首页> 外文会议>7th Asian-Pacific Conference on Medical and Biological Engineering(第七届亚太地区生物工程学术会议)论文集 >Implementation of the Natural Heartbeat Synchronize Control for the Undulation Pump Ventricular Assist Device Using the Inflow Pressure
【24h】

Implementation of the Natural Heartbeat Synchronize Control for the Undulation Pump Ventricular Assist Device Using the Inflow Pressure

机译:利用流入压力实现脉动泵心室辅助装置自然心跳同步控制

获取原文

摘要

The undulation pump ventricular assist device (UPVAD) is a small implantable ventricular assist device using an undulation pump.The UPVAD can produce not only continuous flow but also pulsatile flow by changing the motor rotational speed of the UPVAD.Because the undulation pump is a volume displacement type pump in which the inflow action and outflow action both start at the same phase,the inflow sucking occurs easily.The purpose of this study is to develop a suitable control method for the UPVAD.The UPVAD inflow cannula equipped with an implantable blood pressure sensor is inserted into the ventricular.Therefore,pressure fluctuation that synchronizes with the natural heartbeat is observed in the inflow cannula.By changing the motor rotational speed that responds to the inflow pressure,the UPVAD can synchronize with the natural heartbeat and the UPVAD can generate either a co-pulse assist flow or a counter pulse assist flow.The newly developed control method exhibited superior characteristics than existing ones due to high immunity against pressure sensor drift.The improved control method is implemented into the microcontroller.The UPVAD generated 5.3 l/min co-pulse assist flow without inflow cannula sucking using this control method.The assist flow can be increased more than 15% with this control method.This control was implemented one-chip microcontroller without extra peripheral device.It can reduce the UPVAD controller size.The UPVAD can generate the suitable assist flow with the developed control method.
机译:波动泵心室辅助装置(UPVAD)是一种使用波动泵的小型植入式心室辅助装置。由于波动泵的体积较大,因此UPVAD不仅可以通过改变UPVAD的电机转速来产生连续流,而且还可以产生脉动流。容积式泵,其流入和流出动作都在同一阶段开始,很容易发生吸入。本研究的目的是为UPVAD开发一种合适的控制方法。配备有可植入血压的UPVAD流入套管传感器插入心室中。因此,在流入套管中观察到与自然心跳同步的压力波动。通过更改响应于流入压力的电动机转速,UPVAD可以与自然心跳同步,并且UPVAD可以生成无论是同脉冲辅助流还是反脉冲辅助流。新开发的控制方法都具有出色的特性由于对压力传感器漂移具有较高的抵抗力,因此比现有方法具有更大的风险。改进的控制方法已在微控制器中实现.UPVAD使用此控制方法产生了5.3 l / min的共脉冲辅助流,而没有流入的套管抽吸,可以增加辅助流这种控制方式超过15%。该控制是通过单芯片微控制器实现的,无需额外的外围设备,可以减小UPVAD控制器的尺寸.UPVAD通过开发的控制方法可以生成合适的辅助流程。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号