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动觉运动想象的工作原理:体育与运动技能中视觉化的预测加工理论。

How Kinesthetic Motor Imagery works: a predictive-processing theory of visualization in sports and motor expertise.

作者信息

Ridderinkhof K Richard, Brass Marcel

机构信息

Dept. of Psychology, University of Amsterdam, The Netherlands; Amsterdam Brain & Cognition (ABC), University of Amsterdam, The Netherlands.

Dept. of Psychology, Ghent University, Belgium.

出版信息

J Physiol Paris. 2015 Feb-Jun;109(1-3):53-63. doi: 10.1016/j.jphysparis.2015.02.003. Epub 2015 Mar 25.

Abstract

Kinesthetic Motor Imagery (KMI) is an important technique to acquire and refine motor skills. KMI is widely used by professional athletes as an effective way to improve motor performance without overt motor output. Despite this obvious relevance, the functional mechanisms and neural circuits involved in KMI in sports are still poorly understood. In the present article, which aims at bridging the sport sciences and cognitive neurophysiology literatures, we give a brief overview of relevant research in the field of KMI. Furthermore, we develop a theoretical account that relates KMI to predictive motor control theories assuming that it is based on internal activation of anticipatory images of action effects. This mechanism allows improving motor performance solely based on internal emulation of action. In accordance with previous literature, we propose that this emulation mechanism is implemented in brain regions that partially overlap with brain areas involved in overt motor performance including the posterior parietal cortex, the cerebellum, the basal ganglia and the premotor cortex. Finally, we outline one way to test the heuristic value of our theoretical framework for KMI; we suggest that experience with motor performance improves the ability to correctly infer the goals of others, in particular in penalty blocking in soccer.

摘要

动觉运动想象(KMI)是一种获取和完善运动技能的重要技术。KMI被职业运动员广泛用作一种在无明显运动输出的情况下提高运动表现的有效方法。尽管有这种明显的相关性,但体育领域中KMI所涉及的功能机制和神经回路仍知之甚少。在本文中,旨在弥合运动科学与认知神经生理学文献之间的差距,我们简要概述了KMI领域的相关研究。此外,我们提出了一种理论解释,将KMI与预测性运动控制理论联系起来,假设它基于动作效果预期图像的内部激活。这种机制允许仅基于动作的内部模拟来提高运动表现。根据先前的文献,我们提出这种模拟机制在与参与明显运动表现的脑区部分重叠的脑区中实现,包括后顶叶皮层、小脑、基底神经节和运动前皮层。最后我们概述了一种测试我们的KMI理论框架启发价值的方法;我们认为运动表现的经验提高了正确推断他人目标的能力,特别是在足球罚球防守中。

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