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首页> 外文期刊>Bulletin of experimental biology and medicine >Models of Reactions of Human Heart as Nonlinear Dynamic System to Cosmic and Geophysical Factors
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Models of Reactions of Human Heart as Nonlinear Dynamic System to Cosmic and Geophysical Factors

机译:作为非线性动力系统的人类心脏对宇宙和地球物理因素的反应模型

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The paper analyzes theoretical models of the adaptive modes of generation and stability of human heart as a nonlinear point source. The analysis encompasses only ECG time-domain dynamics. To solve the general problem of the study of the adaptive changes of the cardio-signal under the action of external periodic force and parametric noise, a new dynamic model is proposed, which incorporates two control physical parameters: power of signal generation and coefficient of diffuse signal scattering. For the entire set of parameters, the examined modeled nonlinear system demonstrated a number of various performance modes ranging from steady-state periodic and quasi-periodic states to chaos. The model showed that variations in cosmic, geophysical, and weather conditions in the frequency range of 0.1-0.9 Hz produce the greatest biotropic influence.
机译:本文分析了作为非线性点源的人类心脏的适应性生成和稳定性模式的理论模型。该分析仅包含ECG时域动态。为解决研究在外部周期性力和参数噪声作用下心脏信号适应性变化的一般研究问题,提出了一种新的动力学模型,该模型结合了两个控制物理参数:信号产生功率和扩散系数信号散射。对于整个参数集,所检查的建模非线性系统演示了从稳态周期性和准周期性状态到混沌的多种不同性能模式。该模型表明,宇宙,地球物理和天气条件在0.1-0.9 Hz频率范围内的变化会产生最大的生物亲和力影响。

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