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首页> 外文期刊>Journal of Neurophysiology >Hemispheric differences in the relationship between corticomotor excitability changes following a fine-motor task and motor learning.
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Hemispheric differences in the relationship between corticomotor excitability changes following a fine-motor task and motor learning.

机译:精细运动任务和运动学习后,皮质运动兴奋性变化之间关系的半球差异。

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Motor performance induces a postexercise increase in corticomotor excitability that may be associated with motor learning. We investigated whether there are hemispheric differences in the extent and/or time course of changes in corticomotor excitability following a manipulation task (Purdue pegboard) and their relationship with motor performance. Single- and paired-pulse (3 ms) transcranial magnetic stimulation (TMS) was used to assess task-induced facilitation of the muscle evoked potential (MEP) and intracortical inhibition (ICI) for three intrinsic hand muscles acting on digits 1, 2, and 5. Fifteen right-handed subjects performed three 30-s pegboard trials with left or right hand in separate sessions. TMS was applied to contralateral motor cortex before and after performance. Number of pegs placed was higher with the right hand, and performance improved (motor learning) with both hands over the three trials. MEP facilitation following performance was short-lasting (<15 min), selective for muscles engaged in gripping the pegs, and of similar magnitude in left and right hands. ICI was reduced immediately following performance with the right hand, but not the left. The extent of MEP facilitation was positively correlated with motor learning for the right hand only. We conclude that the pegboard task induces a selective, short-lasting change in excitability of corticospinal neurons controlling intrinsic hand muscles engaged in the task. Only left hemisphere changes were related to motor learning. This asymmetry may reflect different behavioral strategies for performance improvement with left and right upper limb in this task or hemispheric differences in the control of skilled hand movements.
机译:运动表现会导致运动后兴奋性增加,这可能与运动学习有关。我们调查了在完成一项操纵任务(Purdue钉板)后皮质运动兴奋性变化的程度和/或时间过程中是否存在半球差异,以及它们与运动表现的关系。使用单脉冲和成对脉冲(3毫秒)经颅磁刺激(TMS)来评估任务诱导的作用于手指1、2、3的三只内在手部肌肉诱发电位(MEP)和皮质内抑制(ICI)的促进作用5. 15名惯用右手的受试者在单独的练习中用左手或右手进行了3次30秒的钉板试验。在运动前后将TMS应用于对侧运动皮层。在这三个试验中,右手放置的钉子数量更高,双手都提高了性能(运动学习)。表演后的MEP促进作用持续时间短(<15分钟),对抓握钉子的肌肉具有选择性,左右手的幅度相似。比赛结束后,右手(而不是左手)立即降低了ICI。 MEP促进程度仅与右手运动学习呈正相关。我们得出的结论是,钉板任务在控制参与该任务的内在手部肌肉的皮质脊髓神经元的兴奋性上引起选择性,持久的变化。仅左半球的变化与运动学习有关。这种不对称可能反映了此行为中左右上肢的性能改善的不同行为策略,或熟练手运动控制中的半球差异。

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