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在切分节奏的感觉运动同步过程中,对阈下频率变化的快速运动适应。

Rapid motor adaptations to subliminal frequency shifts during syncopated rhythmic sensorimotor synchronization.

作者信息

Thaut Michael H, Kenyon Gary P

机构信息

Molecular, Cellular, and Integrative Neuroscience Program, Center for Biomedical Research in Music, Colorado State University, Fort Collins, CO 80523, USA.

出版信息

Hum Mov Sci. 2003 Aug;22(3):321-38. doi: 10.1016/s0167-9457(03)00048-4.

Abstract

The synchronization of rhythmic arm movements to a syncopated metronome cue was studied in a step-change design whereby small tempo shifts were inserted at fixed time points into the metronome frequency. The cueing sequence involved three stimulus types: (1) target contact in synchrony with the metronome beats, (2) syncopated target contact midway in time between audible beats, and (3) syncopated target contact following either a +2% or -2% change in stimulus frequency. Analysis of normalized and aggregated data revealed that (1) during the syncopation condition the response period showed a rapid adaptation to the frequency-incremented stimulus period, (2) response period was less variable during syncopated movement, (3) mean synchronization error and variability, calculated during syncopation relative to the mathematical midpoint of the stimulus cycle, were reduced during syncopated movements, and (4) synchronization error following the frequency increment showed trends to return linearly to pre-increment values which was fully achieved in the -2% change condition only. The results suggest that frequency entrainment to stimulus period was possible during syncopated movement with the response and stimulus onsets 180 degrees out of phase. Most remarkably, 70-80% of the adaptation of the response period to the new stimulus period was immediately attained during the second half cycle of the syncopated movement. Finally, a mathematical model, based on recursion, was introduced that accurately modeled actual data as a function of the previous stimulus and response intervals and a weighted response of period error and synchronization error, which showed dominance of frequency entrainment over phase entrainment during rhythmic synchronization.

摘要

在一个阶跃变化设计中,研究了有节奏的手臂运动与切分节拍器提示的同步情况,即在节拍器频率的固定时间点插入小的节奏变化。提示序列涉及三种刺激类型:(1)与节拍器节拍同步的目标接触;(2)在可听节拍之间的时间中点的切分目标接触;(3)在刺激频率有+2%或-2%变化后的切分目标接触。对归一化和汇总数据的分析表明:(1)在切分条件下,反应期对频率增加的刺激期表现出快速适应;(2)切分运动期间反应期的变异性较小;(3)相对于刺激周期数学中点计算的切分运动期间的平均同步误差和变异性在切分运动期间减小;(4)频率增加后的同步误差显示出线性回归到增加前值的趋势,仅在-2%变化条件下完全实现。结果表明,在切分运动期间,反应与刺激起始相位相差180度时,对刺激期的频率夹带是可能的。最显著的是,在切分运动的后半周期内,反应期对新刺激期的适应有70%-80%能立即实现。最后,引入了一个基于递归的数学模型,该模型根据先前的刺激和反应间隔以及周期误差和同步误差的加权反应准确地模拟了实际数据,这表明在节奏同步过程中频率夹带比相位夹带占主导地位。

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