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Pressure pulsation in roller pumps: A validated lumped parameter model.

机译:滚子泵中的压力脉动:经过验证的集总参数模型。

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摘要

During open-heart surgery roller pumps are often used to keep the circulation of blood through the patient body. They present numerous key features, but they suffer from several limitations: (a) they normally deliver uncontrolled pulsatile inlet and outlet pressure; (b) blood damage appears to be more than that encountered with centrifugal pumps. A lumped parameter mathematical model of a roller pump (Sarnstrade mark 7000, Terumo CVS, Ann Arbor, MI, USA) was developed to dynamically simulate pressures at the pump inlet and outlet in order to clarify the uncontrolled pulsation mechanism. Inlet and outlet pressures obtained by the mathematical model have been compared with those measured in various operating conditions: different rollers' rotating speed, different tube occlusion rates, and different clamping degree at the pump inlet and outlet. Model results agree with measured pressure waveforms, whose oscillations are generated by the tube compression/release mechanism during the rollers' engaging and disengaging phases. Average Euclidean Error (AEE) was 20mmHg and 33mmHg for inlet and outlet pressure estimates, respectively. The normalized AEE never exceeded 0.16. The developed model can be exploited for designing roller pumps with improved performances aimed at reducing the undesired pressure pulsation.
机译:在心脏直视手术期间,经常使用滚子泵来保持血液在患者体内的循环。它们具有许多关键特征,但存在一些局限性:(a)它们通常传递不受控制的脉动入口和出口压力; (b)血液损害似乎比离心泵更严重。滚动泵的集总参数数学模型(Sarnstrade商标7000,Terumo CVS,美国密歇根州安阿伯市)已开发出来,可以动态模拟泵入口和出口的压力,从而阐明不受控制的脉动机理。通过数学模型获得的入口和出口压力已与在各种工况下测得的压力进行了比较:不同的滚筒转速,不同的管堵塞率以及在泵入口和出口处的不同夹持度。模型结果与测得的压力波形吻合,压力波形的波动是在辊子接合和分离阶段由管压缩/释放机构产生的。估计进口和出口压力的平均欧几里得误差(AEE)分别为20mmHg和33mmHg。标准化的AEE永远不会超过0.16。所开发的模型可用于设计具有改进性能的滚子泵,以减少不希望的压力脉动。

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