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Distinguishing the noise and attractor strength of coordinated limb movements using recurrence analysis

机译:用递归分析区分肢体协调运动的噪声和吸引子强度

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摘要

The variability of coupled rhythmic limb movements is assumed to be a consequence of the strength of a movement's attractor dynamic and a constant stochastic noise process that continuously perturbs the movement system away from this dynamic. Recently, it has been suggested that the nonlinear technique of recurrence analysis can be used to index the effects of noise and attractor strength on movement variability. To test this, three experiments were conducted in which the attractor strength of bimanual wrist-pendulum movements (using coordination mode, movement frequency and detuning), as well as the magnitude of stochastic perturbations affecting the variability of these movements (using a temporally fluctuating visual metronome) was manipulated. The results of these experiments demonstrate that recurrence analysis can index parametric changes in the attractor strength of coupled rhythmic limb movements and the magnitude of metronome induced stochastic perturbations independently. The results of Experiments 1 and 2 also support the claim that differences between the variability of inphase and antiphase coordination, and between slow and fast movement frequencies are due to differences in attractor strength. In contrast to the standard assumption that the noise that characterizes interlimb coordination remains constant for different magnitudes of detuning (Delta omega) the results of Experiment 3 suggest that the magnitude of noise increases with increases in vertical bar Delta omega vertical bar.
机译:假定有规律的肢体运动联动的可变性是运动的吸引子动力学的强度和恒定的随机噪声过程的结果,该过程不断扰动运动系统使其远离该动力学。最近,有人提出,非线性递归分析技术可用于索引噪声和吸引子强度对运动变异性的影响。为了测试这一点,进行了三个实验,其中,双手腕摆运动的吸引子强度(使用协调模式,运动频率和失谐),以及影响这些运动的可变性的随机扰动的大小(使用时间波动的视觉)节拍器)被操纵。这些实验的结果表明,递归分析可以独立地指示耦合的节律性肢体运动的吸引子强度和节拍器引起的随机扰动幅度的参数变化。实验1和2的结果也支持这样的主张,即同相和反相协调的可变性之间以及慢速和快速移动频率之间的差异是由于吸引子强度的差异引起的。与标准的假设(表征中间协调的噪声对于不同的失谐大小(Δω)保持恒定)相反,实验3的结果表明,噪声的幅度随垂直条ΔOmega垂直条的增加而增加。

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