首页> 外文期刊>Experimental Brain Research >Intracerebral recording of cortical activity related to self-paced voluntary movements: a Bereitschaftspotential and event-related desynchronization/synchronization. SEEG study.
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Intracerebral recording of cortical activity related to self-paced voluntary movements: a Bereitschaftspotential and event-related desynchronization/synchronization. SEEG study.

机译:大脑记录与自定自主运动有关的皮质活动:Bereitschaftspotential和与事件相关的去同步/同步。 SEEG研究。

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摘要

To analyze the distribution of the cortical electrical activity related to self-paced voluntary movements, i.e. the movement-related readiness potentials (Bereitschaftspotential, BP) and the event-related desynchronization (ERD) and synchronization (ERS) of cortical rhythms using intracerebral recordings. EEG was recorded in 14 epilepsy surgery candidates during preoperative video-stereo-EEG monitoring. Subjects performed self-paced hand movements, with their right and left fingers in succession. EEG signals were obtained from a total of 501 contacts using depth electrodes located in primary and nonprimary cortical regions. In accordance with previous studies, BP was found consistently in the primary motor (M1) and somatosensory (S1) cortex, the supplementary motor area (SMA), and in a few recordings also in the cingulate cortex and in the dorsolateral prefrontal and premotor cortex. ERD and ERS of alpha and beta rhythms were also observed in these cortical regions. The distribution of contacts showingERD or ERS was larger than the distribution of those showing BP. In contrast to BP, ERD and ERS frequently occurred in the lateral and mesial temporal cortex and the inferior parietal lobule. The number of contacts and cortical regions showing ERD and ERS and not BP suggests that the two electrophysiological phenomena are differently involved in the preparation and execution of simple voluntary movements. Substantial differences between BP and ERD in spatial distribution and the widespread topography of ERD/ERS in temporal and higher-order motor regions suggest that oscillatory cortical changes are coupled with cognitive processes supporting movement tasks, such as memory, time interval estimation, and attention.
机译:为了分析与自定进度的自主运动有关的皮质电活动的分布,即使用脑内记录来了解与运动有关的准备潜能(Bereitschaftspotential,BP)和与事件有关的皮质节律失步(ERD)和同步(ERS)。在术前视频立体脑电图监测期间,在14名癫痫手术患者中记录了脑电图。受试者用自己的右手和左手连续地执行自定进度的手部动作。使用位于初级和非初级皮层区域的深度电极,从总共501个接触中获得EEG信号。根据先前的研究,在原发性运动(M1)和体感(S1)皮质,辅助运动区(SMA)以及在扣带回皮质和背外侧前额叶和运动前皮质中的一些记录中均一致发现BP 。在这些皮质区域也观察到了α和β节律的ERD和ERS。显示ERD或ERS的联系人的分布大于显示BP的联系人的分布。与BP相反,ERD和ERS经常发生在外侧和中颞叶皮层和顶下小叶。显示ERD和ERS而不是BP的接触和皮质区域的数量表明,两种电生理现象在简单的自愿运动的准备和执行中有不同的参与。 BP和ERD在空间分布上的显着差异以及ERD / ERS在时间和高阶运动区域的广泛分布表明,皮质振荡的变化与认知过程结合在一起,这些认知过程支持运动任务,例如记忆,时间间隔估计和注意力。

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