A nonlinear analysis of pulsatile blood flow applied to investigate shear stress in arterial prostheses.

J Charara, G Beaudoin, R Guidoin
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引用次数: 4

Abstract

Although the main function of an arterial graft is to restore distal blood flow, there is evidence that certain local parameters of blood flow, particularly wall shear stresses, are important in determining the graft's long-term patency. Wall shear stresses were associated with intimal hyperplasia, intimal proliferation, and endothelial cell development, morphology, and attachment. Here we present a detailed method which permits the investigation of the wall shear stress acting on arteries and prostheses in dogs. The theory takes into account the nonlinear terms of the Navier-Stokes equations as well as the nonlinear behaviour and large deformation of the arterial wall. It is based on the numerical resolution of the nonlinear equations by the Crank-Nicolson method which was selected for its unconditional stability. Through the locally measured values of the pressure, pressure gradient, radius and flow rate, the velocity distribution and wall shear stress at a given location along the artery or the prosthesis, can be determined. Complete results on the same dog are presented for the distal aorta and for the middle of a chemically processed prosthesis, implanted as substitute in the thoracic aorta.

脉冲血流的非线性分析应用于研究动脉假体的剪切应力。
虽然动脉移植物的主要功能是恢复远端血流,但有证据表明,某些局部血流参数,特别是壁剪切应力,在决定移植物的长期通畅方面是重要的。壁剪切应力与内膜增生、内膜增殖、内皮细胞发育、形态和附着有关。在这里,我们提出了一种详细的方法,允许调查管壁剪切应力作用于动脉和假体在狗。该理论考虑了Navier-Stokes方程的非线性项以及动脉壁的非线性行为和大变形。它是基于非线性方程的数值解析,采用Crank-Nicolson方法,该方法因其无条件稳定性而被选择。通过局部测得的压力、压力梯度、半径和流速值,可以确定沿动脉或假体在给定位置的速度分布和壁面剪应力。完整的结果在同一只狗的远端主动脉和中间的化学处理假体,植入作为替代在胸主动脉。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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