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首页> 外文期刊>Journal of artificial organs: The official journal of the Japanese Society for Artificial Organs >Development of a flow rate monitoring method for the wearable ventricular assist device driver
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Development of a flow rate monitoring method for the wearable ventricular assist device driver

机译:穿戴式心室辅助设备驱动器流速监测方法的开发

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Our research institute has been working on the development of a compact wearable drive unit for an extracorporeal ventricular assist device (VAD) with a pneumatically driven pump. A method for checking the pump blood flow on the side of the drive unit without modifying the existing blood pump and impairing the portability of it will be useful. In this study, to calculate the pump flow rate indirectly from measuring the flow rate of the driving air of the VAD air chamber, we conducted experiments using a mock circuit to investigate the correlation between the air flow rate and the pump flow rate as well as its accuracy and error factors. The pump flow rate was measured using an ultrasonic flow meter at the inflow and outflow tube, and the air flow was measured using a thermal mass flow meter at the driveline. Similarity in the instantaneous waveform was confirmed between the air flow rate in the driveline and the pump flow rate. Some limitations of this technique were indicated by consideration of the error factors. A significant correlation was found between the average pump flow rate in the ejecting direction and the average air flow rate in the ejecting direction (R (2) = 0.704-0.856), and the air flow rate in the filling direction (R (2) = 0.947-0.971). It was demonstrated that the average pump flow rate was estimated exactly in a wide range of drive conditions using the air flow of the filling phase.
机译:我们的研究所一直在研究用于带有气动泵的体外心室辅助装置(VAD)的紧凑型可穿戴驱动单元。在不修改现有的血泵并且不损害其便携性的情况下用于检查驱动单元侧的泵血流的方法将是有用的。在这项研究中,为了通过测量VAD气室的驱动空气的流量来间接计算泵的流量,我们使用模拟电路进行了实验,以研究空气流量与泵的流量之间的相关性,以及其准确性和误差因素。在进出管处使用超声波流量计测量泵的流量,在传动系统中使用热质量流量计测量空气流量。在传动系统中的空气流速和泵流速之间确认了瞬时波形的相似性。通过考虑误差因素表明了该技术的一些局限性。发现喷射方向上的平均泵流量与喷射方向上的平均空气流量(R(2)= 0.704-0.856)和填充方向上的空气流量(R(2)之间存在显着相关性= 0.947-0.971)。结果表明,在广泛的驱动条件下,使用填充相的空气流可以准确估算平均泵流量。

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