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Experimental and numerical investigation on soft tissue dynamic response due to turbulence-induced arterial vibration

机译:湍流诱导的动脉振动引起的软组织动力响应的实验性和数值研究

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摘要

Peripheral arterial occlusive disease is a serious cardiovascular disorder. The arterial occlusion leads to turbulent flow and arterial sound generation on the inner vessel wall. Stenosis-induced vibro-acoustic waves propagate through the surrounding soft tissues and reach the skin surface. In this study, the feasibility of noninvasive acoustic detection of the peripheral arterial stenosis is investigated using the vibration responses by means of experimental and computational models. Latex rubber tube is used to model the artery, and it is surrounded by a tissue mimicking phantom made of bovine gelatin. Vibration responses on phantom surface are measured using laser Doppler vibrometer, and computational results are obtained performing modal analysis. Experimental findings and computational results showed well agreement in terms of spectral content and vibration amplitudes. The effects of various stenosis severities, flow rates, and phantom thicknesses on the vibration responses are investigated from diagnostic perspective. Stenosis severities greater than 70% resulted in a considerable increase in vibration amplitudes. The structural mode shapes of the tissue phantom are dominant between 0 and 100Hz, suppressing the signals generated by the stenosis. The optimum range of frequency for acoustic stenosis detection is concluded to be between 200 and 500Hz, particularly around 300Hz.
机译:外周动脉闭塞性疾病是一种严重的心血管疾病。动脉闭塞导致内部血管壁上的湍流流动和动脉发声。狭窄诱导的振动声波通过周围的软组织传播并到达皮肤表面。在这项研究中,通过通过实验和计算模型使用振动响应来研究非侵入式声学检测的可行性。乳胶橡胶管用于模拟动脉,它被模仿由牛明胶制成的幻影包围。使用激光多普勒振动计测量体模表面上的振动响应,并且获得计算结果进行模态分析。实验结果和计算结果在光谱含量和振动幅度方面表现出良好的一致性。研究了各种狭窄狭窄,流速和幻象厚度对振动响应的效果。狭窄的严重程度大于70%导致振动振幅大幅增加。组织幻像的结构模式形状在0到100Hz之间的主导地位,抑制了狭窄产生的信号。声学狭窄检测的最佳频率范围达到200至500Hz之间,特别是300Hz。

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