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Optical microangiography of retina and choroid and measurement of total retinal blood flow in mice

机译:小鼠视网膜和脉络膜的光学微血管造影和视网膜总血流的测量

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摘要

We present a novel application of optical microangiography (OMAG) imaging technique for visualization of depth-resolved vascular network within retina and choroid as well as measurement of total retinal blood flow in mice. A fast speed spectral domain OCT imaging system at 820nm with a line scan rate of 140 kHz was developed to image the posterior segment of eyes in mice. By applying an OMAG algorithm to extract the moving blood flow signals out of the background tissue, we are able to provide true capillary level imaging of the retinal and choroidal vasculature. The microvascular patterns within different retinal layers are presented. An en face Doppler OCT approach [Srinivasan et al., Opt Express 18, 2477 (2010)] was adopted for retinal blood flow measurement. The flow is calculated by integrating the axial blood flow velocity over the vessel area measured in an en face plane without knowing the blood vessel angle. Total retinal blood flow can be measured from both retinal arteries and veins. The results indicate that OMAG has the potential for qualitative and quantitative evaluation of the microcirculation in posterior eye compartments in mouse models of retinopathy and neovascularization.
机译:我们目前的光学微血管造影(OMAG)成像技术的一种新型应用,用于可视化视网膜和脉络膜内的深度分辨血管网络以及小鼠总视网膜血流的测量。开发了一种在820nm处具有140 kHz线扫描速率的快速光谱域OCT成像系统,以对小鼠的眼后段成像。通过应用OMAG算法从背景组织中提取运动的血流信号,我们能够提供视网膜和脉络膜脉管系统的真实毛细血管水平成像。呈现了不同视网膜层内的微血管模式。视网膜多普勒OCT方法[Srinivasan等,Opt Express 18,2477(2010)]用于视网膜血流测量。通过在不知道血管角度的情况下对在面平面内测量的整个血管区域的轴向血液流速进行积分来计算流量。可以从视网膜动脉和静脉测量视网膜总血流量。结果表明,OMAG具有对视网膜病变和新血管形成小鼠模型中后眼区微循环进行定性和定量评估的潜力。

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