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Embedded Computational Heart Model for External Ventricular Assist Device Investigations

机译:用于心室外辅助装置研究的嵌入式计算心脏模型

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Abstract Purpose External cardiac assist devices are based on a promising and simple concept for treating heart failure, but they are surprisingly difficult to design. Thus, a structured approach combining experiments with computer-based optimization is essential. The latter provides the motivation for the work presented in this paper.Methods We present a computational modeling framework for realistic representation of the heart’s tissue structure, electrophysiology and actuation. The passive heart tissue is described by a nonlinear anisotropic material law, considering fiber and sheetlet directions. For muscle contraction, an orthotropic active-strain model is employed, initiated by a periodically propagating electrical potential. The model allows for boundary conditions at the epicardium accounting for external assist devices, and it is coupled to a circulation network providing appropriate pressure boundary conditions inside the ventricles.Results Simulated results from an unsupported healthy and a pathological heart model are presented and reproduce accurate deformations compared to phenomenological measurements. Moreover, cardiac output and ventricular pressure signals are in good agreement too. By investigating the impact of applying an exemplary external actuation to the pathological heart model, it shows that cardiac patches can restore a healthy blood flow.Conclusion We demonstrate that the devised computational modeling framework is capable of predicting characteristic trends (e.g. apex shortening, wall thickening and apex twisting) of a healthy heart, and that it can be used to study pathological hearts and external activation thereof.
机译:摘要目的 体外心脏辅助装置基于治疗心力衰竭的一个有前途且简单的概念,但它们的设计难度令人惊讶。因此,将实验与基于计算机的优化相结合的结构化方法至关重要。后者为本文介绍的工作提供了动力。方法 提出一个计算建模框架,用于真实地表示心脏的组织结构、电生理学和驱动。被动心脏组织由非线性各向异性材料定律描述,考虑纤维和小片方向。对于肌肉收缩,采用正交各向异性主动应变模型,由周期性传播的电势启动。该模型允许心外膜的边界条件考虑外部辅助装置,并且它与循环网络耦合,在心室内提供适当的压力边界条件。结果 给出了来自无支持的健康和病理心脏模型的模拟结果,并与现象学测量结果相比再现了准确的变形。此外,心输出量和心室压信号也非常一致。通过研究对病理性心脏模型应用示例性外部驱动的影响,它表明心脏贴片可以恢复健康的血流。结论 本文所设计的计算模型框架能够预测健康心脏的特征趋势(如心尖缩短、心尖增厚和心尖扭转),可用于研究病理心脏及其外部激活。

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