Cognitive Psychology Unit, Leiden Institute for Brain & Cognition, Institute of Psychology, Leiden University, 2300 RA Leiden, Netherlands.
Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, Faculty of Medicine, Technische Universität Dresden, 01069 Dresden, Germany.
Cereb Cortex. 2023 Jun 8;33(12):7941-7951. doi: 10.1093/cercor/bhad089.
Higher-level cognitive functions are mediated via complex oscillatory activity patterns and its analysis is dominating cognitive neuroscience research. However, besides oscillatory (period) activity, also aperiodic activity constitutes neural dynamics, but its relevance for higher-level cognitive functions is only beginning to be understood. The present study examined whether the broadband EEG aperiodic activity reflects principles of metacontrol. Metacontrol conceptualizes whether it is more useful to engage in more flexible processing of incoming information or to shield cognitive processes from incoming information (persistence-heavy processing). We examined EEG and behavioral data from a sample of n = 191 healthy participants performing a Simon Go/NoGo task that can be assumed to induce different metacontrol states (persistence-biased vs. flexibility-biased). Aperiodic activity was estimated using the FOOOF toolbox in the EEG power spectrum. There was a higher aperiodic exponent and offset in NoGo trials compared with Go trials, in incongruent (Go) trials compared with congruent (Go) trials. Thus, aperiodic activity increases during persistence-heavy processing, but decreases during flexibility-heavy processing. These findings link aperiodic features of the EEG signal and concepts describing the dynamics of how cognitive control modes are applied. Therefore, the study substantially extends the importance of aperiodic activity in understanding cognitive functions.
高级认知功能是通过复杂的振荡活动模式来介导的,其分析是认知神经科学研究的主导方向。然而,除了振荡(周期)活动外,非周期活动也构成了神经动力学,但它对高级认知功能的相关性才刚刚开始被理解。本研究考察了宽带 EEG 非周期活动是否反映了元控制的原则。元控制概念化了是更有利于进行更灵活的传入信息处理,还是保护认知过程不受传入信息的影响(持续处理)。我们检查了来自 n = 191 名健康参与者的 EEG 和行为数据,这些参与者执行了一个 Simon Go/NoGo 任务,可以假设该任务会诱导不同的元控制状态(持续偏向与灵活性偏向)。使用 EEG 功率谱中的 FOOOF 工具箱估计了非周期活动。与 Go 试验相比,NoGo 试验中的非周期指数和偏移量更高,与一致(Go)试验相比,不一致(Go)试验中的非周期指数和偏移量更高。因此,在持续处理过程中,非周期活动增加,而在灵活性处理过程中,非周期活动减少。这些发现将 EEG 信号的非周期特征与描述认知控制模式如何应用的动态的概念联系起来。因此,该研究大大扩展了非周期活动在理解认知功能中的重要性。