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Using ultrahigh sensitive optical microangiography to achieve comprehensive depth resolved microvasculature mapping for human retina

机译:使用超高灵敏度光学微血管造影术实现人类视网膜的全面深度分辨微血​​管成像

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摘要

This paper presents comprehensive and depth-resolved retinal microvasculature images within human retina achieved by a newly developed ultrahigh sensitive optical microangiography (UHS-OMAG) system. Due to its high flow sensitivity, UHS-OMAG is much more sensitive to tissue motion due to the involuntary movement of the human eye and head compared to the traditional OMAG system. To mitigate these motion artifacts on final imaging results, we propose a new phase compensation algorithm in which the traditional phase-compensation algorithm is repeatedly used to efficiently minimize the motion artifacts. Comparatively, this new algorithm demonstrates at least 8 to 25 times higher motion tolerability, critical for the UHS-OMAG system to achieve retinal microvasculature images with high quality. Furthermore, the new UHS-OMAG system employs a high speed line scan CMOS camera (240 kHz A-line scan rate) to capture 500 A-lines for one B-frame at a 400 Hz frame rate. With this system, we performed a series of in vivo experiments to visualize the retinal microvasculature in humans. Two featured imaging protocols are utilized. The first is of the low lateral resolution (16 μm) and a wide field of view (4 × 3 mm2 with single scan and 7 × 8 mm2 for multiple scans), while the second is of the high lateral resolution (5 μm) and a narrow field of view (1.5 × 1.2 mm2 with single scan). The great imaging performance delivered by our system suggests that UHS-OMAG can be a promising noninvasive alternative to the current clinical retinal microvasculature imaging techniques for the diagnosis of eye diseases with significant vascular involvement, such as diabetic retinopathy and age-related macular degeneration.
机译:本文介绍了通过新开发的超高灵敏光学微血管造影(UHS-OMAG)系统获得的人视网膜内全面且深度解析的视网膜微血管图像。由于其高的流量敏感性,与传统的OMAG系统相比,由于人眼和头部的不自主运动,UHS-OMAG对组织运动更加敏感。为了减轻最终成像结果上的这些运动伪影,我们提出了一种新的相位补偿算法,其中传统的相位补偿算法被重复使用以有效地最小化运动伪影。相比之下,这种新算法显示出至少高出8到25倍的运动耐受性,这对于UHS-OMAG系统获得高质量的视网膜微血管图像至关重要。此外,新的UHS-OMAG系统采用高速线扫描CMOS相机(240 kHz A线扫描速率)以400 Hz帧速率捕获500个A线用于一个B帧。使用此系统,我们进行了一系列体内实验,以可视化人类的视网膜微脉管系统。利用了两个特色成像协议。第一个是低横向分辨率(16μm)和宽视场(单次扫描为4×3 mm 2 ,多次扫描为7×8 mm 2 ),而第二个则具有较高的横向分辨率(5μm)和狭窄的视野(单次扫描为1.5×1.2 mm 2 )。我们系统提供的出色成像性能表明,UHS-OMAG可以成为当前临床视网膜微血管成像技术的有前途的无创替代方法,用于诊断患有严重血管病变的眼部疾病,例如糖尿病性视网膜病变和年龄相关性黄斑变性。

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