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自适应调谐函数源于对过去运动的视觉观察。

Adaptive tuning functions arise from visual observation of past movement.

作者信息

Howard Ian S, Franklin David W

机构信息

Centre for Robotics and Neural Systems, School of Computing, Electronics and Mathematics, University of Plymouth, Plymouth, United Kingdom.

Neuromuscular Diagnostics, Department of Sport and Health Science, Technical University of Munich, Munich, Germany.

出版信息

Sci Rep. 2016 Jun 24;6:28416. doi: 10.1038/srep28416.

Abstract

Visual observation of movement plays a key role in action. For example, tennis players have little time to react to the ball, but still need to prepare the appropriate stroke. Therefore, it might be useful to use visual information about the ball trajectory to recall a specific motor memory. Past visual observation of movement (as well as passive and active arm movement) affects the learning and recall of motor memories. Moreover, when passive or active, these past contextual movements exhibit generalization (or tuning) across movement directions. Here we extend this work, examining whether visual motion also exhibits similar generalization across movement directions and whether such generalization functions can explain patterns of interference. Both the adaptation movement and contextual movement exhibited generalization beyond the training direction, with the visual contextual motion exhibiting much broader tuning. A second experiment demonstrated that this pattern was consistent with the results of an interference experiment where opposing force fields were associated with two separate visual movements. Overall, our study shows that visual contextual motion exhibits much broader (and shallower) tuning functions than previously seen for either passive or active movements, demonstrating that the tuning characteristics of past motion are highly dependent on their sensory modality.

摘要

对动作的视觉观察在行动中起着关键作用。例如,网球运动员几乎没有时间对球做出反应,但仍需要准备适当的击球动作。因此,利用关于球轨迹的视觉信息来唤起特定的运动记忆可能会很有用。过去对动作的视觉观察(以及被动和主动手臂动作)会影响运动记忆的学习和唤起。此外,无论是被动还是主动,这些过去的情境动作在运动方向上都表现出泛化(或调整)。在这里,我们扩展了这项工作,研究视觉运动是否也在运动方向上表现出类似的泛化,以及这种泛化功能是否可以解释干扰模式。适应动作和情境动作都表现出超出训练方向的泛化,视觉情境动作表现出更广泛的调整。第二个实验表明,这种模式与干扰实验的结果一致,在该实验中,相反的力场与两个单独的视觉动作相关联。总体而言,我们的研究表明,视觉情境动作表现出比以前在被动或主动动作中看到的更广泛(且更浅)的调整功能,这表明过去动作的调整特征高度依赖于它们的感觉模态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17c6/4920033/bae7034803ec/srep28416-f1.jpg

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