首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Closed-loop controller for chest compressions based on coronary perfusion pressure: a computer simulation study
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Closed-loop controller for chest compressions based on coronary perfusion pressure: a computer simulation study

机译:基于冠状动脉灌注压的胸部按压闭环控制器:计算机模拟研究

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摘要

High-quality cardiopulmonary resuscitation contributes to cardiac arrest survival. The traditional chest compression (CC) standard, which neglects individual differences, uses unified standards for compression depth and compression rate in practice. In this study, an effective and personalized CC method for automatic mechanical compression devices is provided. We rebuild Charles F. Babbs' human circulation model with a coronary perfusion pressure (CPP) simulation module and propose a closed-loop controller based on a fuzzy control algorithm for CCs, which adjusts the CC depth according to the CPP. Compared with a traditional proportion-integration-differentiation (PID) controller, the performance of the fuzzy controller is evaluated in computer simulation studies. The simulation results demonstrate that the fuzzy closed-loop controller results in shorter regulation time, fewer oscillations and smaller overshoot than traditional PID controllers and outperforms the traditional PID controller for CPP regulation and maintenance.
机译:高质量的心肺复苏有助于心脏骤停的生存。忽略个体差异的传统胸部按压(CC)标准在实践中使用统一的按压深度和压缩率标准。在这项研究中,提供了一种有效且个性化的自动机械压缩装置的CC方法。我们使用冠脉灌注压(CPP)模拟模块重建Charles F. Babbs的人体循环模型,并提出了一种基于模糊控制算法的CC闭环控制器,该控制器根据CPP调整CC深度。与传统的比例积分微分(PID)控制器相比,在计算机仿真研究中评估了模糊控制器的性能。仿真结果表明,与传统的PID控制器相比,模糊闭环控制器的调节时间更短,振荡更少,过冲更小,并且在CPP调节和维护方面优于传统的PID控制器。

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