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The Influence of Rotary Blood Pump Speed Modulation on the Risk of Intraventricular Thrombosis

机译:旋转血泵调速对脑室内血栓形成风险的影响

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摘要

Abstract Rotary left ventricular assist devices (LVADs) are commonly operated at a constant speed, attenuating blood flow pulsatility. Speed modulation of rotary LVADs has been demonstrated to improve vascular pulsatility and pump washout. The effect of LVAD speed modulation on intraventricular flow dynamics is not well understood, which may have an influence on thromboembolic events. This study aimed to numerically evaluate intraventricular flow characteristics with a speed modulated LVAD. A severely dilated anatomical left ventricle was supported by a HeartWare HVAD in a three‐dimensional multiscale computational fluid dynamics model. Three LVAD operating scenarios were evaluated: constant speed and sinusoidal co‐ and counter‐pulsation. In all operating scenarios, the mean pump speed was set to restore the cardiac output to 5.0?L/min. Co‐ and counter‐pulsation was speed modulated with an amplitude of 750?rpm. The risk of thrombosis was evaluated based on blood residence time, ventricular washout, kinetic energy densities, and a pulsatility index map. Blood residence time for co‐pulsation was on average 1.8 and 3.7% lower than constant speed and counter‐pulsation mode, respectively. After introducing fresh blood to displace preexisting blood for 10 cardiac cycles, co‐pulsation had 1.5% less old blood in comparison to counter‐pulsation. Apical energy densities were 84 and 27% higher for co‐pulsation in comparison to counter‐pulsation and constant speed mode, respectively. Co‐pulsation had an increased pulsatility index around the left ventricular outflow tract and mid‐ventricle. Improved flow dynamics with co‐pulsation was caused by increased E‐wave velocities which minimized blood stasis. In the studied scenario and from the perspective of intraventricular flow dynamics, co‐pulsation of rotary LVADs could minimize the risk of intraventricular thrombosis.
机译:摘要旋转左心室辅助装置(LVADS)通常以恒定速度运行,衰减血流脉冲性。已经证明了旋转LVAD的调速调节,以改善血管脉动和泵浦冲洗。 LVAD调速对腔内流动动力学的影响尚不清楚,这可能对血栓栓塞事件产生影响。本研究旨在用速度调制的LVAD进行数字评价腔内流动特性。在三维多尺度计算流体动力学模型中,心脏HVAD支持严重扩张的解剖学左心室。评估了三种LVAD操作场景:恒速和正弦和反脉冲。在所有操作场景中,将平均泵速设置为将心脏输出恢复为5.0?L / min。 CO - 和反脉动的速度调节,幅度为750 rpm。基于血液停留时间,心室冲洗,动能密度和脉动性指数图评估血栓形成的风险。共脉冲的血液停留时间平均分别比恒定速度和反脉动模式低1.8%和3.7%。在引入新鲜血液以使预先存在的血液置于10个心脏周期之后,与反脉动相比,共脉冲具有1.5%的血液。与反脉动和恒定模式相比,外壳能量密度为共脉冲的84和27%,相对于反脉冲和恒定速度模式。左侧脉冲围绕左心室流出道和中间脉冲具有增加的脉动性指数。通过增加血瘀最小化的e波速度,改善了具有共脉冲的流动动态。在所研究的情景和腔内流动动力学的角度来看,旋转LVAD的共脉冲可以最大限度地减少腔内血栓形成的风险。

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