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Functional Equivalence of Imagined vs. Real Performance of an Inhibitory Task: An EEG/ERP Study

机译:想象中的功能与抑制任务的实际性能的等效性:一项EEG / ERP研究

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摘要

Early neuroimaging and electrophysiological studies suggested that motor imagery recruited a different network than motor execution. However, several studies have provided evidence for the involvement of the same circuits in motor imagery tasks, in the absence of overt responses. The present study aimed to test whether imagined performance of a stop-signal task produces a similar pattern of motor-related EEG activity than that observed during real performance. To this end, mu and beta event-related desynchronization (ERD) and the Lateralized Readiness Potential (LRP) were analyzed. The study also aimed to clarify the functional significance of the Stop-N2 and Stop-P3 event-related potential (ERPs) components, which were also obtained during both real and imagined performance. The results showed a common pattern of brain electrical activity, and with a similar time course, during covert performance and overt execution of the stop-signal task: presence of LRP and Stop-P3 in the imagined condition and identical LRP onset, and similar mu and beta ERD temporal windows for both conditions. These findings suggest that a similar inhibitory network may be activated during both overt and covert execution of the task. Therefore, motor imagery may be useful to improve inhibitory skills and to develop new communicating systems for Brain-Computer Interface (BCI) devices based on inhibitory signals.
机译:早期的神经影像学和电生理学研究表明,运动影像招募了与运动执行不同的网络。然而,一些研究提供了证据,证明在没有明显反应的情况下,相同电路参与了运动成像任务。本研究旨在测试停止信号任务的想象性能是否会产生与实际执行过程中观察到的与运动相关的脑电活动相似的模式。为此,对mu和beta事件相关的失步(ERD)和横向准备就绪潜力(LRP)进行了分析。该研究还旨在阐明Stop-N2和Stop-P3事件相关电位(ERP)组件的功能重要性,这些组件也是在实际和想象的性能中获得的。结果表明,在秘密执行和公开执行停止信号任务期间,大脑电活动具有相同的时间模式,并且具有相似的时程:在想象中的状态下存在LRP和Stop-P3,并且LRP发作相同,和两种情况下的beta ERD时窗。这些发现表明,在任务的公开和秘密执行期间,可能会激活类似的抑制网络。因此,运动图像可能对提高抑制技能和开发基于抑制信号的脑机接口(BCI)设备的新通信系统很有用。

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