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具有周围软组织的狭窄动脉模型的流致振动分析

Flow-induced vibration analysis of constricted artery models with surrounding soft tissue.

作者信息

Salman Huseyin Enes, Yazicioglu Yigit

机构信息

Department of Mechanical Engineering, Middle East Technical University, Dumlupinar Street Number 1, 06800, Ankara, Turkey.

出版信息

J Acoust Soc Am. 2017 Oct;142(4):1913. doi: 10.1121/1.5005622.

Abstract

Arterial stenosis is a vascular pathology which leads to serious cardiovascular diseases. Blood flow through a constriction generates sound and vibration due to fluctuating turbulent pressures. Generated vibro-acoustic waves propagate through surrounding soft tissues and reach the skin surface and may provide valuable insight for noninvasive diagnostic purposes. Motivated by the aforementioned phenomena, vibration of constricted arteries is investigated employing computational models. The flow-induced pressure field in an artery is modeled as broadband harmonic pressure loading based on previous studies in the literature and applied on the inner artery wall. Harmonic analysis is performed for determining radial velocity responses on the outer surface of the models. Results indicate that stenosis severities higher than 70% lead to significant increase in response amplitudes, especially at high frequencies between 250 and 600 Hz. The findings agree well with experimental and theoretical results in the literature considering bending mode frequencies, amplitude scales, and mainly excited frequency ranges. It is seen that artery vibration is sensitive to the phase behavior of pressure loading but its effect becomes less significant with the presence of surrounding tissue. As the surrounding tissue thickness increases, radial velocity response amplitudes decrease but the effect of changes in tissue elastic modulus is more pronounced.

摘要

动脉狭窄是一种会导致严重心血管疾病的血管病变。由于压力波动产生湍流,血液流经狭窄处时会产生声音和振动。产生的振动声波通过周围软组织传播并到达皮肤表面,可为无创诊断提供有价值的信息。受上述现象的启发,利用计算模型研究了狭窄动脉的振动。基于文献中先前的研究,将动脉中的流动诱导压力场建模为宽带谐波压力载荷,并应用于动脉内壁。进行谐波分析以确定模型外表面的径向速度响应。结果表明,狭窄程度高于70%会导致响应幅度显著增加,尤其是在250至600赫兹的高频范围内。这些发现与文献中关于弯曲模式频率、振幅尺度和主要激发频率范围的实验和理论结果非常吻合。可以看出,动脉振动对压力载荷的相位行为敏感,但随着周围组织的存在,其影响变得不那么显著。随着周围组织厚度的增加,径向速度响应幅度减小,但组织弹性模量变化的影响更为明显。

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