University of Dresden, Germany.
J Cogn Neurosci. 2023 Apr 1;35(4):749-764. doi: 10.1162/jocn_a_01970.
Cognitive flexibility is an essential facet of everyday life, for example, when switching between different tasks. Neurophysiological accounts on cognitive flexibility have often focused on the task switch itself, disregarding preceding processes and the possible impact of "brain states" before engaging in cognitive flexibility. In a combined working memory/task-switching paradigm, we examined how neuronal processes during cognitive flexibility are interrelated to preceding neuronal processes across time and brain regions in a sample of n = 42 healthy adults. The interrelation of alpha- and theta-band-related processes over brain states ahead and during response selection was investigated on a functional neuroanatomical level using EEG-beamforming. The results showed that response selection processes (reflected by theta-band activity) seem to be strongly connected to "idling" and preparatory brain activity states (in both the theta- and alpha-band). Notably, the superior parietal cortex seems to play a crucial role by assembling alpha-band-related inhibitory processes from the rule- and goal-based actions during "idling" brain states, namely, short-term maintenance of rules (temporal cortex), task-set reconfiguration (superior frontal/precentral regions), and perceptual control (occipital cortex). This information is further relayed to response selection processes associated with theta-band activity. Notably, when the task has to be switched, theta-band activity in the superior frontal gyrus indicates a need for cognitive control in the "idling" brain state, which also seems to be relayed by BA7. The results indicate the importance of brain activity states ahead of response selection processes for cognitive flexibility.
认知灵活性是日常生活的一个重要方面,例如,在不同任务之间切换时。神经生理学对认知灵活性的解释通常集中在任务切换本身,而忽略了之前的过程和在进行认知灵活性之前“大脑状态”的可能影响。在一个结合了工作记忆和任务切换的范式中,我们在 n = 42 名健康成年人的样本中,研究了认知灵活性期间的神经过程如何与之前的时间和大脑区域的神经过程相互关联。使用 EEG 波束成形,在功能神经解剖学水平上研究了在反应选择之前和期间的大脑状态中与 alpha 和 theta 波段相关的过程的相互关系。结果表明,反应选择过程(由 theta 波段活动反映)似乎与“空闲”和预备大脑活动状态强烈相关(在 theta 和 alpha 波段中)。值得注意的是,顶叶皮层似乎通过在“空闲”大脑状态下从基于规则和基于目标的动作中组装 alpha 波段相关的抑制过程来发挥关键作用,即规则的短期维持(颞叶皮层)、任务集重新配置(额前/中央前区)和感知控制(枕叶皮层)。这些信息进一步传递到与 theta 波段活动相关的反应选择过程。值得注意的是,当任务必须切换时,额前皮质的 theta 波段活动表明在“空闲”大脑状态下需要认知控制,这似乎也由 BA7 传递。结果表明,在反应选择过程之前的大脑活动状态对认知灵活性很重要。