Fluid–Structure Interaction Modeling of Ascending Thoracic Aortic Aneurysms in SimVascular

Rodrigo Valente, André Mourato, M. Brito, J. Xavier, A. Tomás, S. Avril
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引用次数: 3

Abstract

Ascending Thoracic Aortic Aneurysm (ATAA) is a permanent dilatation of the aorta which is usually related to tissue degeneration, hemodynamic conditions, lifestyle, environmental and genetic factors. As the mechanical conditions can become critical in a dilated aorta, a patient-specific computational model can be very useful to assist clinical decisions in the management of ATAAs. In this article, we model the biomechanical conditions of ATAA by performing Fluid-Structure Interaction (FSI) simulations in the SimVascular open-source software package. The patient-specific geometric model is reconstructed from Computed Tomography scan (CT). The numerical implementation takes into account patient-specific outlet conditions and a temporal flow variation at the model inlet. We performed a mesh convergence analysis on a new mesh reconstruction method in SimVascular and showed that it can significantly reduce the computational cost without impacting the accuracy.
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SimVascular中胸升主动脉瘤流固耦合模型的建立
胸升主动脉瘤(ATAA)是一种永久性的主动脉扩张,通常与组织变性、血流动力学状况、生活方式、环境和遗传因素有关。由于主动脉扩张的机械条件可能变得至关重要,因此针对患者的计算模型对于辅助ATAAs管理的临床决策非常有用。在本文中,我们通过在SimVascular开源软件包中进行流固耦合(FSI)模拟来模拟ATAA的生物力学条件。从计算机断层扫描(CT)重建患者特定的几何模型。数值实现考虑了患者特定的出口条件和模型入口的临时流量变化。在SimVascular中对一种新的网格重建方法进行了网格收敛分析,结果表明该方法在不影响精度的情况下显著降低了计算成本。
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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