首页> 外文期刊>Journal of Biomechanics >The influence of vessel wall elasticity and peripheral resistance on the carotid artery flow wave form: a CFD model compared to in vivo ultrasound measurements.
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The influence of vessel wall elasticity and peripheral resistance on the carotid artery flow wave form: a CFD model compared to in vivo ultrasound measurements.

机译:血管壁弹性和外周阻力对颈动脉血流波形的影响:与体内超声测量相比的CFD模型。

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摘要

The Doppler flow wave form and its derived measures such as the pulsatility index provide clinically important tools for the investigation of arterial disease. The typical shape of Doppler flow wave forms is physiologically known to be largely determined by both peripheral resistance and elastic properties of the arterial wall. In the present study we systematically investigate the influence of both vessel wall elasticity and peripheral resistance on the flow wave form obtained from a CFD-simulation of blood flow in the carotid bifurcation. Numerical results are compared to in vivo ultrasound measurements. The in vivo measurement provides a realistic geometry, local elasticities and an input flow wave form for the numerical experiment. Numerical and experimental results are compared at three different sites in the carotid branches. Peripheral resistance has a profoundly decreasing effect on velocities in the external carotid artery. If elasticity is taken into account, the computed peak systolic velocities are considerably lower and a more realistic smoothing of the flow wave form is found. Together, the results indicate that only if both vessel wall elasticity and positive peripheral resistance are taken into account, experimentally obtained Doppler flow wave forms can be reproduced numerically.
机译:多普勒血流波形及其衍生指标(例如搏动指数)为研究动脉疾病提供了重要的临床工具。从生理学上已知多普勒流动波形的典型形状主要由动脉壁的外周阻力和弹性性质决定。在本研究中,我们系统地研究了血管壁弹性和外周阻力对颈动脉分叉处血流CFD模拟获得的流波形的影响。将数值结果与体内超声测量结果进行比较。体内测量为数值实验提供了逼真的几何形状,局部弹性和输入流动波形。数值和实验结果在颈动脉分支的三个不同位置进行了比较。外周阻力对颈外动脉的速度有极大的降低作用。如果考虑到弹性,则计算出的峰值收缩速度会大大降低,并且可以发现更实际的流动波形平滑。总之,结果表明,只有同时考虑血管壁弹性和正的外周阻力,才能以数值方式再现通过实验获得的多普勒血流波形。

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