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Flow Diagnostics of a Novel Para-Aortic Blood Pump

机译:新型副主动脉血泵的流量诊断

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In this paper, flow diagnostics inside a novel left ventricular assist device, called Para-Aortic Blood Pump (PABP), is studied on a human blood circulation simulation platform. Two flow diagnostic methods were explored to verify if any thrombosis or hemolysis risk of the current PABP engineering design model. First, tracer particle flow visualization method was applied to reveal basic flow patterns during PABP operated on a human blood circulation simulation platform. Second, dye dilution method was applied to identify if any residual non-replaceable fluid still remained inside the PABP during operation. The flow patterns from tracer particle flow visualization method reveal that an unsteady counterclockwise coherent vortex occurs during counter-pulsation operation of PABP. The unsteady coherent vortex structure stays within PABP until inner diaphragm contraction. The results of the dye dilution method proved effective replacement of fluid in the PABP after a few flow cycles. Therefore, the current PABP design is proven to be a low risk of thrombosis during diastole.
机译:在本文中,在人体血液循环仿真平台上研究了一种新型的左心室辅助设备(称为副主动脉血泵(PABP))中的流量诊断。探索了两种流动诊断方法,以验证当前PABP工程设计模型是否存在血栓形成或溶血的风险。首先,使用示踪剂颗粒流动可视化方法来揭示在人类血液循环模拟平台上进行PABP期间的基本流动模式。其次,使用染料稀释法来确定在操作期间PABP内是否仍残留有任何不可替代的残留液体。示踪粒子流可视化方法的流动模式表明,在PABP的反脉冲操作过程中出现了不稳定的逆时针相干涡。不稳定的相干涡结构停留在PABP内,直到内部膜片收缩。染料稀释方法的结果证明,经过几个流动周期后,PABP中的流体可以有效替换。因此,目前的PABP设计被证明在心脏舒张期血栓形成的风险较低。

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