Baloa L A, Boston J R, Antaki J F
Department of Electrical Engineering, University of Pittsburgh, PA, USA.
Ann Biomed Eng. 2001 Mar;29(3):244-51. doi: 10.1114/1.1355275.
A new control strategy for a mock circulatory system (MCS) has been developed to mimic the Starling response of the natural heart. The control scheme is based on Suga's elastance model, which is implemented using nested elastance and pressure feedback control systems. The elastance control loop calculates the desired chamber pressure using a time-varying elastance function and the ventricular chamber volume signal. The pressure control loop regulates the chamber pressure according to this reference signal. Simulations and tests on MCS hardware showed that the elastance-based controller responds to changes in preload, afterload, and contractility in a manner similar to the natural heart. Since the elastance function is an arbitrary function of time, the controller allows modification of ventricular chamber contractility, giving researchers a new tool to mimic various pathological conditions which can be used in the evaluation of cardiac devices such as ventricular assist devices.
一种用于模拟循环系统(MCS)的新控制策略已被开发出来,以模仿自然心脏的斯塔林反应。该控制方案基于须贺的弹性模型,通过嵌套的弹性和压力反馈控制系统来实现。弹性控制回路使用时变弹性函数和心室腔容积信号来计算所需的腔室压力。压力控制回路根据该参考信号调节腔室压力。在MCS硬件上进行的模拟和测试表明,基于弹性的控制器对前负荷、后负荷和收缩性变化的反应方式与自然心脏相似。由于弹性函数是时间的任意函数,该控制器允许改变心室腔的收缩性,为研究人员提供了一种新工具,可用于模拟各种病理状况,这在诸如心室辅助装置等心脏设备的评估中可能会用到。