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双手协调的感知基础。

Perceptual basis of bimanual coordination.

作者信息

Mechsner F, Kerzel D, Knoblich G, Prinz W

机构信息

Max Planck Institute for Psychological Research, Department of Cognition and Action, Munich, Germany.

出版信息

Nature. 2001 Nov 1;414(6859):69-73. doi: 10.1038/35102060.

Abstract

Periodic bimanual movements are often the focus of studies of the basic organizational principles of human actions. In such movements there is a typical spontaneous tendency towards mirror symmetry. Even involuntary slips from asymmetrical movement patterns into symmetry occur, but not vice versa. Traditionally, this phenomenon has been interpreted as a tendency towards co-activation of homologous muscles, probably originating in motoric neuronal structures. Here we provide evidence contrary to this widespread assumption. We show for two prominent experimental models-bimanual finger oscillation and bimanual four-finger tapping-that the symmetry bias is actually towards spatial, perceptual symmetry, without regard to the muscles involved. We suggest that spontaneous coordination phenomena of this kind are purely perceptual in nature. In the case of a bimanual circling model, our findings reveal that highly complex, even 'impossible' movements can easily be performed with only simple visual feedback. A 'motoric' representation of the performed perceptual oscillation patterns is not necessary. Thus there is no need to translate such a 'motoric' into a 'perceptual' representation or vice versa, using 'internal models' (ref. 29). We suggest that voluntary movements are organized by way of a representation of the perceptual goals, whereas the corresponding motor activity, of sometimes high complexity, is spontaneously and flexibly tuned in.

摘要

周期性双手运动常常是人类行为基本组织原则研究的重点。在这类运动中,存在一种典型的自发向镜像对称发展的趋势。甚至会出现从非对称运动模式不由自主地滑向对称模式的情况,但反之则不会。传统上,这种现象被解释为同源肌肉共同激活的趋势,可能源自运动神经元结构。在此,我们提供与这一普遍假设相悖的证据。我们针对两种突出的实验模型——双手手指摆动和双手四指敲击——表明,对称偏向实际上是朝向空间感知对称,而不考虑所涉及的肌肉。我们认为,这类自发协调现象本质上纯粹是感知性的。在双手环绕模型的案例中,我们的研究结果表明,仅通过简单的视觉反馈就能轻松完成高度复杂甚至“不可能”的运动。执行的感知振荡模式无需“运动性”表征。因此,无需使用“内部模型”(参考文献29)将这种“运动性”表征转化为“感知性”表征,反之亦然。我们认为,随意运动是通过感知目标的表征来组织的,而相应的有时高度复杂的运动活动会自发且灵活地进行调整。

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