Performance optimization of the pulsatile synchronous LVAD based on myocardial energetics and cardiac output using a computer simulation

K. Platt, T. Moore, S. Dubin, D. Jaron
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引用次数: 0

Abstract

When myocardial infarction compromises cardiac output, treatment sometimes involves the application of a pulsatile synchronous left ventricular assist device (LVAD). The authors use a computer simulation to explore the possibility of optimal phasing of pump cycle with respect to events in the cardiac cycle from the standpoint of improved myocardial energetics and system flow. Central to the simulation is a time-varying elastance model of the left ventricle. It is coupled to a closed-loop circulatory model that consists of a nonlinear multielement aorta model, the main aortic branches including the coronaries, a lumped venous system model, a time-varying elastance model of the right ventricle, and lumped models of the pulmonary arteries, and veins. Oxygen availability per beat is calculated from the arteriovenous oxygen difference and the total coronary flow and oxygen consumption per beat is computed.<>
基于心肌能量学和心输出量的脉动式同步LVAD性能优化
当心肌梗死影响心输出量时,治疗有时涉及应用脉冲同步左心室辅助装置(LVAD)。作者利用计算机模拟,从改善心肌能量学和系统血流的角度,探讨心脏周期事件中泵周期最佳相位的可能性。模拟的核心是左心室的时变弹性模型。该模型由非线性多元素主动脉模型、包括冠状动脉在内的主动脉主干分支、集总静脉系统模型、右心室时变弹性模型、肺动脉和静脉集总模型组成。根据动静脉氧差计算每次跳动的氧气可用性,并计算每次跳动的总冠状动脉流量和耗氧量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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