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A reduced-order model based on the coupled 1D-3D finite element simulations for an efficient analysis of hemodynamics problems

机译:基于耦合的1D-3D有限元模拟的降阶模型,用于有效分析血液动力学问题

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摘要

A reduced-order model for an efficient analysis of cardiovascular hemodynamics problems using multiscale approach is presented in this work. Starting from a patient-specific computational mesh obtained by medical imaging techniques, an analysis methodology based on a two-step automatic procedure is proposed. First a coupled 1D-3D Finite Element Simulation is performed and the results are used to adjust a reduced-order model of the 3D patient-specific area of interest. Then, this reduced-order model is coupled with the 1D model. In this way, three-dimensional effects are accounted for in the 1D model in a cost effective manner, allowing fast computation under different scenarios. The methodology proposed is validated using a patient-specific aortic coarctation model under rest and non-rest conditions
机译:在这项工作中,提出了一种使用多尺度方法有效分析心血管血液动力学问题的降阶模型。从通过医学成像技术获得的特定于患者的计算网格开始,提出了一种基于两步自动程序的分析方法。首先,执行耦合的1D-3D有限元模拟,并将结果用于调整3D患者特定兴趣区域的降阶模型。然后,将此降阶模型与1D模型耦合。通过这种方式,一维模型中的三维效果以具有成本效益的方式得到考虑,从而可以在不同的情况下进行快速计算。所建议的方法已在休息和非休息条件下使用特定于患者的主动脉缩窄模型进行了验证

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