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在异步双手运动练习过程中反应准备的变化。

Response preparation changes during practice of an asynchronous bimanual movement.

作者信息

Maslovat Dana, Carlsen Anthony N, Chua Romeo, Franks Ian M

机构信息

School of Human Kinetics, University of British Columbia, Vancouver, BC, Canada.

出版信息

Exp Brain Res. 2009 May;195(3):383-92. doi: 10.1007/s00221-009-1801-x. Epub 2009 Apr 22.

Abstract

For synchronous bimanual movements, we have shown that a different amplitude can be prepared for each limb in advance and this preparation improves with practice (Maslovat et al. 2008). In the present study, we tested whether an asynchronous bimanual movement can also be prepared in advance and be improved with practice. Participants practiced (160 trials) a discrete bimanual movement in which the right arm led the left by 100 ms in response to an auditory "go" signal (either 80 dB control stimulus or 124 dB startle stimulus). The startle stimulus was used to gauge whether inter-limb timing could be pre-programed. During startle trials, the asynchronous bimanual movement was triggered at early latency suggesting the entire movement could be prepared in advance. However, the triggered movement had a shorter between-arm delay and a temporally compressed within-arm EMG pattern, results that we attribute to increased neural activation caused by the startling stimulus. However, as both startle and control trials improved over time, it does appear response preparation of interval timing can improve with practice.

摘要

对于同步双手运动,我们已经表明,每只肢体可以提前准备不同的幅度,并且这种准备会随着练习而改善(马斯洛瓦特等人,2008年)。在本研究中,我们测试了异步双手运动是否也可以提前准备并随着练习而改善。参与者练习(160次试验)一种离散的双手运动,其中右臂比左臂提前100毫秒对听觉“开始”信号(80分贝控制刺激或124分贝惊吓刺激)做出反应。惊吓刺激用于评估肢体间的时间是否可以预先编程。在惊吓试验期间,异步双手运动在早期潜伏期被触发,这表明整个运动可以提前准备。然而,触发的运动双臂之间的延迟更短,并且手臂内肌电图模式在时间上被压缩,我们将这些结果归因于惊吓刺激引起的神经激活增加。然而,由于惊吓试验和对照试验都随着时间的推移而改善,间隔时间的反应准备似乎确实可以随着练习而改善。

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