熵值和李雅普诺夫指数分析表明,年龄变化会改变心率动态的复杂性

R. Siciliano, Giuseppe Agapito, S. Siciliano, F. Fimognari
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引用次数: 1

摘要

近年来,许多研究小组试图量化个体的生理信号,提出新的模型来评估生物控制系统的复杂动力学。事实上,生命与生物体结构和生理控制机制的良好处理相吻合,而疾病和死亡与结构和协调功能的丧失相吻合。通常控制健康的稳态系统与当激活不足时引起病理事件的系统相同,或者更确切地说,当基本生理过程的秩序和混乱之间的平衡不再与身体内外的任何类型的压力有效控制时。在一个复杂的系统中,生理信号之间通信的丢失或改变意味着病理。本文提出了一种基于熵(E)、李雅普诺夫指数(1)、中值绝对偏差(MAD)、多尺度熵(MSE)的信号分析方法,用于估计健康老年人和年轻人的长程时间相关心率(HR)时间序列的复杂度。这些新方法可以通过采用新的模型和实验范式来提高对人体生理系统的整体理解,例如分形和熵的模型和试验范式,这些模型和范式有能力从器官医学转向现代系统医学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aging changes complexity of heart rate dynamics assessed by entropy and Lyapunov exponent analysis
In recent years, many research groups are trying to quantify the physiological signals of an individual, proposing new models to assess the complex dynamics of biological control systems. Indeed, life coincides with the good handling of the structures in the organism and of physiological control mechanisms, while disease and death coincide with the loss of structure and of coordinated functions. The homeodynamic systems which normally govern health are the same that cause pathological events when activated inadequately, or rather, when the balance between order and chaos of the elementary physiological processes is no longer effectively controlled in relation to any type of stress, both external and internal to the body. In a complex system, loss or alteration of communication between physiological signals means pathology. In this paper a signal analysis method based on Entropy (E), Lyapunov exponent (1), Median Absolute Deviation (MAD), Multiscale Entropy (MSE), is proposed to estimate the complexity of long-range temporal correlation heart rate (HR) time series for an elderly person and a young person both healthy. These new methods could improve overall understanding of the physiological system of the human organism, by adopting new models and experimental paradigms, such as those of fractality and entropy, who have the ability to direct from an organ medicine to a modern systemic medicine.
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