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Non-linear and chaos characteristics of heart sound time series

机译:心音时间序列的非线性和混沌特性

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摘要

Analysis of chaotic time series is common in many fields of science and engineering. It arises primarily from massive interactions between the many different parts of a non-linear system or in non-linear physical phenomena that are intrinsically complex. It is important to analyse the time series of these non-linear dynamic systems based on chaos theory. In recent years, many researchers on heart dynamics have demonstrated that chaos really exists in heart movements. In this study the non-linear and chaos characteristics are investigated and the fractal dimensions (FDs) and largest Lyapunov exponents (LLE) of the heart sound time series are calculated. First, the C–C method is used to estimate the time delay and embedding dimensions which are used to reconstruct the phase spaces. Then, the FDs and LLEs of the different heart sound signals are calculated and analysed, including the healthy heart sound, splitting of the second heart sound, mitral incompetence, and abnormal aortic shrinkage. From the results, the non-linear and chaotic characteristics in heart dynamic movement are found, and the results of LLEs show that the healthy heart has more obvious chaotic movements than abnormal movements.
机译:混沌时间序列的分析在科学和工程学的许多领域都很普遍。它主要是由于非线性系统的许多不同部分之间的本质相互作用或本质上复杂的非线性物理现象引起的。基于混沌理论分析这些非线性动力系统的时间序列非常重要。近年来,许多关于心脏动力学的研究人员证明,心脏运动中确实存在混乱。在这项研究中,研究了非线性和混沌特性,并计算了心音时间序列的分形维数(FDs)和最大Lyapunov指数(LLE)。首先,CC方法用于估计时间延迟和嵌入维数,这些维数用于重构相空间。然后,计算并分析不同心音信号的FD和LLE,包括健康心音,第二心音分裂,二尖瓣功能不全和主动脉收缩异常。从结果中发现了心脏动态运动的非线性和混沌特征,并且LLE的结果表明,健康的心脏比异常运动具有更明显的混沌运动。

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