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首页> 外文期刊>Artificial Organs >A Physiological Controller for Turbodynamic Ventricular Assist Devices Based on a Measurement of the Left Ventricular Volume
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A Physiological Controller for Turbodynamic Ventricular Assist Devices Based on a Measurement of the Left Ventricular Volume

机译:基于左心室容积测量的涡轮动力心室辅助装置的生理控制器

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摘要

The current article presents a novel physiological control algorithm for ventricular assist devices (VADs), which is inspired by the preload recruitable stroke work. This controller adapts the hydraulic power output of the VAD to the end-diastolic volume of the left ventricle. We tested this controller on a hybrid mock circulation where the left ventricular volume (LVV) is known, i.e., the problem of measuring the LVV is not addressed in the current article. Experiments were conducted to compare the response of the controller with the physiological and with the pathological circulation, with and without VAD support. A sensitivity analysis was performed to analyze the influence of the controller parameters and the influence of the quality of the LVV signal on the performance of the control algorithm. The results show that the controller induces a response similar to the physiological circulation and effectively prevents over- and underpumping, i.e., ventricular suction and backflow from the aorta to the left ventricle, respectively. The same results are obtained in the case of a disturbed LVV signal. The results presented in the current article motivate the development of a robust, long-term stable sensor to measure the LVV.
机译:当前文章介绍了一种新颖的心室辅助设备(VAD)的生理控制算法,该算法的灵感来自可预加载的可招募卒中工作。该控制器使VAD的液压动力输出适应左心室舒张末期容积。我们在已知左心室容积(LVV)的混合模拟循环中测试了该控制器,即当前文章中未解决测量LVV的问题。进行了实验以比较控制器在有和没有VAD支持下的生理和病理循环反应。进行了灵敏度分析,以分析控制器参数的影响以及LVV信号质量对控制算法性能的影响。结果表明,该控制器引起类似于生理循环的反应,并有效地防止了泵浦过高和泵浦不足,即分别从主动脉到左心室的心室吸引和回流。在LVV信号受干扰的情况下,可以获得相同的结果。当前文章中介绍的结果激励了开发一种耐用,长期稳定的传感器来测量LVV。

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