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Fluid Structure Interaction Simulation of Left Ventricular Flow Dynamics under Left Ventricular Assist Device Support

机译:左心室辅助装置支撑下左心室流动动力学的流体结构相互作用模拟

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For patient’s receiving mechanical circulatory support, malfunction of the left ventricular assist device (LVADs) as well as mal-positioning of the cannula imposes serious threats to their life. It is therefore important to characterize the flow pattern and pressure distribution within the ventricle in the presence of an LVAD. In this paper, we present a 2D axisymmetric fluid structure interaction model of the passive left ventricle (LV) incorporating an LVAD cannula to simulate the effect of the LVAD cannula placement on the vortex dynamics. Results showed that larger recirculation area was formed at the cannula tip with increasing cannula insertion depth, and this is believed to reduce the risk of thrombus formation. Furthermore, we also simulated suction events (collapse of the LV) by closing the inlet. Vortex patterns were significantly altered under this condition, and the greatest LV wall displacement was observed at the part of the myocardium closest to the cannula tip. Keywords: LVAD, heart pump, cannula, suction, vortex
机译:对于患者接受机械循环支撑,左心室辅助装置(LVADS)的故障以及插管的混合物对其生命造成严重威胁。因此,重要的是在LVAD存在下表征心室内的流动模式和压力分布。在本文中,我们介绍了一种具有LVAD套管的被动左心室(LV)的2D轴对称流体结构相互作用模型,用于模拟LVAD套管放置对涡流动力学的影响。结果表明,在套管尖端形成较大的再循环面积,随着套管插入深度的增加,据信可降低血栓形成的风险。此外,我们还通过关闭入口模拟抽吸事件(LV崩溃)。在这种情况下,涡旋模式显着改变,并且在最接近套管尖端的心肌部分观察到最大的LV壁位移。 关键词:LVAD,心脏泵,插管,吸力,涡旋

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