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Brain connectivity evaluation during selective attention using EEG-based brain-computer interface

机译:使用基于脑电图的脑机接口进行选择性注意时的大脑连通性评估

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Attentional deficits may be caused by neurological diseases, including Attention-Deficit/ Hyperactivity Disorder (ADHD), Alzheimer's disease (AD), Traumatic Brain Injuries (TBI), etc. This work aims to evaluate selective attention under visual stimulations of faces and scenes using electroencephalogram (EEG)-based brain-computer interface. The experiment consisted of two phases: 1) image recognition and 2) attention evaluation. In phase 1, the mean response time was 547 ms vs. 633 ms to faces and scenes, respectively. In phase 2, the mean response time was 667 ms vs. 706 ms to face and scene categories, respectively. We analyzed the event-related time-frequency representation of faces and scenes and the causal relationship between object recognition and the motor response associated with category selection using the brain connectivity based on Granger causality. The developed experimental protocols and connectivity evaluation methods may provide insights for a better understanding of the neural processes for object recognition and category selection.
机译:注意缺陷可能是由神经系统疾病引起的,包括注意缺陷/多动障碍(ADHD),阿尔茨海默氏病(AD),脑外伤(TBI)等。本研究旨在评估在视觉刺激下使用面部表情和场景进行选择性注意基于脑电图(EEG)的脑机接口。实验包括两个阶段:1)图像识别和2)注意力评估。在阶段1中,人脸和场景的平均响应时间分别为547毫秒和633毫秒。在阶段2中,人脸和场景类别的平均响应时间分别为667毫秒和706毫秒。我们使用基于格兰杰因果关系的大脑连接性分析了与事件相关的人脸和场景的时频表示,以及对象识别和与类别选择相关的运动反应之间的因果关系。所开发的实验协议和连通性评估方法可以提供洞察力,以更好地理解用于对象识别和类别选择的神经过程。

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