Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, Faculty of Medicine of the TU Dresden, Dresden, Germany.
Sci Rep. 2018 Apr 23;8(1):6395. doi: 10.1038/s41598-018-24834-w.
Demanding tasks like cognitive flexibility show time-related deterioration of performance (i.e. fatigability effects). Fatigability has been associated with structural and functional properties of the prefrontal cortex. However, the electrophysiological underpinnings of these processes are not well understood. We examined n = 34 healthy participants with a task switching paradigm in which switches were either signaled by cues or needed to be maintained by working memory processes. We analyzed event-related potentials (ERPs) and performed residue iteration decomposition (RIDE) to account for effects of fatigue on intra-individual variability of neurophysiological data. This was combined with source localization methods. We show that task switching is affected by time on task (TOT) effects mostly when working memory processes are needed. On a neurophysiological level, this effect could not be observed in standard ERPs, but only after accounting for intra-individual variability using RIDE. The RIDE data suggests that during task switching, fatigability specifically affects response recoding processes that are associated with functions of the middle frontal gyrus (MFG; BA10). The results underline propositions of the 'opportunity cost model', which states that fatigability effects of executive functions depend on the degree to which tasks engage similar prefrontal regions - in this case working memory and task switching mechanisms.
像认知灵活性这样的高要求任务表现会随时间而恶化(即疲劳效应)。疲劳与前额叶皮层的结构和功能特性有关。然而,这些过程的电生理基础还不是很清楚。我们检查了 34 名健康参与者,他们使用任务转换范式进行了实验,其中转换要么由线索提示,要么需要工作记忆过程来维持。我们分析了事件相关电位(ERP)并进行了残差迭代分解(RIDE),以解释疲劳对神经生理数据个体内变异性的影响。这与源定位方法相结合。我们表明,任务转换主要在需要工作记忆过程时受到时间的影响(TOT)。在神经生理学水平上,这种效应在标准 ERP 中无法观察到,只有在用 RIDE 对个体内变异性进行解释后才能观察到。RIDE 数据表明,在任务转换期间,疲劳特异性地影响与额中回(MFG;BA10)功能相关的反应重新编码过程。研究结果支持了“机会成本模型”的观点,即执行功能的疲劳效应取决于任务与类似前额叶区域的参与程度——在这种情况下是工作记忆和任务转换机制。