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关于视觉传入信息在控制朝向不同大小目标的瞄准运动中的作用。

On the role of visual afferent information for the control of aiming movements toward targets of different sizes.

作者信息

Proteau Luc, Isabelle Geneviève

机构信息

Département de kinésiologie, Université de Montréal, P O Box 6128, Station "Downtown," Montréal H3C 3J7, Canada.

出版信息

J Mot Behav. 2002 Dec;34(4):367-84. doi: 10.1080/00222890209601954.

Abstract

The authors investigated (a). whether the specificity of practice hypothesis is mediated by the importance of visual afferent information for the control of manual aiming movements and (b). how movement planning and online correction processes to the movement initial impulse are affected by the withdrawal of visual information in transfer. In acquisition, participants (N = 40) aimed at targets of different sizes in a full-vision or in a target-only condition before being transferred to a target-only condition without knowledge of results. The results supported the hypothesis that learning is specific to the source or sources of afferent information that are more likely to ensure optimal performance. The results also suggested that individuals will not always use visual afferent information more extensively when aiming at a small rather than at a large target. Instead, in a temporally constrained task, the relative efficiency of visually based corrections appears to mediate how exclusively an individual will rely on online visual afferent information for movement control. Finally, the detailed kinematic analysis performed in the present study clearly indicated that online modifications to the movement primary impulse are possible, arguing for a continuous or pseudo-continuous control of relatively slow aiming movements on the basis of visual afferent input.

摘要

作者研究了

(a) 练习特异性假说是否由视觉传入信息对手动瞄准运动控制的重要性介导;以及 (b) 在迁移过程中,视觉信息的撤回如何影响对运动初始冲动的运动计划和在线校正过程。在习得阶段,参与者(N = 40)在全视野或仅目标条件下瞄准不同大小的目标,然后在不了解结果的情况下转移到仅目标条件。结果支持了以下假说:学习特定于更有可能确保最佳表现的传入信息源。结果还表明,个体在瞄准小目标而非大目标时,并不总是更广泛地使用视觉传入信息。相反,在时间受限的任务中,基于视觉的校正的相对效率似乎介导了个体在运动控制中对在线视觉传入信息的依赖程度。最后,本研究中进行的详细运动学分析清楚地表明,对运动初始冲动进行在线修改是可能的,这支持了基于视觉传入输入对相对缓慢的瞄准运动进行连续或准连续控制的观点。

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