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Implementations of three OCT angiography (OCTA) methods with 1.7 MHz A-scan rate OCT system on imaging of human retinal and choroidal vasculature

机译:具有1.7MHz A扫描速率OCT系统的三八八八型血管造影(OCTA)方法的实施方法 - 人类视网膜和脉络膜脉管系统成像

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We present noninvasive depth-resolved imaging of human retinal and choroidal microcirculation with an ultrahigh-speed (1.7 MHz A-scans/s), Fourier-domain mode locked (FDML) swept-source optical coherence tomography (SS-OCT) system having a central wavelength of 1065 nm. Three OCT angiography (OCTA) motion based contrast methods, namely phase variance (PV), amplitude decorrelation (AD) and Joint Spectral and Time domain OCT (STdOCT) were implemented. The OCTA imaging was performed with a field of view of 16 (5 mm x 5 mm) and 30 degrees (9 mm x 9 mm), on the retina. A qualitative comparison of images obtained with all three OCTA methods is demonstrated using the same eye of a healthy volunteer. Different parameters, namely acquisition time, scanning area, and scanning density, are discussed. The phase-variance OCTA (PV-OCTA) method produced relatively better results than the other two. Different features regarding the retinal and choroidal vessels are described in different subjects. (C) 2017 Elsevier Ltd. All rights reserved.
机译:我们用超高速度(1.7MHz A-Scans / s),傅立叶域模式锁定(FDML)扫描源光学相干断层扫描(SS-OCT)系统,呈现人视网膜和脉络膜微循环的非侵入性深度分辨成像中心波长为1065 nm。实施了三个OCT血管造影(OCTA)运动基于对比度方法,即相差(PV),幅度去相关(AD)和联合光谱和时域10月(STDOCT)。在视网膜上使用16(5mm×5mm)和30度(9mm×9mm)的视场进行Octa成像。使用所有三种Octa方法获得的图像的定性比较使用健康志愿者的同一眼睛来证明。讨论了不同的参数,即采集时间,扫描区域和扫描密度。相 - 方差OctA(PV-OCTA)方法产生的结果比另外两个相对较好。关于视网膜和脉络膜容器的不同特征在不同的受试者中描述。 (c)2017 Elsevier Ltd.保留所有权利。

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