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Variability of EEG synchronization prior to and during observation and execution of a sequential finger movement

机译:在连续手指运动的观察和执行之​​前和期间EEG同步的变化性

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摘要

The aim of this study was to test the validity of mirror neuron activity in humans through analysis of electroencephalographic (EEG) functional connectivity during an action not directed towards an object. We investigated changes in EEG interchannel synchronization prior to and during action execution and also prior to and during observation of the same action. Twelve participants observed a simple finger movement sequence. In a second testing session they physically executed the movement. EEGs were recorded from 19 active sites across the cortex. Activity was considered in four frequency bands (7–10 Hz, 10–13 Hz, 13–20 Hz, and 20–30 Hz) using a new measure: synchronization likelihood. This technique considers rapid changes in signal synchronization and spatiotemporal patterns of coherence. The results revealed no statistically significant difference in synchronization likelihood between the observation and execution data. We found an increase in synchronization over a broad frequency range during task processing and suggest that this may reflect interregional cortical coupling of intricately and hierarchically interconnected networks that are active in a similar way during both observation and execution of a movement. While EEG may be insensitive to differences present during the observation and execution of a movement, the results of the present study shed some light on the general mechanisms of cognitive integration. Hum Brain Mapp, 2005. © 2005 Wiley‐Liss, Inc.
机译:这项研究的目的是通过分析非针对对象的动作期间的脑电图(EEG)功能连接性来测试人体中镜像神经元活动的有效性。我们研究了在执行动作之前和期间以及观察同一动作之前和之中,EEG通道间同步的变化。十二名参与者观察到了简单的手指移动顺序。在第二次测试中,他们实际执行了机芯。在整个皮层的19个活动位点记录了脑电图。使用一种新方法:同步可能性,在四个频带(7–10 Hz,10–13 Hz,13–20 Hz和20–30 Hz)中考虑活动。该技术考虑了信号同步的快速变化和相干的时空模式。结果表明观察和执行数据之间的同步可能性没有统计学上的显着差异。我们发现在任务处理过程中,同步在较宽的频率范围内有所增加,并表明这可能反映了复杂的和分层的互连网络的区域间皮层耦合,这些运动在观察和执行运动期间以相似的方式处于活动状态。虽然脑电图可能对动作的观察和执行过程中存在的差异不敏感,但本研究的结果为认知整合的一般机制提供了一些启示。嗡嗡的脑图,2005年。©2005 Wiley-Liss,Inc.

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