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Role of 0D peripheral vasculature model in fluid–structure interaction modeling of aneurysms

机译:0D外周血管模型在动脉瘤流固耦合模型中的作用

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摘要

Patient-specific simulations based on medical images such as CT and MRI offer information on the hemodynamic and wall tissue stress in patient-specific aneurysm configurations. These are considered important in predicting the rupture risk for individual aneurysms but are not possible to measure directly. In this paper, fluid–structure interaction (FSI) analyses of a cerebral aneurysm at the middle cerebral artery (MCA) bifurcation are presented. A 0D structural recursive tree model of the peripheral vasculature is incorporated and its impedance is coupled with the 3D FSI model to compute the outflow through the two branches accurately. The results are compared with FSI simulation with prescribed pressure variation at the outlets. The comparison shows that the pressure at the two outlets are nearly identical even with the peripheral vasculature model and the flow division to the two branches is nearly the same as what we see in the simulation without the peripheral vasculature model. This suggests that the role of the peripheral vasculature in FSI modeling of the MCA aneurysm is not significant.
机译:基于CT和MRI等医学图像的患者特定模拟可提供有关患者特定动脉瘤配置中血流动力学和壁组织应力的信息。这些被认为对于预测单个动脉瘤的破裂风险很重要,但无法直接测量。本文介绍了大脑中动脉(MCA)分叉处的脑动脉瘤的流固耦合(FSI)分析。合并了外围脉管的0D结构递归树模型,并将其阻抗与3D FSI模型耦合以精确计算通过两个分支的流出量。将结果与出口规定压力变化的FSI模拟进行比较。比较表明,即使使用外围脉管系统模型,两个出口处的压力也几乎相同,并且到两个分支的流量分配几乎与我们在没有外围脉管系统模型的情况下看到的相同。这表明在MCA动脉瘤的FSI建模中外周脉管系统的作用并不重要。

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