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首页> 外文期刊>Journal of Cognitive Neuroscience >The Electrophysiological Dynamics of Interference during the Stroop Task
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The Electrophysiological Dynamics of Interference during the Stroop Task

机译:Stroop任务期间干扰的电生理机制

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摘要

If subjects are required to name the color of the word red printed in blue ink, interference between word meaning and ink color occurs, which slows down reaction time. This effect is well known as the Stroop effect. It is still an unresolved issue how the brain deals with interference in this type of task. To explore this question, an electroencephalogram (EEG) study was carried out. By analyzing several measures of EEG activity, two main findings emerged. First, the event-related potential (ERP) showed increased fronto-central negativity in a time window around 400 msec for incongruent items in contrast to congruent and neutral items. Source localization analysis revealed that a source in the anterior cingulate cortex (ACC) contributedrnmost to the difference. Second, time-frequency analysis showed that theta oscillations (4-7 Hz) in the ACC increased linearly with increasing interference and that phase coupling between the ACC and the left prefrontal cortex was longer persistent for incongruent items compared to congruent and neutral items. These effects occurred at a time window around 600 msec. We conclude that interference between color naming and word meaning in the Stroop task manifests itself at around 400 msec and mainly activates the ACC. Thereafter, sustained phase coupling between the ACC and the prefrontal cortex occurs, which most likely reflects the engagement of cognitive control mechanisms.
机译:如果要求受试者命名以蓝色墨水打印的红色单词的颜色,则会在单词含义和墨水颜色之间产生干扰,这会减慢反应时间。这种效应被称为Stroop效应。大脑如何处理此类任务中的干扰仍未解决。为了探讨这个问题,进行了脑电图(EEG)研究。通过分析脑电活动的几种方法,得出了两个主要发现。首先,与一致和中立项目相比,与不一致和中立项目相比,事件相关电势(ERP)在约400毫秒的时间窗口中显示出从中央到中央的负向性增强。来源定位分析显示,前扣带回皮层(ACC)中的来源贡献最大。其次,时频分析表明,随着干扰的增加,ACC中的θ振荡(4-7 Hz)呈线性增加,并且与一致和中立的项目相比,对于不一致的项目,ACC和左前额叶皮层之间的相位耦合更长。这些影响发生在大约600毫秒的时间窗口内。我们得出的结论是,Stroop任务中的颜色命名和词义之间的干扰会在大约400毫秒时显现出来,并主要激活ACC。此后,ACC和前额叶皮层之间发生持续的相位耦合,这很可能反映了认知控制机制的参与。

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