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Noninvasive blood-flow meter using a curved cannula with zero compensation for an axial flow blood pump

机译:使用曲套管对轴流血泵进行零补偿的无创血液流量计

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摘要

In order to monitor the condition of a patient using a left ventricular assist system (LVAS), blood flow should be measured. However, the reliable determination of blood-flow rate has not been established. The purpose of the present study is to develop a noninvasive blood-flow meter using a curved cannula with zero compensation for an axial flow blood pump. The flow meter uses the centrifugal force generated by the flow rate in the curved cannula. Two strain gauges served as sensors. The first gauges were attached to the curved area to measure static pressure and centrifugal force, and the second gauges were attached to straight area to measure static pressure. The flow rate was determined by the differences in output from the two gauges. The zero compensation was constructed based on the consideration that the flow rate could be estimated during the initial driving condition and the ventricular suction condition without using the flow meter. A mock circulation loop was constructed in order to evaluate the measurement performance of the developed flow meter with zero compensation. As a result, the zero compensation worked effectively for the initial calibration and the zero-drift of the measured flow rate. We confirmed that the developed flow meter using a curved cannula with zero compensation was able to accurately measure the flow rate continuously and noninvasively.
机译:为了使用左心室辅助系统(LVAS)监视患者的状况,应测量血流量。但是,尚未确定血流速度的可靠确定。本研究的目的是开发一种使用弯曲插管的无创血流计,其中轴向流血泵的补偿为零。流量计利用由弯曲套管中的流速产生的离心力。两个应变仪用作传感器。第一个压力表连接到弯曲区域以测量静压力和离心力,第二个压力表连接到直线区域以测量静压力。流速由两个压力表的输出差异决定。零补偿的考虑是在不使用流量计的情况下,可以在初始驾驶状态和心室吸气状态下估算流量。为了评估带有零补偿的已开发流量计的测量性能,构建了一个模拟循环回路。结果,零补偿对于初始校准和测量流量的零漂移有效地起作用。我们确认,使用带有零补偿的弯曲插管的已开发流量计能够准确无误地连续测量流量。

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