Department of Health and Human Performance, University of Texas at Brownsville, 2.638 REK Building, 80 Fort Brown, Brownsville, TX 78526, USA.
Neurosci Lett. 2011 Feb 25;490(2):156-60. doi: 10.1016/j.neulet.2010.12.048. Epub 2010 Dec 29.
Prior research has shown that fluctuations in the relative phase of bimanual coordination do not reflect a white Gaussian noise process. The present study furthered the examination of time-dependent properties in bimanual coordination by comparing the magnitude of relative phase variability and the degree of effector independence within the time domain. The original Kelso (1984) [10] bimanual frequency-scaling protocol was reproduced in which phase transitions from antiphase to in-phase were induced with increasing movement frequency. The results showed that as movement frequency was scaled-up the amount of relative phase variability increased and the effector movements became more dependent prior to the transition. This is consistent with previous modeling showing that stronger effector coupling can prevent the occurrence of phase transitions when long range correlations in relative phase are present. It appears that, as movement frequency is scaled up, increases in effector coupling strength minimize loss of pattern stability and delay the onset of phase transitions.
先前的研究表明,双手协调的相对相位波动并不反映白高斯噪声过程。本研究通过比较相对相位变化的幅度和效应器在时域内的独立性程度,进一步考察了双手协调的时变特性。原始 Kelso(1984)[10]的双手频率调整协议被复制,其中随着运动频率的增加,从反相到同相的相位转变被诱发。结果表明,随着运动频率的增加,相对相位变化的幅度增加,在转变之前,效应器运动变得更加依赖。这与之前的模型一致,即在存在相对相位的长程相关性时,更强的效应器耦合可以防止相位转变的发生。看来,随着运动频率的增加,效应器耦合强度的增加可以最大限度地减少模式稳定性的损失,并延迟相位转变的发生。