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Differential intensity contrast swept source optical coherence tomography for human retinal vasculature visualization

机译:差分强度对比扫频源光学相干断层扫描技术用于人眼视网膜血管成像

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摘要

We demonstrate an intensity-based motion sensitive method, called differential logarithmic intensity variance (DLOGIV), for 3D microvasculature imaging and foveal avascular zone (FAZ) visualization in the in vivo human retina using swept source optical coherence tomography (SS-OCT) at 1060 run. A motion sensitive SS-OCT system was developed operating at 50,000 A-lines/s with 5.9 urn axial resolution, and used to collect 3D images over 4 mm~2 in a normal subject eye. Multiple B-scans were acquired at each individual slice through the retina and the variance of differences of logarithmic intensities as well as the differential phase variances (DPV) was calculated to identify regions of motion (microvasculature). En face DLOGIV image were capable of capturing the microvasculature through depth with an equal performance compared to the DPV.
机译:我们展示了一种基于强度的运动敏感方法,称为对数对数强度方差(DLOGIV),用于在1060年使用扫频光源光学相干断层扫描(SS-OCT)在体内人视网膜中进行3D微脉管系统成像和中央凹无血管区域(FAZ)可视化跑。开发了一种运动敏感的SS-OCT系统,该系统以50,000线/秒的速度运行,轴向分辨率为5.9 um,用于在正常对象的眼睛中收集4 mm〜2以上的3D图像。通过视网膜在每个单独的切片上进行多次B扫描,计算对数强度差异的方差以及微分相位方差(DPV)以识别运动区域(微脉管系统)。与DPV相比,Enface DLOGIV图像能够以相同的性能捕获整个深度的微脉管系统。

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