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实际与心理运动准备及执行:一项时空事件相关电位研究

Actual and mental motor preparation and execution: a spatiotemporal ERP study.

作者信息

Caldara Roberto, Deiber Marie-Pierre, Andrey Carine, Michel Christoph M, Thut Gregor, Hauert Claude-Alain

机构信息

Faculty of Psychology and Educational Sciences, University of Geneva, Geneva, Switzerland.

出版信息

Exp Brain Res. 2004 Dec;159(3):389-99. doi: 10.1007/s00221-004-2101-0. Epub 2004 Oct 12.

Abstract

Studies evaluating the role of the executive motor system in motor imagery came to a general agreement in favour of the activation of the primary motor area (M1) during imagery, although in reduced proportion as compared to motor execution. It is still unclear whether this difference occurs within the preparation period or the execution period of the movement, or both. In the present study, EEG was used to investigate separately the preparation and the execution periods of overt and covert movements in adults. We designed a paradigm that randomly mixed actual and kinaesthetic imagined trials of an externally paced sequence of finger key presses. Sixty channel event-related potentials were recorded to capture the cerebral activations underlying the preparation for motor execution and motor imagery, as well as cerebral activations implied in motor execution and motor imagery. Classical waveform analysis was combined with data-driven spatiotemporal segmentation analysis. In addition, a LAURA source localization algorithm was applied to functionally define brain related motor areas. Our results showed first that the difference between actual and mental motor acts takes place at the late stage of the preparation period and consists of a quantitative modulation of the activity of common structures in M1. Second, they showed that primary motor structures are involved to the same extent in the actual or imagined execution of a motor act. These findings reinforce and refine the functional equivalence hypothesis between actual and imagined motor acts.

摘要

评估执行运动系统在运动想象中作用的研究普遍认为,在想象过程中初级运动区(M1)会被激活,尽管与运动执行相比,激活比例有所降低。目前尚不清楚这种差异是出现在运动的准备阶段还是执行阶段,亦或是两个阶段都存在。在本研究中,采用脑电图(EEG)分别对成年人公开和隐蔽运动的准备期和执行期进行了研究。我们设计了一个范式,将外部节奏的手指按键序列的实际试验和动觉想象试验随机混合。记录了60通道的事件相关电位,以捕捉运动执行和运动想象准备过程中的大脑激活情况,以及运动执行和运动想象中隐含的大脑激活情况。经典波形分析与数据驱动的时空分割分析相结合。此外,应用LAURA源定位算法从功能上定义与大脑相关的运动区域。我们的结果首先表明,实际运动行为和心理运动行为之间的差异发生在准备期的后期,并且是对M1中共同结构活动的定量调节。其次,结果表明,初级运动结构在实际或想象的运动行为执行中所涉及的程度相同。这些发现强化并完善了实际运动行为和想象运动行为之间的功能等效假说。

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