作者
Kathrin Bäumler, Vijay Vedula, Anna M Sailer, Jongmin Seo, Peter Chiu, Gabriel Mistelbauer, Frandics P Chan, Michael P Fischbein, Alison L Marsden, Dominik Fleischmann
发表日期
2020/10
期刊
Biomechanics and modeling in mechanobiology
卷号
19
期号
5
页码范围
1607-1628
出版商
Springer Berlin Heidelberg
简介
Credible computational fluid dynamic (CFD) simulations of aortic dissection are challenging, because the defining parallel flow channels—the true and the false lumen—are separated from each other by a more or less mobile dissection membrane, which is made up of a delaminated portion of the elastic aortic wall. We present a comprehensive numerical framework for CFD simulations of aortic dissection, which captures the complex interplay between physiologic deformation, flow, pressures, and time-averaged wall shear stress (TAWSS) in a patient-specific model. Our numerical model includes (1) two-way fluid–structure interaction (FSI) to describe the dynamic deformation of the vessel wall and dissection flap; (2) prestress and (3) external tissue support of the structural domain to avoid unphysiologic dilation of the aortic wall and stretching of the dissection flap; (4) tethering of the aorta by intercostal and lumbar arteries …
引用总数
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K Bäumler, V Vedula, AM Sailer, J Seo, P Chiu… - Biomechanics and modeling in mechanobiology, 2020