Doumas Michail, Praamstra Peter, Wing Alan M
Behavioural Brain Sciences Center, School of Psychology, The University of Birmingham, Edgbaston, UK.
Exp Brain Res. 2005 Nov;167(2):238-45. doi: 10.1007/s00221-005-0029-7. Epub 2005 Nov 15.
Previous studies using low frequency (1 Hz) rTMS over the motor and premotor cortex have examined repetitive movements, but focused either on motor aspects of performance such as movement speed, or on variability of the produced intervals. A novel question is whether TMS affects the synchronization of repetitive movements with an external cue (sensorimotor synchronization). In the present study participants synchronized finger taps with the tones of an auditory metronome. The aim of the study was to examine whether motor and premotor cortical inhibition induced by rTMS affects timing aspects of synchronization performance such as the coupling between the tap and the tone and error correction after a metronome perturbation. Metronome sequences included perturbations corresponding to a change in the duration of a single interval (phase shifts) that were either small and below the threshold for conscious perception (10 ms) or large and perceivable (50 ms). Both premotor and motor cortex stimulation induced inhibition, as reflected in a lengthening of the silent period. Neither motor nor premotor cortex rTMS altered error correction after a phase shift. However, motor cortex stimulation made participants tap closer to the tone, yielding a decrease in tap-tone asynchrony. This provides the first neurophysiological demonstration of a dissociation between error correction and tap-tone asynchrony in sensorimotor synchronization. We discuss the results in terms of current theories of timing and error correction.
以往使用低频(1赫兹)重复经颅磁刺激(rTMS)作用于运动皮层和运动前区皮层的研究,已对重复性动作进行了检验,但要么聚焦于动作表现的运动方面,如动作速度,要么关注所产生间隔的变异性。一个新问题是,经颅磁刺激是否会影响重复性动作与外部提示的同步性(感觉运动同步)。在本研究中,参与者使手指敲击与听觉节拍器的音调同步。该研究的目的是检验rTMS诱导的运动皮层和运动前区皮层抑制是否会影响同步表现的时间方面,如敲击与音调之间的耦合以及节拍器扰动后的误差校正。节拍器序列包括对应于单个间隔持续时间变化(相位偏移)的扰动,这些扰动要么幅度小且低于意识感知阈值(10毫秒),要么幅度大且可感知(50毫秒)。运动前区皮层和运动皮层的刺激均诱导了抑制,这表现为静息期延长。运动皮层和运动前区皮层的rTMS均未改变相位偏移后的误差校正。然而,运动皮层刺激使参与者的敲击更接近音调,从而使敲击与音调之间的异步性降低。这首次从神经生理学角度证明了感觉运动同步中误差校正与敲击 - 音调异步性之间的分离。我们根据当前的时间和误差校正理论对结果进行了讨论。