Vangheluwe Sophie, Puttemans Veerle, Wenderoth Nicole, Van Baelen Marc, Swinnen Stephan P
Laboratory of Motor Control, Department of Kinesiology, Group Biomedical Sciences, K.U. Leuven, Tervuurse Vest 101, 3001 Leuven, Belgium.
Behav Brain Res. 2004 Oct 5;154(2):535-47. doi: 10.1016/j.bbr.2004.03.022.
The present study examined whether the ability to dissociate bimanual limb movements following learning of a new coordination task (i.e. star-line drawing paradigm) can be generalised to different effector systems, as expressed by inter- and intralimb transfer. In Experiment 1, subjects practised the 'Line-Star' task (i.e. left arm traced the line/right arm traced the star) and then transferred this pattern to its symmetry partner: the 'Star-Line' task (left arm star/right arm line). In Experiment 2, intralimb transfer from the shoulder-elbow (proximal) to the wrist-finger joints (distal), and vice versa, was investigated. Results revealed positive interlimb transfer among symmetry partners of the star-line movement. Moreover, learning the star-line task spontaneously transferred from the trained to the untrained effector system whereby proximal to distal transfer was larger than vice versa. It is concluded that learning to spatially dissociate the movements of both limbs is generalisable to different motor conditions even though transfer to some conditions is suboptimal. It is hypothesised that the nature of the representation of the spatial interference task is largely effector independent.
本研究考察了在学习一项新的协调任务(即星形-线条绘制范式)后,双手肢体运动分离能力是否可以推广到不同的效应器系统,这通过肢体间和肢体内部的迁移来体现。在实验1中,受试者练习“线条-星形”任务(即左臂绘制线条/右臂绘制星形),然后将这种模式迁移到其对称任务:“星形-线条”任务(左臂绘制星形/右臂绘制线条)。在实验2中,研究了从肩-肘(近端)到腕-指关节(远端)的肢体内部迁移,反之亦然。结果显示,星形-线条运动的对称任务之间存在正向的肢体间迁移。此外,学习星形-线条任务能自发地从训练的效应器系统迁移到未训练的效应器系统,其中从近端到远端的迁移比从远端到近端的迁移更大。研究得出结论,学习在空间上分离双肢运动可以推广到不同的运动条件,尽管向某些条件的迁移并不理想。据推测,空间干扰任务表征的性质在很大程度上与效应器无关。