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在有意和模仿性运动行为期间,前额叶前皮质(BA10)与手部肌肉收缩之间的功能耦合。

Functional coupling between anterior prefrontal cortex (BA10) and hand muscle contraction during intentional and imitative motor acts.

作者信息

Babiloni Claudio, Vecchio Fabrizio, Bares Martin, Brazdil Milan, Nestrasil Igor, Eusebi Fabrizio, Rossini Paolo Maria, Rektor Ivan

机构信息

Dipartimento di Fisiologia Umana e Farmacologia, Università La Sapienza, Rome, Italy.

出版信息

Neuroimage. 2008 Feb 1;39(3):1314-23. doi: 10.1016/j.neuroimage.2007.09.043. Epub 2007 Oct 4.

Abstract

The present study tested the hypothesis that functional cortico-muscular coupling is a putative physiological mechanism by which Brodmann area 10 (BA10) of anterior prefrontal cortex controls subjects' behavior. Intracerebral stereo electroencephalographic (SEEG) data were recorded from BA10 of epilepsy subjects in the course of pre-surgical monitoring. During the SEEG recordings, these subjects were engaged in three conditions: the execution of intentional hand muscle contractions as triggered by auditory stimuli ("EXE"); the execution of the same muscle contractions as an imitation of a person seated in front of the subject ("IMI"); and the mere observation of the hand muscle contractions performed by that person ("OBS"). SEEG frequency bands of interest were theta (4-7 Hz), alpha (8-12 Hz), beta 1 (13-21 Hz), beta 2 (22-30 Hz), and gamma (31-45 Hz). Results showed that functional cortico-muscular coupling at gamma band was higher in amplitude during the intentional muscle contraction ("EXE") than the other conditions ("IMI" and "OBS"). Instead, cortico-muscular coupling at theta band was higher in amplitude during the imitative muscle contraction ("IMI") than the other conditions ("EXE" and "OBS"). In parallel, there was an increase of SEEG gamma band power during the intentional muscle contraction and an increase of SEEG theta band power during its imitation. The present results suggest that anterior prefrontal cortex (BA10) might control subjects' behavior by means of functional cortico-muscular coupling at selective frequency bands (theta and wide gamma rhythms).

摘要

本研究检验了以下假设

功能性皮质-肌肉耦合是前额叶前皮质布罗德曼10区(BA10)控制受试者行为的一种假定生理机制。在术前监测过程中,从癫痫患者的BA10记录了脑内立体脑电图(SEEG)数据。在SEEG记录期间,这些受试者参与了三种情况:由听觉刺激触发的故意手部肌肉收缩的执行(“EXE”);模仿坐在受试者面前的人的相同肌肉收缩的执行(“IMI”);以及仅仅观察那个人执行的手部肌肉收缩(“OBS”)。感兴趣的SEEG频段为θ(4 - 7Hz)、α(8 - 12Hz)、β1(13 - 21Hz)、β2(22 - 30Hz)和γ(31 - 45Hz)。结果表明,在故意肌肉收缩(“EXE”)期间,γ频段的功能性皮质-肌肉耦合幅度高于其他情况(“IMI”和“OBS”)。相反,在模仿肌肉收缩(“IMI”)期间,θ频段的皮质-肌肉耦合幅度高于其他情况(“EXE”和“OBS”)。同时,在故意肌肉收缩期间SEEGγ频段功率增加,在模仿期间SEEGθ频段功率增加。目前的结果表明,前额叶前皮质(BA10)可能通过选择性频段(θ和宽γ节律)的功能性皮质-肌肉耦合来控制受试者的行为。

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