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任务条件对伸手动作方向和幅度误差的差异影响。

Differential effect of task conditions on errors of direction and extent of reaching movements.

作者信息

Messier J, Kalaska J F

机构信息

Centre de Recherche en Sciences Neurologiques, Departement de Physiologie, Faculte de Medecine, Universite de Montreal, Succursale Centre-Ville, Canada.

出版信息

Exp Brain Res. 1997 Jul;115(3):469-78. doi: 10.1007/pl00005716.

Abstract

Invariant patterns in the distribution of the endpoints of reaching movements have been used to suggest that two important movement parameters of reaching movements, direction and extent, are planned by two independent processing channels. This study examined this hypothesis by testing the effect of task conditions on variable errors of direction and extent of reaching movements. Subjects made reaching movements to 25 target locations in a horizontal workspace, in two main task conditions. In task 1, subjects looked directly at the target location on the horizontal workspace before closing their eyes and pointing to it. In task 2, arm movements were made to the same target locations in the same horizontal workspace, but target location was displayed on a vertical screen in front of the subjects. For both tasks, variable errors of movement extent (on-axis error) were greater than for movement direction (off-axis error). As a result, the spatial distributions of endpoints about a given target usually formed an ellipse, with the principal axis oriented in the mean movement direction. Also, both on- and off-axis errors increased with movement amplitude. However, the magnitude of errors, especially on-axis errors, scaled differently with movement amplitude in the two task conditions. This suggests that variable errors of direction and extent can be modified independently by changing the nature of the sensorimotor transformations required to plan the movements. This finding is further evidence that the direction and extent of reaching movements appear to be controlled independently by the motor system.

摘要

到达动作终点分布中的不变模式已被用于表明,到达动作的两个重要运动参数,即方向和范围,是由两个独立的处理通道规划的。本研究通过测试任务条件对到达动作方向和范围的可变误差的影响来检验这一假设。在两种主要任务条件下,受试者在水平工作空间中向25个目标位置进行到达动作。在任务1中,受试者在闭上眼睛并指向水平工作空间上的目标位置之前,直接看向该目标位置。在任务2中,手臂向相同水平工作空间中的相同目标位置移动,但目标位置显示在受试者前方的垂直屏幕上。对于这两项任务,运动范围的可变误差(轴上误差)大于运动方向的可变误差(轴外误差)。结果,围绕给定目标的终点空间分布通常形成一个椭圆,主轴沿平均运动方向定向。此外,轴上和轴外误差均随运动幅度增加。然而,在两种任务条件下,误差大小,尤其是轴上误差,随运动幅度的缩放方式不同。这表明,通过改变规划动作所需的感觉运动转换的性质,可以独立地改变方向和范围的可变误差。这一发现进一步证明,到达动作的方向和范围似乎由运动系统独立控制。

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