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不同形式的运动认知和运动特征对脑区的神经功能调节。

Neurofunctional modulation of brain regions by distinct forms of motor cognition and movement features.

作者信息

Piefke Martina, Kramer Kira, Korte Mia, Schulte-Rüther Martin, Korte Jan M, Wohlschläger Afra M, Weber Jochen, Shah Nadim J, Huber Walter, Fink Gereon R

机构信息

Department of Medicine, Institute of Neuroscience and Biophysics, Research Center Jülich, Germany.

出版信息

Hum Brain Mapp. 2009 Feb;30(2):432-51. doi: 10.1002/hbm.20514.

Abstract

Extrastriate, parietal, and frontal brain regions are differentially involved in distinct kinds of body movements and motor cognition. Using functional magnetic resonance imaging, we investigated the neural mechanisms underlying the observation and mental imagery of meaningful face and limb movements with or without objects. The supplementary motor area was differentially recruited by the mental imagery of movements while there were differential responses of the extrastriate body area (EBA) during the observation conditions. Contrary to most previous reports, the EBA responded to face movements, albeit to a lesser degree than to limb movements. The medial wall of the intraparietal sulcus and adjacent intraparietal cortex was selectively recruited by the processing of meaningful upper limb movements, irrespective of whether these were object-related or not. Besides reach and grasp movements, the intraparietal sulcus may thus be involved in limb gesture processing, that is, in an important aspect of human social communication. We conclude that subregions of a frontal-parietal network differentially interact during the cognitive processing of body movements according to the specific motor-related task at hand and the particular movement features involved.

摘要

纹外、顶叶和额叶脑区在不同类型的身体运动和运动认知中发挥着不同的作用。我们使用功能磁共振成像技术,研究了有或无物体时,有意义的面部和肢体运动的观察与心理意象背后的神经机制。运动的心理意象会不同程度地激活辅助运动区,而在观察条件下,纹外体区(EBA)会有不同的反应。与之前的大多数报告相反,EBA对面部运动有反应,尽管其反应程度低于对肢体运动的反应。无论有意义的上肢运动是否与物体相关,顶内沟内侧壁及相邻的顶内皮层在处理这些运动时会被选择性激活。因此,除了伸展和抓握运动外,顶内沟可能还参与肢体手势处理,即人类社会交流的一个重要方面。我们得出结论,根据手头特定的运动相关任务和所涉及的特定运动特征,额顶网络的子区域在身体运动的认知处理过程中会有不同的相互作用。

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