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Simulation of the human cardiovascular system for real-time physical interaction with an assist device

机译:模拟人类心血管系统与辅助设备进行实时物理交互

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In the development of left ventricular assist devices (LVADs), numerical simulations of the cardiovascular (CV) system have been widely used. Further, electro-hydraulic simulations have been developed to evaluate the performance of a physical LVAD prototype against a numerical model of the CV system. The effects of dynamic cardiac compression (DCC) have been less well modeled. This paper considers the interaction between a DCC device and a closed-loop numerical model of the cardiovascular system, which is specifically developed. The model is operated in realtime, and interfaced to the physical assist device for realistic testing. Assist control strategies are compared: constant pressure DCC, and volume-proportional pressure to simulate cardiomyoplasty. The model shows that applying equal pressure to both ventricles causes inflation of the left ventricle.
机译:在左心室辅助装置(LVAD)的开发中,心血管(CV)系统的数值模拟已被广泛使用。此外,已经开发了电动液压仿真来针对CV系统的数值模型评估物理LVAD原型的性能。动态心脏压缩(DCC)的效果尚未很好地建模。本文考虑了DCC设备与专门开发的心血管系统闭环数值模型之间的相互作用。该模型是实时操作的,并连接到物理辅助设备以进行实际测试。比较了辅助控制策略:恒压DCC和模拟心肌成形术的体积比例压力。该模型显示,对两个心室施加相同的压力会导致左心室膨胀。

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