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Novel Multiscale Regulation in Human Motor Activity

机译:人类运动活动中的新型多尺度调节

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摘要

Human motor activity is influenced by many factors both extrinsic (work, recreation, reactions to unforeseen random events) and intrinsic (circadian and ultradian rhythms). We investigate if these factors fully account for the complex features observed in recordings of human activity. First, we measure activity over two weeks from forearm motion in subjects undergoing their regular daily routine. We show that no systematic ultradian rhythms exist in human activity during wakefulness. Furthermore, we demonstrate that during wakefulness human activity possesses previously unrecognized dynamic patterns characterized by long-range fractal correlations and nonlinear Fourier phase interactions. These patterns are unaffected by changes in the average activity level occuring within individual subjects throughout the day, on different days, and between subjects. Second, we find that these patterns persist when the same subjects undergo time-isolation laboratory experiments designed to account for the phase of the circadian pacemaker, and to control the known extrinsic factors. We attribute these newly discovered patterns to an intrinsic multi-scale dynamic regulation of human activity that is independent of known extrinsic factors, as well as known intrinsic factors (the circadian and ultradian rhythms).
机译:人类运动活动受许多因素的影响,这些因素既有外部因素(工作,娱乐,对无法预料的随机事件的反应),也有内在因素(昼夜节律和超昼夜节律)。我们调查这些因素是否充分说明了人类活动记录中观察到的复杂特征。首先,我们测量接受日常锻炼的受试者前臂运动两周后的活动。我们表明在清醒过程中人类活动中不存在系统的超变律节奏。此外,我们证明了在觉醒期间,人类活动具有以前无法识别的动态模式,其特征在于远距离分形相关和非线性傅立叶相相互作用。这些模式不受一天中,不同日期以及对象之间个体对象内平均活动水平变化的影响。其次,我们发现,当相同的受试者经过时间隔离的实验室实验时,这些模式仍然存在,这些实验旨在解释昼夜节律起搏器的相位并控制已知的外在因素。我们将这些新发现的模式归因于人类活动的内在多尺度动态调节,该调节独立于已知的外在因素以及已知的内在因素(昼夜节律和超昼夜节律)。

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