A mathematical model for tremor genesis in Parkinson disease from a chaotic view

Fatemeh Ghoreishian, M. Pooyan
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引用次数: 1

Abstract

A mathematical model of Parkinsonian tremor is presented in this research. This model contains structures involved in tremor genesis from brain to muscle. The result of this study is compared with physiological parkinsonian tremor by using the correlation dimension, the largest Lyapunov exponent and the Kolmogorov entropy. The correlation dimension represents the complexity and the largest Lyapunov exponent and the Kolmogorov entropy indicates the chaoticity of the system. This comparison shows that the obtained result based on the purposed model is close to experimental data, so the presented model is an accurate and applicable model.
从混沌的观点看帕金森病震颤发生的数学模型
本研究提出了帕金森震颤的数学模型。这个模型包含了从大脑到肌肉的震颤发生的结构。利用相关维数、最大Lyapunov指数和Kolmogorov熵,将研究结果与生理性帕金森震颤进行了比较。相关维数表示系统的复杂性和最大Lyapunov指数,Kolmogorov熵表示系统的混沌性。对比表明,基于目标模型得到的结果与实验数据接近,表明该模型是一种准确、适用的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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