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与听觉节奏性手指运动相关的大脑振荡网络。

The cerebral oscillatory network associated with auditorily paced finger movements.

作者信息

Pollok Bettina, Gross Joachim, Müller Katharina, Aschersleben Gisa, Schnitzler Alfons

机构信息

Department of Neurology, MEG-Laboratory, Heinrich-Heine University, Moorenstr. 5, 40225 Duesseldorf, Germany.

出版信息

Neuroimage. 2005 Feb 1;24(3):646-55. doi: 10.1016/j.neuroimage.2004.10.009. Epub 2004 Nov 23.

Abstract

Motor tasks involve neural activity in a spatially distributed network. It is assumed that coherent activity between these brain structures reflects functional connectivity. The aim of the present study was to investigate brain areas associated with a unimanual auditorily paced finger-tapping task and to characterize their dynamic interplay. We examined cerebromuscular and cerebrocerebral coupling in 10 right-handed subjects using recordings of continuous brain activity with a 122-channel whole-head neuromagnetometer while subjects performed the task with both hands consecutively. Additionally, surface EMG of the first dorsal interosseus was measured. Our data demonstrate that an oscillatory network composed of primary sensorimotor cortex, lateral as well as mesial premotor areas, the posterior parietal cortex and thalamus contralateral, and cerebellum and primary auditory cortex ipsilateral to the tapping hand subserves task execution. Connectivity between these areas and direction of coupling agree well with anatomical findings. During the right-hand condition, additional oscillatory activity in the primary sensorimotor cortex ipsilateral to the tapping hand was evident. This result suggests an asymmetric motor control in right-handers. Cerebrocerebral coupling predominantly occurs at 8-12 Hz. Therefore, our data support the hypothesis that coupling at 8-12 Hz in a cerebello-thalamic-cortical network represents a fundamental characteristic of the motor system and provides evidence for the significance of 8-12 Hz oscillations in a large scale network during the execution of simple motor tasks.

摘要

运动任务涉及空间分布网络中的神经活动。据推测,这些脑结构之间的相干活动反映了功能连接性。本研究的目的是调查与单手动听觉节奏手指敲击任务相关的脑区,并描述它们的动态相互作用。我们使用122通道全脑神经磁强计记录连续脑活动,在10名右利手受试者连续用双手执行任务时,检查了脑肌耦合和脑脑耦合。此外,还测量了第一背侧骨间肌的表面肌电图。我们的数据表明,由初级感觉运动皮层、外侧和内侧运动前区、后顶叶皮层以及对侧丘脑,以及与敲击手同侧的小脑和初级听觉皮层组成的振荡网络有助于任务执行。这些区域之间的连接性和耦合方向与解剖学发现非常吻合。在右手条件下,敲击手同侧的初级感觉运动皮层中额外的振荡活动很明显。这一结果表明右利手存在不对称运动控制。脑脑耦合主要发生在8-12赫兹。因此,我们的数据支持这样的假设,即小脑-丘脑-皮质网络中8-12赫兹的耦合代表了运动系统的一个基本特征,并为简单运动任务执行过程中大规模网络中8-12赫兹振荡的重要性提供了证据。

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