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EEG patterns of self-paced movement imaginations towards externally-cued and internally-selected targets

机译:自定速度的运动想象的脑电图样模式针对外部提示和内部选择的目标

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摘要

In this study, we investigate the neurophysiological signature of the interacting processes which lead to a single reach-and-grasp movement imagination (MI). While performing this task, the human healthy participants could either define their movement targets according to an external cue, or through an internal selection process. After defining their target, they could start the MI whenever they wanted. We recorded high density electroencephalographic (EEG) activity and investigated two neural correlates: the event-related potentials (ERPs) associated with the target selection, which reflect the perceptual and cognitive processes prior to the MI, and the movement-related cortical potentials (MRCPs), associated with the planning of the self-paced MI. We found differences in frontal and parietal areas between the late ERP components related to the internally-driven selection and the externally-cued process. Furthermore, we could reliably estimate the MI onset of the self-paced task. Next, we extracted MRCP features around the MI onset to train classifiers of movement vs. rest directly on self-paced MI data. We attained performance significantly higher than chance level for both time-locked and asynchronous classification. These findings contribute to the development of more intuitive brain-computer interfaces in which movement targets are defined internally and the movements are self-paced.
机译:在这项研究中,我们调查了相互作用过程的神经生理学信号,这些过程导致了一个单一的抓握运动想象力(MI)。在执行此任务时,健康的参与者可以根据外部提示或通过内部选择过程来定义其运动目标。定义目标后,他们可以随时启动MI。我们记录了高密度脑电图(EEG)活动并调查了两个神经相关因素:与目标选择相关的事件相关电位(ERP),反映了MI之前的知觉和认知过程,以及与运动相关的皮质电位(MRCP) ),并与自定进度的MI的计划相关联。我们发现,后期ERP组件在内部和外部驱动过程之间的额叶和顶叶区域存在差异。此外,我们可以可靠地估计自定进度任务的MI发作。接下来,我们提取了MI发作周围的MRCP特征,以训练运动分类器,而直接基于自定进度的MI数据进行分类。对于时间锁定和异步分类,我们获得的性能明显高于机会级别。这些发现有助于开发更直观的脑机接口,其中在内部定义了运动目标,并且运动是自定进度的。

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