首页> 外文期刊>Journal of artificial organs: The official journal of the Japanese Society for Artificial Organs >Development of a miniaturized mass-flow meter for an axial flow blood pump based on computational analysis.
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Development of a miniaturized mass-flow meter for an axial flow blood pump based on computational analysis.

机译:基于计算分析的用于轴流血泵的微型质量流量计的开发。

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In order to monitor the condition of patients with implantable left ventricular assist systems (LVAS), it is important to measure pump flow rate continuously and noninvasively. However, it is difficult to measure the pump flow rate, especially in an implantable axial flow blood pump, because the power consumption has neither linearity nor uniqueness with regard to the pump flow rate. In this study, a miniaturized mass-flow meter for discharged patients with an implantable axial blood pump was developed on the basis of computational analysis, and was evaluated in in-vitro tests. The mass-flow meter makes use of centrifugal force produced by the mass-flow rate around a curved cannula. An optimized design was investigated by use of computational fluid dynamics (CFD) analysis. On the basis of the computational analysis, a miniaturized mass-flow meter made of titanium alloy was developed. A strain gauge was adopted as a sensor element. The first strain gauge, attached to the curved area, measured both static pressure and centrifugal force. The second strain gauge, attached to the straight area, measured static pressure. By subtracting the output of the second strain gauge from the output of the first strain gauge, the mass-flow rate was determined. In in-vitro tests using a model circulation loop, the mass-flow meter was compared with a conventional flow meter. Measurement error was less than +/-0.5 L/min and average time delay was 0.14 s. We confirmed that the miniaturized mass-flow meter could accurately measure the mass-flow rate continuously and noninvasively.
机译:为了监测具有植入式左心室辅助系统(LVAS)的患者的状况,重要的是连续且无创地测量泵的流量。但是,由于泵的消耗功率既不具有线性也不具有唯一性,因此难以测量泵的流速,特别是在植入式轴流式血泵中。在这项研究中,在计算分析的基础上,开发了一种用于出院患者的微型质量流量计,该流量计配有可植入式轴向血泵,并在体外测试中进行了评估。质量流量计利用由弯曲套管周围的质量流量产生的离心力。通过使用计算流体动力学(CFD)分析研究了优化设计。在计算分析的基础上,开发了一种钛合金制微型流量计。应变计被用作传感器元件。连接到弯曲区域的第一个应变仪可测量静压和离心力。第二个应变仪,连接到笔直区域,测量静压力。通过从第一应变仪的输出减去第二应变仪的输出,确定质量流量。在使用模型循环回路进行的体外测试中,将质量流量计与常规流量计进行了比较。测量误差小于+/- 0.5 L / min,平均时间延迟为0.14 s。我们证实了小型化的质量流量计可以连续,无创地准确测量质量流量。

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