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A numerical model of the circulatory system for heart assistance simulations: effect of a LVAD on energetic relationships inside the left ventricle

机译:用于心脏辅助模拟的循环系统的数值模型:LVAD对左心室内的能量关系的影响

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A modular numerical model is used to study the interaction, in terms of energetic relationships, between the cardiovascular system and a pneumatic left ventricle assist device (LVAD). The experiments are performed in two steps: in the first the left ventricle is characterized, with an open loop model of the circulatory system, computing external work (EW), pressure volume area (PVA) and cardiac mechanical efficiency (CME) as a function of atrial pressure and peripheral resistance. PVA is compared to EW and CME surfaces respectively. In the second step the same variables are evaluated, with a closed loop model, assisting synchronously the left ventricle with the LVAD and changing two of its control parameters: driving pressure (DP) and systole-diastole (SD) ratio. The path of the working point is related to the value of the arterial elastance, modified by the LVAD, and only in few points the target to minimize PVA and EW and maximize CME is reached.
机译:模块化数值模型用于在心血管系统和气动左心室辅助装置(LVAD)之间的能量关系方面研究相互作用。实验以两个步骤进行:在第一左心室的特征中,具有循环系统的开环模型,计算外部工作(EW),压力量区域(PVA)和心脏机械效率(CME)作为功能心房压力和外围抗性。 PVA分别与EW和CME表面进行比较。在第二步中,使用闭环模型评估相同的变量,用LVAD同步地辅助左心室并改变其两个控制参数:驱动压力(DP)和Systole-DiaStole(SD)比率。工作点的路径与由LVAD修改的动脉弹性的值有关,并且仅在少量点数达到最小化PVA和EW并最大化CME的点。

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