利用硅胶管流动腔系统模拟动脉脉动血流切应力和周向应力环境
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国家自然科学基金资助项目(10132020,10472027)


Simulation of arterial pulsatile fluid shear stress and circumfe-rential stress using a silicone tube flow chamber system
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    摘要:

    目的选择硅胶管流动腔的前、后负荷,模拟生理脉动流条件下动脉内皮细胞所承受的切应力和周向应力环境。方法利用在体脉动血流切应力和周向应力波形,在求得硅胶管流动腔几何和力学特性的情况下,反向求解硅胶管流动腔内径、压力和流量波形;根据所求得的压力和流量波形,确定出硅胶管流动腔的后负荷(即输入阻抗)条件;利用冯忠刚等提出的三弹性腔九元件集中参数模型模拟该后负荷,并求出各元件参数。结果三弹性腔九元件集中参数模型模拟出的输入阻抗模和幅角与目标输入阻抗模和幅角能较好的吻合。结论该方法为选择合适的硅胶管流动腔前、后负荷,构建能较真实再现动脉脉动血流切应力和周向应力环境的硅胶管流动腔系统提供了一定的理论依据。

    Abstract:

    Objective To select the preload and afterload of the silicone tube flow chamber to simulate the pulsatile fluidshear stress and circumferential stress under physiological conditions. Methods Based on in vivo pulsatile fluid shearstress and circumferential stress waveforms, the radius, pressure and flow waveforms in the silicone tube chamberwere inversely calculated in case of the geometrical and mechanical property of silicone tube flow chamber were given.The afterload, i.e. input impedance, of the silicone tube flow chamber was then determined based on the obtainedpressure and flow waveforms. Finally, the input impedance was simulated by a nine-element lumped parameter modelproposed by Z. G. Fung et al. Results The modulus and phase simulated by the nine-element lumped parameter modelcould fit the goal input impedance well. Conclusion The method and results provided a reliable theoretical base forselecting appropriate the preload and afterload of silicone tube flow chamber to construct a silicone tube flow chambersystem which would simulate arterial pulsatile fluid shear stress and circumferential stress environment.

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胡徐趣,覃开蓉,吴昊,姜宗来.利用硅胶管流动腔系统模拟动脉脉动血流切应力和周向应力环境[J].医用生物力学,2006,21(2):94-99

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