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Real-time retinal blood flow imaging with Fourier Domain Optical Coherence Tomography

机译:傅里叶域光学相干层析成像技术实时进行视网膜血流成像

摘要

Optical Coherence Tomography (OCT) is a non-invasive micrometer-resolution depth resolved medical imaging tool for diagnostic visualization of the retinal structures in vivo. In this thesis, we first describe the capability of OCT for providing structural information by quantitative retinal thickness measurements in animal models of diseases causing vision loss. In the rest of the work described in this thesis, we focus on the development of an extension of OCT called speckle variance (sv) OCT, which provides functional information such as detecting capillaries within in the retina. Retinal capillary networks are critically linked to retinal neuronal health and disease. The ability to perform accurate in vivo examination of human retinal capillary networks is therefore valuable for studying mechanisms that govern retinal homeostasis and retinal vascular diseases. A real-time implementation of the svOCT provided by the GPU acceleration was described to provide visualization of en-face vasculature networks during acquisition. A qualitative comparison study was described in this thesis by comparing the retinal vasculature images acquired from svOCT and Florescence Angiography (FA) for both healthy and diseased patients. The capability of svOCT with respect to quantifying capillary network information has been also validated in this thesis. The results of these studies suggest that this GPU accelerated svOCT has the potential to non-invasively provide useful quantitative information about human retinal capillary networks, and may have clinical and research applications for the management of retinal microvascular diseases, a major cause of vision loss worldwide. To further adapt the svOCT to be more clinical friendly, preliminary work on enhancing the real-time visualization of vascular information from distinct retinal capillary beds during acquisition was proposed and implemented in this thesis.
机译:光学相干断层扫描(OCT)是一种非侵入性的微米分辨率深度分辨医学成像工具,用于体内可视化视网膜结构。在本文中,我们首先描述了在造成视力丧失的疾病动物模型中,OCT通过定量视网膜厚度测量提供结构信息的能力。在本文所描述的其余工作中,我们将重点放在称为斑点散斑(sv)OCT的OCT扩展的开发上,该扩展提供了功能信息,例如检测视网膜内的毛细血管。视网膜毛细血管网络与视网膜神经元的健康和疾病至关重要。因此,对人的视网膜毛细血管网络进行准确的体内检查的能力对于研究控制视网膜稳态和视网膜血管疾病的机制非常有价值。描述了GPU加速提供的svOCT的实时实现,可在采集过程中提供面部血管网络的可视化。本文通过比较从svOCT和荧光血管造影(FA)获得的健康和患病患者的视网膜血管图像进行了定性比较研究。本文还验证了svOCT在量化毛细管网络信息方面的能力。这些研究的结果表明,这种GPU加速的svOCT有潜力无创地提供有关人类视网膜毛细血管网的有用的定量信息,并且可能在管理视网膜微血管疾病方面有临床和研究应用,视网膜微血管疾病是全世界视力丧失的主要原因。为了进一步使svOCT适应临床需求,在本文中提出并实施了关于增强获取过程中来自不同视网膜毛细血管床的血管信息实时可视化的初步工作。

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    Xu Jing;

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