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通过改变视觉输入来学习手臂/手部协调。

Learning arm/hand coordination with an altered visual input.

机构信息

Department of Health Science and Technology, Center for Sensory-Motor Interaction, Aalborg University, DK-9220 Aalborg, Denmark.

出版信息

Comput Intell Neurosci. 2010;2010. doi: 10.1155/2010/520781. Epub 2010 Jul 19.

Abstract

The focus of this study was to test a novel tool for the analysis of motor coordination with an altered visual input. The altered visual input was created using special glasses that presented the view as recorded by a video camera placed at various positions around the subject. The camera was positioned at a frontal (F), lateral (L), or top (T) position with respect to the subject. We studied the differences between the arm-end (wrist) trajectories while grasping an object between altered vision (F, L, and T conditions) and normal vision (N) in ten subjects. The outcome measures from the analysis were the trajectory errors, the movement parameters, and the time of execution. We found substantial trajectory errors and an increased execution time at the baseline of the study. We also found that trajectory errors decreased in all conditions after three days of practice with the altered vision in the F condition only for 20 minutes per day, suggesting that recalibration of the visual systems occurred relatively quickly. These results indicate that this recalibration occurs via movement training in an altered condition. The results also suggest that recalibration is more difficult to achieve for altered vision in the F and L conditions compared to the T condition. This study has direct implications on the design of new rehabilitation systems.

摘要

本研究的重点是测试一种新的工具,用于分析在视觉输入改变的情况下的运动协调。改变的视觉输入是使用特殊的眼镜创建的,这些眼镜呈现了由放置在主体周围不同位置的摄像机记录的视图。摄像机相对于主体处于正面(F)、侧面(L)或顶部(T)位置。我们研究了在改变视觉(F、L 和 T 条件)和正常视觉(N)下,十名受试者抓取物体时的手臂末端(手腕)轨迹之间的差异。分析的结果测量是轨迹误差、运动参数和执行时间。我们发现,在研究的基线时,存在显著的轨迹误差和执行时间增加。我们还发现,在三天的改变视觉练习后,所有条件下的轨迹误差都有所减少,只有在 F 条件下每天练习 20 分钟,这表明视觉系统的重新校准相对较快。这些结果表明,这种重新校准是通过在改变的条件下进行运动训练来实现的。结果还表明,与 T 条件相比,F 和 L 条件下的改变视觉的重新校准更难实现。这项研究对新的康复系统的设计有直接的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c152/2913529/4d8c453c5351/CIN2010-520781.001.jpg

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