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外部空间和运动因素对离散运动双手协调性的相对影响。

The relative effects of external spatial and motoric factors on the bimanual coordination of discrete movements.

作者信息

Obhi Sukhvinder S, Haggard Patrick

机构信息

Institute of Cognitive Neuroscience, University College London, Alexandra House, 17 Queen Square, WC1N 3AR, London, UK.

出版信息

Exp Brain Res. 2004 Feb;154(4):399-402. doi: 10.1007/s00221-003-1727-7. Epub 2003 Dec 18.

Abstract

The ability to coordinate the two hands effectively is a fundamental requirement for many everyday tasks. To investigate how bimanual coordination is achieved we asked subjects to perform discrete bimanual key-press responses under conditions in which the motoric (i.e., muscles employed) and external spatial (i.e., direction of movement in external space) relationships between the actions of the left and right index fingers were systematically varied. Subjects made simultaneous right and left index finger key-presses in response to an auditory tone. The right finger always made downward flexion movements whilst the left finger either flexed in a downward/upward direction, or extended in a downward/upward direction. Unimanual control trials of each movement type for both hands were also performed. Reaction times for each hand (RTs) and the inter-response interval (IRI) were recorded. Right hand RTs were significantly affected only when the left finger performed motorically different actions, but were unaffected by the external spatial direction in which the left hand's actions were made. The IRI results followed a similar pattern with the worst coordination (highest IRI) occurring when the left finger performed different motor actions to the right finger regardless of the direction of the left hand movement. In contrast to other recent results from experiments examining oscillatory tasks (e.g., Mechsner et al. 2001), our results suggest that in discrete tasks there is a dominance of the motor relationship between the hands over the external spatial relationship.

摘要

有效协调双手的能力是许多日常任务的基本要求。为了研究双手协调是如何实现的,我们要求受试者在左右食指动作之间的运动(即使用的肌肉)和外部空间(即外部空间中的运动方向)关系被系统改变的条件下,执行离散的双手按键反应。受试者根据听觉音调同时按下左右食指按键。右手手指总是向下弯曲,而左手手指要么向下/向上弯曲,要么向下/向上伸展。我们还对双手的每种运动类型进行了单手控制试验。记录了每只手的反应时间(RTs)和反应间隔(IRI)。只有当左手手指执行不同的运动动作时,右手的反应时间才会受到显著影响,但不受左手动作的外部空间方向的影响。IRI结果呈现出类似的模式,即无论左手运动方向如何,当左手手指与右手手指执行不同的运动动作时,协调性最差(IRI最高)。与最近其他研究振荡任务的实验结果(例如Mechsner等人,2001年)相反,我们的结果表明,在离散任务中,双手之间的运动关系比外部空间关系占主导地位。

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