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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Applications of control theory to the dynamics and propagation of cardiac action potentials.
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Applications of control theory to the dynamics and propagation of cardiac action potentials.

机译:控制理论在心脏动作电位的动力学和传播中的应用。

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摘要

Sudden cardiac arrest is a widespread cause of death in the industrialized world. Most cases of sudden cardiac arrest are due to ventricular fibrillation (VF), a lethal cardiac arrhythmia. Electrophysiological abnormalities such as alternans (a beat-to-beat alternation in action potential duration) and conduction block have been suspected to contribute to the onset of VF. This study focuses on the use of control-systems techniques to analyze and design methods for suppressing these precursor factors. Control-systems tools, specifically controllability analysis and Lyapunov stability methods, were applied to a two-variable Karma model of the action-potential (AP) dynamics of a single cell, to analyze the effectiveness of strategies for suppressing AP abnormalities. State-feedback-integral (SFI) control was then applied to a Purkinje fiber simulated with the Karma model, where only one stimulating electrode was used to affect the system. SFI control converted both discordant alternans and 2:1 conduction block back toward more normal patterns, over a wider range of fiber lengths and pacing intervals compared with a Pyragas-type chaos controller. The advantages conferred by using feedback from multiple locations in the fiber, and using integral (i.e., memory) terms in the controller, are discussed.
机译:突然的心脏骤停是工业化世界中广泛的死亡原因。心脏骤停的大多数病例归因于室颤(VF),一种致命的心律失常。怀疑有电生理异常,如交替蛋白(动作电位持续时间逐拍交替)和传导阻滞,可导致VF发作。这项研究的重点是使用控制系统技术来分析和设计抑制这些前兆因素的方法。将控制系统工具(特别是可控性分析和Lyapunov稳定性方法)应用于单个细胞的动作电位(AP)动力学的两变量Karma模型,以分析抑制AP异常的策略的有效性。然后将状态反馈积分(SFI)控件应用于使用Karma模型模拟的Purkinje光纤,其中仅使用一个刺激电极来影响系统。与Pyragas型混沌控制器相比,在较宽的纤维长度和起搏间隔范围内,SFI控制将不协调的交替和2:1传导阻滞转换回更正常的模式。讨论了通过使用来自光纤中多个位置的反馈以及使用控制器中的积分(即存储)项所带来的优点。

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