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Towards the measurement of event-related EEG activity in real-life working environments

机译:在现实的工作环境中测量与事件相关的脑电活动

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摘要

In applied contexts, psychophysiological measures have a long tradition to evaluate the user state. EEG correlates that indicate mechanisms of information processing, however, are hardly accessible since discrete time stamps that are necessary for this approach are commonly not available in natural situations. However, eye blinks may close this gap. Eye blinks are assumed to mark distinct points in information processing, necessary to segment the incoming data stream. By using mobile EEG in a simulated working situation we demonstrate that eye-blink-related potentials provide reliable information about cognitive processing in distinct working environments. During cognitive tasks, an increase in the fronto-central N2 component as well as evoked theta activity can be shown, both indices of enhanced cognitive control. The posterior P3 is reduced during physical tasks (sorting of boxes), probably reflecting the more continuous nature of this task. The data are discussed within a model of dopaminergic modulation of blink activity that involves both task specific aspects like executive control and modulating influences of motivation or fatigue.
机译:在应用环境中,心理生理措施具有评估用户状态的悠久传统。然而,由于在自然情况下通常无法获得此方法所需的离散时间戳,因此很难指示信息处理机制的EEG相关性。但是,眨眼可能会缩小此间隙。眨眼被认为标记了信息处理中的不同点,这是分割传入数据流所必需的。通过在模拟的工作环境中使用移动脑电图,​​我们证明了眨眼相关的潜力可提供有关不同工作环境中认知处理的可靠信息。在认知任务期间,可以显示额中央N2成分的增加以及诱发的theta活性,这都是增强的认知控制指标。在物理任务(盒子分类)过程中,后部P3减少了,这可能反映了该任务的更连续的性质。在眨眼活动的多巴胺能调节模型中讨论了数据,该模型涉及任务特定方面,例如执行控制和调节动机或疲劳的影响。

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