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Enhancement of arterial pressure pulsatility by controlling continuous-flow left ventricular assist device flow rate in mock circulatory system

机译:通过在模拟循环系统中控制连续流左心室辅助设备的流速来增强动脉压搏动

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摘要

Continuous-flow left ventricular assist devices (CF-LVADs) generally operate at a constant speed, which reduces pulsatility in the arteries and may lead to complications such as functional changes in the vascular system, gastrointestinal bleeding, or both. The purpose of this study is to increase the arterial pulse pressure and pulsatility by controlling the CF-LVAD flow rate. A MicroMed DeBakey pump was used as the CF-LVAD. A model simulating the flow rate through the aortic valve was used as a reference model to drive the pump. A mock circulation containing two synchronized servomotor-operated piston pumps acting as left and right ventricles was used as a circulatory system. Proportional-integral control was used as the control method. First, the CF-LVAD was operated at a constant speed. With pulsatile-speed CF-LVAD assistance, the pump was driven such that the same mean pump output was generated. Continuous and pulsatile-speed CF-LVAD assistance provided the same mean arterial pressure and flow rate, while the index of pulsatility increased significantly for both arterial pressure and pump flow rate signals under pulsatile speed pump support. This study shows the possibility of improving the pulsatility of CF-LVAD support by regulating pump speed over a cardiac cycle without reducing the overall level of support.
机译:连续流左心室辅助设备(CF-LVAD)通常以恒定速度运行,这会降低动脉的搏动性,并可能导致并发症,例如血管系统功能改变,胃肠道出血或两者。本研究的目的是通过控制CF-LVAD流量来增加动脉搏动压力和搏动性。将MicroMed DeBakey泵用作CF-LVAD。模拟通过主动脉瓣的流速的模型用作驱动泵的参考模型。模拟循环包含两个同步伺服电动机操作的活塞泵,分别充当左右心室,以此作为循环系统。比例积分控制用作控制方法。首先,CF-LVAD以恒定速度运行。在脉搏速度CF-LVAD的辅助下,泵被驱动,从而产生相同的平均泵输出。连续和脉动速度CF-LVAD辅助装置提供相同的平均动脉压和流速,而在脉动速度泵支持下,动脉压和泵流速信号的脉动指数均显着增加。这项研究表明,在不降低总体支持水平的情况下,通过调节心动周期中的泵速来改善CF-LVAD支持的搏动性的可能性。

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