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Computational fluid-structure interaction: methods and application to a total cavopulmonary connection

机译:计算流固耦合:在全腔肺连接中的方法和应用

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The Fontan procedure is a surgery that is performed on single-ventricle heart patients, and, due to the wide range of anatomies and variations among patients, lends itself nicely to study by advanced numerical methods. We focus on a patient-specific Fontan configuration, and perform a fully coupled fluid-structure interaction (FSI) analysis of hemodynamics and vessel wall motion. To enable physiologically realistic simulations, a simple approach to constructing a variable-thickness blood vessel wall description is proposed. Rest and exercise conditions are simulated and rigid versus flexible vessel wall simulation results are compared. We conclude that flexible wall modeling plays an important role in predicting quantities of hemodynamic interest in the Fontan connection. To the best of our knowledge, this paper presents the first three-dimensional patient-specific fully coupled FSI analysis of a total cavopulmonary connection that also includes large portions of the pulmonary circulation.
机译:Fontan 手术是一种对单心室心脏病患者进行的手术,由于解剖结构和患者之间的差异范围很广,因此非常适合通过先进的数值方法进行研究。我们专注于患者特定的 Fontan 配置,并对血流动力学和血管壁运动进行完全耦合的流固耦合 (FSI) 分析。为了实现生理上真实的模拟,提出了一种构建可变厚度血管壁描述的简单方法。模拟休息和运动条件,并比较刚性与柔性血管壁模拟结果。我们得出结论,柔性壁建模在预测 Fontan 连接中的血流动力学兴趣量方面起着重要作用。据我们所知,本文首次对全腔肺连接进行了三维患者特异性完全耦合 FSI 分析,其中还包括大部分肺循环。

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