Is the human primary motor cortex activated by muscular or direction-dependent features of observed movements?

被引:83
作者
Alaerts, Kaat [1 ]
Swinnen, Stephan P. [1 ]
Wenderoth, Nicole [1 ]
机构
[1] Katholieke Univ Leuven, Dept Biomed Kinesiol, Grp Biomed Sci, Motor Control Lab,Div Movement Control & Neuropla, B-3001 Heverlee, Belgium
基金
比利时弗兰德研究基金会;
关键词
Mirror neurons; Action observation; Transcranial magnetic stimulation; Primary motor cortex; Movement interference; MAGNETIC STIMULATION; FACILITATION; MODULATION; PREMOTOR; REPRESENTATIONS; SYSTEM; INTERFERENCE; EXCITABILITY; MUSCLE; AREAS;
D O I
10.1016/j.cortex.2008.10.005
中图分类号
B84 [心理学]; C [社会科学总论]; Q98 [人类学];
学科分类号
010107 [宗教学]; 030301 [社会学]; 070906 [古生物学及地层学(含古人类学)];
摘要
Previous Transcranial Magnetic Stimulation (TMS) studies have shown that the observer's motor system is facilitated by the sole observation of motor actions. However, it has not been possible so far to decide whether the observer's motor system resonates primarily with the observed movement direction or the observed muscle activity, as both factors usually co-varied in these action observation studies. Here, we applied TMS to the wrist extensor and flexor during the observation of wrist motions such that the posture of the observer and the model in the video were either congruent or incongruent. Due to this manipulation, it was possible to disentangle whether the observer's primary motor cortex (M1) is facilitated in accordance to either the observed movement direction or the observed muscle activation. Findings revealed that M1 resonated predominantly according to muscle-specific rather than direction-specific parameters of observed movements. More specifically, muscle-specific facilitation was maximal during congruent postures and remained evident, even though to a lower extent, during incongruent postures in which muscle activation and movement direction parameters were discordant. Our findings support the hypothesis that M1 contributes to action observation, by representing the observed movement in intrinsic, muscle-related coordinates. This transformation from extrinsic to intrinsic coordinates might be an important prerequisite for action understanding and imitation. Additionally, our data offer a neurophysiological explanation for interference that emerges when an action is performed while an incongruent action is observed. (C) 2008 Elsevier Srl. All rights reserved.
引用
收藏
页码:1148 / 1155
页数:8
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