首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Partitioned fluid-solid coupling for cardiovascular blood flow: validation study of pressure-driven fluid-domain deformation.
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Partitioned fluid-solid coupling for cardiovascular blood flow: validation study of pressure-driven fluid-domain deformation.

机译:分区的流固耦合的心血管血流:压力驱动的流体域变形的验证研究。

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摘要

The Karlsruhe Heart Model (KaHMo) is a patient-specific simulation tool for a three-dimensional blood flow evaluation inside the human heart. Whereas KaHMo MRT is based on geometry movement identified from MRT data, KaHMo FSI allows the consideration of structural properties and the analysis of FSI. Previous investigations by Oertel et al. have shown the ability of KaHMo to gain insight into different intra-ventricular fluid mechanics of both healthy and diseased hearts. However, the in vivo validation of the highly dynamic cavity flow pattern has been a challenging task in recent years. As a first step, the focus of this study is on an artificial ventricular experiment, derived from real heart anatomy. Fluid domain deformation and intra-ventricular flow dynamics are enforced by an outer surface pressure distribution. The pure geometrical representation of KaHMo MRT can now be complemented by constitutive properties, pressure forces, and interaction effects using KaHMo FSI's partitioned code-coupling approach. For the first time, fluid domain deformation and intra-ventricular flow of KaHMo FSI has been compared with experimental data. With a good overall agreement, the proof of KaHMo's validity represents an important step from feasibility study toward patient-specific analysis.
机译:卡尔斯鲁厄心脏模型(KaHMo)是一种针对患者的模拟工具,用于评估人心脏内部的三维血流。 KaHMo MRT基于从MRT数据中识别出的几何运动,而KaHMo FSI允许考虑结构特性和FSI分析。 Oertel等人先前的调查。证明了KaHMo能够洞悉健康和患病心脏的不同心室内流体力学。但是,近年来,对高动态空腔流动模式进行体内验证一直是一项艰巨的任务。第一步,本研究的重点是源自真实心脏解剖结构的人工心室实验。外表面压力分布会增强流域变形和心室内流动动力学。现在,使用KaHMo FSI的分区代码耦合方法,可通过本构特性,压力和相互作用效应来补充KaHMo MRT的纯几何表示。首次将KaHMo FSI的流域变形和脑室内流量与实验数据进行了比较。总体而言,KaHMo有效性的证明代表着从可行性研究到针对患者的分析的重要一步。

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