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关于使用计算流体动力学对患者特异性主动脉血流进行分析时出口边界条件的选择

On the choice of outlet boundary conditions for patient-specific analysis of aortic flow using computational fluid dynamics.

作者信息

Pirola S, Cheng Z, Jarral O A, O'Regan D P, Pepper J R, Athanasiou T, Xu X Y

机构信息

Department of Chemical Engineering, Imperial College London, South Kensington Campus, London SW7 2AZ, UK.

Department of Surgery and Cancer, St. Mary's Hospital, Imperial College London, UK.

出版信息

J Biomech. 2017 Jul 26;60:15-21. doi: 10.1016/j.jbiomech.2017.06.005. Epub 2017 Jun 20.

Abstract

Boundary conditions (BCs) are an essential part in computational fluid dynamics (CFD) simulations of blood flow in large arteries. Although several studies have investigated the influence of BCs on predicted flow patterns and hemodynamic wall parameters in various arterial models, there is a lack of comprehensive assessment of outlet BCs for patient-specific analysis of aortic flow. In this study, five different sets of outlet BCs were tested and compared using a subject-specific model of a normal aorta. Phase-contrast magnetic resonance imaging (PC-MRI) was performed on the same subject and velocity profiles extracted from the in vivo measurements were used as the inlet boundary condition. Computational results obtained with different outlet BCs were assessed in terms of their agreement with the PC-MRI velocity data and key hemodynamic parameters, such as pressure and flow waveforms and wall shear stress related indices. Our results showed that the best overall performance was achieved by using a well-tuned three-element Windkessel model at all model outlets, which not only gave a good agreement with in vivo flow data, but also produced physiological pressure waveforms and values. On the other hand, opening outlet BCs with zero pressure at multiple outlets failed to reproduce any physiologically relevant flow and pressure features.

摘要

边界条件(BCs)是大动脉血流计算流体动力学(CFD)模拟的重要组成部分。尽管已有多项研究探讨了边界条件对各种动脉模型中预测血流模式和血流动力学壁参数的影响,但在针对患者特异性主动脉血流分析的出口边界条件方面,仍缺乏全面评估。在本研究中,使用正常主动脉的个体化模型对五组不同的出口边界条件进行了测试和比较。对同一受试者进行了相位对比磁共振成像(PC-MRI),并将从体内测量中提取的速度剖面用作入口边界条件。根据不同出口边界条件下的计算结果与PC-MRI速度数据以及关键血流动力学参数(如压力和流量波形以及壁面剪应力相关指标)的一致性进行评估。我们的结果表明,在所有模型出口处使用经过良好调谐的三元Windkessel模型可实现最佳整体性能,该模型不仅与体内血流数据高度吻合,还能产生生理压力波形和数值。另一方面,在多个出口处设置零压力的开放出口边界条件无法再现任何生理相关的血流和压力特征。

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