大脑中动脉半径变化对血流动力学参数的影响

W. Wolański, M. Sobkowiak-Pilorz, M. Ples, E. Kawlewska, W. Kaspera
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引用次数: 1

摘要

本文研究了大脑中动脉形态特征(即进、出口分支直径)的变化对动脉壁-壁剪应力(WSS)和压力发生的血流动力学参数值的影响。数值计算采用ANSYS CFX软件。基于患者的实际人体测量MCA测量,建立了血管的参数化模型。通过改变单个动脉分支的半径进行了三次优化。这项研究的目的是验证穆雷定律在最低压力和压力值下的适用性。采用前面仿真计算的最优分岔角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EFFECT OF RADIUS CHANGES OF MIDDLE CEREBRAL ARTERY (MCA) ON HEMODYNAMIC PARAMETERS
: The article describes the study of the influence of the change in the morphometric features of the middle cerebral artery, i.e. inlet and outlet branch diameters on the values of hemodynamic parameters occurring on the arterial wall – wall shear stress (WSS) and pressure. For numerical calculations ANSYS CFX software was used. A parametric model of the vessel was developed, based on actual anthropometric MCA measurements of patients. Three optimizations were performed by changing individual radius of the arterial branches. The aim of the study was to verify Murray's law for the lowest stress and pressure values. The optimal bifurcation angle calculated in the previous simulations was used.
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