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Logarithmic intensity and speckle-based motion contrast methods for human retinal vasculature visualization using swept source optical coherence tomography

机译:对数强度和基于斑点的运动对比方法,用于人眼视网膜血管系统的扫频光学相干断层扫描

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We formulate a theory to show that the statistics of OCT signal amplitude and intensity are highly dependent on the sample reflectivity strength, motion, and noise power. Our theoretical and experimental results depict the lack of speckle amplitude and intensity contrasts to differentiate regions of motion from static areas. Two logarithmic intensity-based contrasts, logarithmic intensity variance (LOGIV) and differential logarithmic intensity variance (DLOGIV), are proposed for serving as surrogate markers for motion with enhanced sensitivity. Our findings demonstrate a good agreement between the theoretical and experimental results for logarithmic intensity-based contrasts. Logarithmic intensity-based motion and speckle-based contrast methods are validated and compared for in vivo human retinal vasculature visualization using high-speed swept-source optical coherence tomography (SS-OCT) at 1060 nm. The vasculature was identified as regions of motion by creating LOGIV and DLOGIV tomograms: multiple B-scans were collected of individual slices through the retina and the variance of logarithmic intensities and differences of logarithmic intensities were calculated. Both methods captured the small vessels and the meshwork of capillaries associated with the inner retina in en face images over 4 mm2 in a normal subject.
机译:我们制定了一个理论来表明,OCT信号幅度和强度的统计高度依赖于样本的反射强度,运动和噪声功率。我们的理论和实验结果表明,缺乏斑点幅度和强度对比,无法区分运动区域和静态区域。提出了两种基于对数强度的对比度,即对数强度方差(LOGIV)和微分对数强度方差(DLOGIV),以作为具有增强灵敏度的运动的替代标记。我们的发现证明了基于对数强度的对比度的理论和实验结果之间的良好一致性。验证并比较了基于对数强度的运动和基于斑点的对比方法,使用1060 nm的高速扫频光源光学相干断层扫描(SS-OCT)进行体内人视网膜脉管系统可视化。通过创建LOGIV和DLOGIV断层图,可将脉管系统识别为运动区域:通过视网膜对单个切片进行多次B线扫描,并计算对数强度的方差和对数强度的差。两种方法均捕获了正常受试者超过4 mm2的面部图像中与内部视网膜相关的细血管和毛细血管网。

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