Leibniz Research Centre for Working Environment and Human Factors Dortmund (IfADo), Dortmund, Germany.
Institute of Psychology, Heidelberg University, Heidelberg, Germany.
Psychophysiology. 2020 Jun;57(6):e13581. doi: 10.1111/psyp.13581. Epub 2020 Apr 11.
Mind wandering during ongoing tasks can impede task performance and increase the risk of failure in the laboratory as well as in daily-life tasks and work environments. Neurocognitive measures like the electroencephalography (EEG) offer the opportunity to assess mind wandering non-invasively without interfering with the primary task. However, the literature on electrophysiological correlates of mind wandering is rather inconsistent. The present study aims toward clarifying this picture by breaking down the temporal dynamics of mind wandering encounters using a cluster-based permutation approach. Participants performed a switching task during which mind wandering was occasionally assessed via thought probes applied after trial completion at random time points. In line with previous studies, response accuracy was reduced during mind wandering. Moreover, alpha power during the inter-trial interval was a significantly increased on those trials on which participants reported that they had been mind-wandering. This spatially widely distributed effect is theoretically well in line with recent findings linking an increased alpha power to an internally oriented state of attention. Measurements of alpha power may, therefore, be used to detect mind wandering online during critical tasks in traffic and industry in order to prevent failures.
在进行中的任务中走神会妨碍任务表现,并增加实验室以及日常生活任务和工作环境中失败的风险。神经认知测量,如脑电图(EEG),提供了一种非侵入性评估走神的机会,而不会干扰主要任务。然而,关于走神的电生理相关性的文献却相当不一致。本研究旨在通过使用基于聚类的排列方法来分解走神遭遇的时间动态,从而澄清这一情况。参与者在执行切换任务时,偶尔会在随机时间点在试验完成后通过思维探针来评估走神。与之前的研究一致,在走神期间反应准确性降低。此外,在参与者报告他们正在走神的那些试验中,在试验间间隔期间的 alpha 功率显著增加。这种空间上广泛分布的效应在理论上与最近的发现非常一致,即增加的 alpha 功率与注意力的内部定向状态有关。因此,在交通和工业中的关键任务中,可以在线测量 alpha 功率以检测走神,从而防止故障。