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双手抓握规划反映的是约束主导地位的变化,而不是固定不变的。

Bimanual grasp planning reflects changing rather than fixed constraint dominance.

机构信息

Donders Institute for Brain, Cognition, and Behaviour, Radboud University Nijmegen, Nijmegen, The Netherlands.

出版信息

Exp Brain Res. 2010 Sep;205(3):351-62. doi: 10.1007/s00221-010-2368-2. Epub 2010 Jul 24.

Abstract

We studied whether motor-control constraints for grasping objects that are moved to new positions reflect a rigid constraint hierarchy or a flexible constraint hierarchy. In two experiments, we asked participants to move two plungers from the same start locations to different target locations (both high, both low, or one high and one low). We found that participants grasped the plungers symmetrically and at heights that ensured comfortable or easy-to-control end postures when the plungers had the same target heights, but these grasp tendencies were reduced when the plungers had different target heights. In addition, when the plungers had different mass distributions, participants behaved in ways that suggested still-different emphases of the relevant grasp constraints. When the plungers had different mass distributions, participants sacrificed bimanual symmetry for end-state comfort. The results suggest that bimanual grasp planning relies on a flexible rather than static hierarchy. Different constraints take on different degrees of importance depending on the nature of the task and on the level of task experience. The results have implications for the understanding of perceptual-motor skill learning. It may be that one mechanism underlying such learning is changing the priorities of task constraints.

摘要

我们研究了在将物体移动到新位置时,用于抓握物体的运动控制约束条件是反映了刚性约束层次结构还是灵活的约束层次结构。在两项实验中,我们要求参与者从相同的起始位置将两个柱塞移动到不同的目标位置(都是高的、都是低的或一个高的和一个低的)。我们发现,当柱塞具有相同的目标高度时,参与者以对称的方式抓住柱塞,并以确保舒适或易于控制的末端姿势的高度进行抓握,但当柱塞具有不同的目标高度时,这些抓握倾向会降低。此外,当柱塞具有不同的质量分布时,参与者的行为表明相关抓握约束的重点仍然不同。当柱塞具有不同的质量分布时,参与者为了末端状态的舒适而牺牲了双手对称。结果表明,双手抓握规划依赖于灵活而非静态的层次结构。不同的约束根据任务的性质和任务经验的水平具有不同的重要性。这些结果对理解感知运动技能学习具有启示意义。可能是学习的一个机制是改变任务约束的优先级。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50f1/2923322/5c25a34347f7/221_2010_2368_Fig1_HTML.jpg

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