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Combined ARFI Variance of Acceleration (VoA), Vector Flow, and Wall Shear Stress for Assessing Atherosclerotic Risk: Ex-Vivo Human Cadaveric Results

机译:结合的ARFI加速度方差(VoA),矢量流和壁切应力评估动脉粥样硬化风险:前人的尸体结果

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Vascular hemodynamics and plaque composition are better indicators of stroke risk than degrees of stenosis alone. In silico work previously indicated that the acoustic radiation force impulse (ARFI) derived parameter, variance of acceleration (VoA), may be implemented with plane wave (PW) acquisitions to offer a high frame rate method of differentiating plaque components. Vector flow imaging methods such as multi-angle plane wave vector Doppler further allow 2D blood flow tracking and assessments of wall shear stress (WSS) to better predict rupture potential. We hypothesize ARFI VoA and plane wave vector Doppler may be efficiently combined to interrogate plaque structure and composition and estimate WSS in human carotid arteries. While focused ARFI - VoA best predicts feature size compared to PW acquisitions, PW ARFI-VoA offers comparable resolution, but contrast of lower SNR features is reduced. The PW ARFI-VoA sequence may be supplemented with a steered PW sequence to additionally visualize blood flow and estimate wall shear stress at potential real time frame rates. This work demonstrates the feasibility of the technique to an ex-vivo left carotid from a recently deceased 63-year-old female.
机译:与仅狭窄程度相比,血管血流动力学和斑块组成是卒中风险的更好指标。先前在计算机工作中指出,声辐射力脉冲(ARFI)得出的参数,加速度方差(VoA)可以用平面波(PW)采集来实现,以提供区分斑块成分的高帧频方法。诸如多角度平面波矢量多普勒之类的矢量流成像方法进一步允许2D血流跟踪和壁切应力(WSS)评估,以更好地预测破裂可能性。我们假设ARFI VoA和平面波矢量多普勒可以有效地组合以询问斑块的结构和组成,并估计人颈动脉中的WSS。与PW采集相比,专注于ARFI-VoA可以最好地预测特征尺寸,而PW ARFI-VoA提供可比的分辨率,但是降低了较低SNR特征的对比度。 PW ARFI-VoA序列可以补充有操纵的PW序列,以附加地可视化血流并以潜在的实时帧速率估算壁切应力。这项工作证明了该技术对刚去世的63岁女性离体左颈动脉的可行性。

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