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Imaging and characterizing shear wave and shear modulus under orthogonal acoustic radiation force excitation using OCT Doppler variance method

机译:使用OCT多普勒方差法对正交声辐射力激发下的剪切波和剪切模量进行成像和表征

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摘要

We report on a novel acoustic radiation force orthogonal excitation optical coherence elastography (ARFOE-OCE) technique for imaging shear wave and quantifying shear modulus under orthogonal acoustic radiation force (ARF) excitation using the optical coherence tomography (OCT) Doppler variance method. The ARF perpendicular to the OCT beam is produced by a remote ultrasonic transducer. A shear wave induced by ARF excitation propagates parallel to the OCT beam. The OCT Doppler variance method, which is sensitive to the transverse vibration, is used to measure the ARF-induced vibration. For analysis of the shear modulus, the Doppler variance method is utilized to visualize shear wave propagation instead of Doppler OCT method, and the propagation velocity of the shear wave is measured at different depths of one location with the M scan. In order to quantify shear modulus beyond the OCT imaging depth, we move ARF to a deeper layer at a known step and measure the time delay of the shear wave propagating to the same OCT imaging depth. We also quantitatively map the shear modulus of a cross-section in a tissue-equivalent phantom after employing the B scan.
机译:我们报告了一种新颖的声辐射力正交激发光学相干弹性成像技术(ARFOE-OCE),用于成像剪切波并使用光学相干层析成像(OCT)多普勒方差方法在正交声辐射力(ARF)激发下量化剪切模量。垂直于OCT束的ARF由远程超声换能器产生。由ARF激发引起的剪切波平行于OCT束传播。对横向振动敏感的OCT多普勒方差法用于测量ARF引起的振动。为了分析剪切模量,使用多普勒方差法而不是多普勒OCT方法可视化剪切波的传播,并使用M扫描在一个位置的不同深度测量剪切波的传播速度。为了量化超出OCT成像深度的剪切模量,我们在已知步骤将ARF移动到更深的层,并测量传播到相同OCT成像深度的剪切波的时间延迟。在使用B扫描后,我们还定量映射了组织等效体模中横截面的剪切模量。

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