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人类心跳动力学中的多重分形特性

Multifractality in human heartbeat dynamics.

作者信息

Ivanov P C, Amaral L A, Goldberger A L, Havlin S, Rosenblum M G, Struzik Z R, Stanley H E

机构信息

Center for Polymer Studies and Department of Physics, Boston University, Massachusetts 02215, USA.

出版信息

Nature. 1999 Jun 3;399(6735):461-5. doi: 10.1038/20924.

Abstract

There is evidence that physiological signals under healthy conditions may have a fractal temporal structure. Here we investigate the possibility that time series generated by certain physiological control systems may be members of a special class of complex processes, termed multifractal, which require a large number of exponents to characterize their scaling properties. We report on evidence for multifractality in a biological dynamical system, the healthy human heartbeat, and show that the multifractal character and nonlinear properties of the healthy heart rate are encoded in the Fourier phases. We uncover a loss of multifractality for a life-threatening condition, congestive heart failure.

摘要

有证据表明,健康状态下的生理信号可能具有分形时间结构。在此,我们研究了由某些生理控制系统生成的时间序列可能是一类特殊的复杂过程(称为多重分形)的成员的可能性,这类过程需要大量指数来表征其标度特性。我们报告了生物动力系统(健康人的心跳)中多重分形的证据,并表明健康心率的多重分形特征和非线性特性编码在傅里叶相位中。我们发现,对于危及生命的充血性心力衰竭病症,多重分形性会丧失。

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