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Regression-based algorithm for bulk motion subtraction in optical coherence tomography angiography

机译:基于回归的光学相干断层扫描血管造影中整体运动相减算法

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摘要

We developed an algorithm to remove decorrelation noise due to bulk motion in optical coherence tomography angiography (OCTA) of the posterior eye. In this algorithm, OCTA B-frames were divided into segments within which the bulk motion velocity could be assumed to be constant. This velocity was recovered using linear regression of decorrelation versus the logarithm of reflectance in axial lines (A-lines) identified as bulk tissue by percentile analysis. The fitting parameters were used to calculate a reflectance-adjusted upper bound threshold for bulk motion decorrelation. Below this threshold, voxels are identified as non-flow tissue, their flow values are set to zeros. Above this threshold, the voxels are identified as flow voxels and bulk motion velocity is subtracted from each using a nonlinear decorrelation-velocity relationship previously established in laboratory flow phantoms. Compared to the simpler median-subtraction method, the regression-based bulk motion subtraction improved angiogram signal-to-noise ratio, contrast, vessel density repeatability, and bulk motion noise cleanup in the foveal avascular zone, while preserving the connectivity of the vascular networks in the angiogram.
机译:我们开发了一种算法,以消除由于后眼光学相干断层扫描血管造影(OCTA)中的整体运动而引起的去相关噪声。在该算法中,将OCTA B帧划分为多个部分,在这些部分中可以假定整体运动速度是恒定的。使用去相关的线性回归相对于通过百分比分析确定为整体组织的轴线(A线)中反射率的对数的线性回归来恢复该速度。拟合参数用于计算整体运动解相关的反射率调整上限阈值。低于此阈值,将体素识别为非流动组织,其流动值设置为零。高于此阈值,将体素识别为流动体素,并使用先前在实验室流动体模中建立的非线性解相关-速度关系从每个体素中减去体速度。与简单的中值减法相比,基于回归的整体运动减法改善了中心凹无血管区域的血管造影信噪比,对比度,血管密度重复性和整体运动噪声清除,同时保留了血管网络的连通性在血管造影中。

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