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触觉引导对学习新的视觉运动任务的影响。

Influence of haptic guidance in learning a novel visuomotor task.

作者信息

van Asseldonk Edwin H F, Wessels Martijn, Stienen Arno H A, van der Helm Frans C T, van der Kooij Herman

机构信息

MIRA, Faculty of Engineering Technology, Dept. of Biomechanical Engineering, University of Twente, Enschede, The Netherlands.

出版信息

J Physiol Paris. 2009 Sep-Dec;103(3-5):276-85. doi: 10.1016/j.jphysparis.2009.08.010. Epub 2009 Aug 7.

Abstract

In (re)learning of movements, haptic guidance can be used to direct the needed adaptations in motor control. Haptic guidance influences the main driving factors of motor adaptation, execution error, and control effort in different ways. Human-control effort is dissipated in the interactions that occur during haptic guidance. Minimizing the control effort would reduce the interaction forces and result in adaptation. However, guidance also decreases the magnitude of the execution errors, which could inhibit motor adaptation. The aim of this study was to assess how different types of haptic guidance affect kinematic adaptation in a novel visuomotor task. Five groups of subjects adapted to a reaching task in which the visual representation of the hand was rotated 30 degrees. Each group was guided by a different force field. The force fields differed in magnitude and direction in order to discern the adaptation based on execution errors and control effort. The results demonstrated that the execution error did indeed play a key role in adaptation. The more the guiding forces restricted the occurrence of execution errors, the smaller the amount and rate of adaptation. However, the force field that enlarged the execution errors did not result in an increased rate of adaptation. The presence of a small amount of adaptation in the groups who did not experience execution errors during training suggested that adaptation could be driven on a much slower rate and on the basis of minimization of control effort as was evidenced by a gradual decrease of the interaction forces during training. Remarkably, also in the group in which the subjects were passive and completely guided, a small but significant adaptation occurred. The conclusion is that both minimization of execution errors and control effort drives kinematic adaptation in a novel visuomotor task, but the latter at a much slower rate.

摘要

在运动的(重新)学习过程中,触觉引导可用于指导运动控制中所需的适应性调整。触觉引导以不同方式影响运动适应性、执行误差和控制努力等主要驱动因素。人体控制努力在触觉引导过程中发生的相互作用中耗散。将控制努力最小化会减少相互作用力并导致适应性变化。然而,引导也会减小执行误差的幅度,这可能会抑制运动适应性。本研究的目的是评估不同类型的触觉引导如何影响一项新颖的视觉运动任务中的运动学适应性。五组受试者适应一项伸手任务,其中手部的视觉呈现旋转了30度。每组由不同的力场引导。力场在大小和方向上有所不同,以便基于执行误差和控制努力来辨别适应性变化。结果表明,执行误差确实在适应性变化中起关键作用。引导力对执行误差发生的限制越大,适应性变化的量和速率就越小。然而,增大执行误差的力场并未导致适应性变化速率增加。在训练期间未经历执行误差的组中存在少量适应性变化,这表明适应性变化可能以慢得多的速率并基于控制努力的最小化来驱动,这在训练期间相互作用力的逐渐减小中得到证明。值得注意的是,在受试者处于被动状态且完全被引导的组中,也发生了小但显著的适应性变化。结论是,执行误差的最小化和控制努力都驱动了一项新颖的视觉运动任务中的运动学适应性变化,但后者的速率要慢得多。

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