设备具有生成不同毛细血管网络的面部图像的能力,这些图像在形态上与以前发表的组织学研究相当。最后,我们发现该svOCT设备具有非侵入性地说明糖尿病性视网膜病变和视网膜血管阻塞的常见表现的能力。这项研究的结果表明,图形处理单元加速的svOCT有潜力以非侵入性的方式提供有关人类视网膜毛细血管网的有用的定量信息。因此,svOCT在视网膜微血管疾病的管理方面可能具有临床和研究应用,而视网膜微血管疾病是全世界视觉发病的主要原因。

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