Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, Faculty of Medicine, TU Dresden, Dresden, Germany.
Commun Biol. 2022 Oct 12;5(1):1086. doi: 10.1038/s42003-022-04048-7.
The representation of incoming information, goals and the flexible processing of these are required for cognitive control. Efficient mechanisms are needed to decide when it is important that novel information enters working memory (WM) and when these WM 'gates' have to be closed. Compared to neural foundations of maintaining information in WM, considerably less is known about what neural mechanisms underlie the representational dynamics during WM gating. Using different EEG analysis methods, we trace the path of mental representations along the human cortex during WM gate opening and closing. We show temporally nested representational dynamics during WM gate opening and closing depending on multiple independent neural activity profiles. These activity profiles are attributable to a ventral stream-prefrontal cortex processing cascade. The representational dynamics start in the ventral stream during WM gate opening and WM gate closing before prefrontal cortical regions are modulated. A regional specific activity profile is shown within the prefrontal cortex depending on whether WM gates are opened or closed, matching overarching concepts of prefrontal cortex functions. The study closes an essential conceptual gap detailing the neural dynamics underlying how mental representations drive the WM gate to open or close to enable WM functions such as updating and maintenance.
认知控制需要对传入信息、目标以及这些信息的灵活处理进行表示。需要有效的机制来决定何时重要的新信息进入工作记忆 (WM),以及何时必须关闭这些 WM“门”。与维持 WM 中信息的神经基础相比,人们对支持 WM 门控期间表示动态的神经机制知之甚少。我们使用不同的 EEG 分析方法,追踪 WM 门打开和关闭期间心理表示沿着人脑皮层的路径。我们展示了 WM 门打开和关闭期间的时间嵌套表示动态,这取决于多个独立的神经活动模式。这些活动模式归因于腹侧流-前额叶皮层处理级联。在 WM 门打开和 WM 门关闭期间,在调节前额叶皮层区域之前,在腹侧流中开始出现表示动态。根据 WM 门是打开还是关闭,在前额叶皮层中显示出特定于区域的活动模式,与前额叶皮层功能的总体概念相匹配。该研究填补了一个重要的概念空白,详细描述了心理表示如何驱动 WM 门打开或关闭以实现 WM 功能(如更新和维持)的神经动力学。