首页> 外文期刊>IEEE Transactions on Control Systems Technology >Sensorless Physiologic Control, Suction Prevention, and Flow Balancing Algorithm for Rotary Biventricular Assist Devices
【24h】

Sensorless Physiologic Control, Suction Prevention, and Flow Balancing Algorithm for Rotary Biventricular Assist Devices

机译:旋转双心室辅助设备的无传感器生理控制,抽吸预防和流量平衡算法

获取原文
获取原文并翻译 | 示例

摘要

Objective: Rotary biventricular assist devices (BiVAD) are mechanical pumps that are implanted in the left and right ventricles of biventricular failure patients to pump blood and provide mechanical circulatory support. The objective of this paper was to develop and test a novel sensorless control algorithm that simultaneously satisfies the objectives of providing physiologic control (BiVAD flows meet cardiac demand), preventing ventricular suction, and providing balanced left-right (systemic and pulmonary) flows without the use of implantable flow or pressure sensors in the nonlinear, time varying, and discontinuous circulatory system. Methods: The control algorithm consists of two gain-scheduled proportional-integral controllers for left and right ventricular assist devices and only requires intrinsic pump parameters (speed and power) to maintain differential pump speeds (Delta RPML and Delta RPMR) above user-defined thresholds to prevent ventricular suction, and average reference pressure heads (Delta P-L, Delta P-R) to provide physiologic perfusion and balance left-right-sided flow rates. A model-based approach with extended Kalman and Golay-Savitzky filters was used to estimate Delta P-L and Delta P-R. Efficacy and robustness of the algorithm were evaluated in silico during simulated rest and exercise test conditions for: 1) excessive Delta P-L and/or Delta P-R setpoints; 2) rapid threefold increase in pulmonary vascular or vena caval resistances; 3) transitions from exercise to rest; and 4) ventricular fibrillation. Results and Conclusion: The proposed sensorless BiVAD algorithm successfully prevented suction, restored physiologic perfusion, and inherently maintained left-right-sided balance for all test conditions. Significance: The proposed algorithm does not require any device modification and may be integrated into current clinical BiVADs.
机译:目的:旋转双心室辅助设备(BiVAD)是植入双心衰竭患者左右心室中的机械泵,用于抽血并提供机械循环支持。本文的目的是开发和测试一种新颖的无传感器控制算法,该算法同时满足以下目的:提供生理控制(BiVAD流量满足心脏需求),防止心室吸引以及提供平衡的左右(全身和肺部)流量,而无需在非线性,时变和不连续循环系统中使用植入式流量或压力传感器。方法:该控制算法由两个左右左右心室辅助设备的增益预定比例积分控制器组成,仅需要固有泵参数(速度和功率)即可将差分泵速度(Delta RPML和Delta RPMR)保持在用户定义的阈值以上为防止心室吸引,平均参考压头(Delta PL,Delta PR)可提供生理灌注并平衡左右流量。使用具有扩展卡尔曼和Golay-Savitzky滤波器的基于模型的方法来估计Delta P-L和Delta P-R。在模拟的休息和运动测试条件下,通过计算机评估了算法的有效性和鲁棒性:1)过多的Delta P-L和/或Delta P-R设定点; 2)肺血管或腔静脉阻力迅速增加三倍; 3)从运动到休息的过渡;和4)室颤。结果与结论:所提出的无传感器BiVAD算法在所有测试条件下均成功地防止了抽吸,恢复了生理灌注,并固有地保持了左右平衡。启示:所提出的算法不需要任何设备修改,并且可以集成到当前的临床BiVAD中。

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