首页> 外文期刊>Journal of Biomechanics >Pulse wave propagation in a model human arterial network: Assessment of 1-D visco-elastic simulations against in vitro measurements.
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Pulse wave propagation in a model human arterial network: Assessment of 1-D visco-elastic simulations against in vitro measurements.

机译:脉搏波在模型人体动脉网络中的传播:针对体外测量对一维粘弹性模拟的评估。

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The accuracy of the nonlinear one-dimensional (1-D) equations of pressure and flow wave propagation in Voigt-type visco-elastic arteries was tested against measurements in a well-defined experimental 1:1 replica of the 37 largest conduit arteries in the human systemic circulation. The parameters required by the numerical algorithm were directly measured in the in vitro setup and no data fitting was involved. The inclusion of wall visco-elasticity in the numerical model reduced the underdamped high-frequency oscillations obtained using a purely elastic tube law, especially in peripheral vessels, which was previously reported in this paper [Matthys et al., 2007. Pulse wave propagation in a model human arterial network: Assessment of 1-D numerical simulations against in vitro measurements. J. Biomech. 40, 3476-3486]. In comparison to the purely elastic model, visco-elasticity significantly reduced the average relative root-mean-square errors between numerical and experimental waveforms over the 70 locations measured in the in vitro model: from 3.0% to 2.5% (p<0.012) for pressure and from 15.7% to 10.8% (p<0.002) for the flow rate. In the frequency domain, average relative errors between numerical and experimental amplitudes from the 5th to the 20th harmonic decreased from 0.7% to 0.5% (p<0.107) for pressure and from 7.0% to 3.3% (p<10(-6)) for the flow rate. These results provide additional support for the use of 1-D reduced modelling to accurately simulate clinically relevant problems at a reasonable computational cost.
机译:在Voigt型粘弹性动脉中,对压力和流波传播的非线性一维(1-D)方程的准确性进行了测试,以对比实验中37个最大导管中明确定义的实验1:1副本的测量结果。人类的全身循环。数值算法所需的参数在体外设置中直接测量,不涉及数据拟合。数值模型中包含壁粘弹性可减少使用纯弹性管定律获得的阻尼不足的高频振荡,尤其是在外围血管中,这是先前在本文中报道的[Matthys等,2007。模型人体动脉网络:针对体外测量评估一维数值模拟。 J.生物机械。 40,3476-3486]。与纯弹性模型相比,粘弹性显着降低了在体外模型中测量的70个位置的数值波形和实验波形之间的平均相对均方根误差:对于3.0到2.5%(p <0.012)压力和流量的15.7%至10.8%(p <0.002)。在频域中,从5次谐波到20次谐波的数值幅度和实验幅度之间的平均相对误差从0.7%降低到0.5%(p <0.107),从7.0%降低到3.3%(p <10(-6))流量。这些结果为使用一维简化模型以合理的计算成本准确模拟临床相关问题提供了额外的支持。

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