Elmers Julia, Yu Shijing, Talebi Nasibeh, Prochnow Astrid, Beste Christian
Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, Faculty of Medicine, TU Dresden, Dresden, Germany.
iScience. 2024 Mar 18;27(4):109521. doi: 10.1016/j.isci.2024.109521. eCollection 2024 Apr 19.
To facilitate goal-directed actions, effective management of working memory (WM) is crucial, involving a hypothesized WM "gating mechanism." We investigate the underlying neural basis through behavioral modeling and connectivity assessments between neuroanatomical regions linked to theta, alpha, and beta frequency bands. We found opposing, threshold-dependent mechanisms governing WM gate opening and closing. Directed beta band connectivity in the parieto-frontal and parahippocampal-occipital networks was crucial for threshold-dependent WM gating dynamics. Fronto-parahippocampal connectivity in the theta band was also notable for both gating processes, although weaker than that in the beta band. Distinct roles for theta, beta, and alpha bands emerge in maintaining information in WM and shielding against interference, whereby alpha band activity likely acts as a "gatekeeper" supporting processes reflected by beta and theta band activity. The study shows that the decision criterion for WM gate opening/closing relies on concerted interplay within neuroanatomical networks defined by beta and theta band activities.
为促进目标导向行为,工作记忆(WM)的有效管理至关重要,这涉及一种假设的WM“门控机制”。我们通过行为建模以及与theta、alpha和beta频段相关的神经解剖区域之间的连接性评估来研究其潜在的神经基础。我们发现了控制WM门控开启和关闭的相反的、依赖阈值的机制。顶叶-额叶和海马旁回-枕叶网络中的定向beta频段连接对于依赖阈值的WM门控动力学至关重要。theta频段中的额-海马旁回连接在两个门控过程中也很显著,尽管比beta频段中的连接弱。theta、beta和alpha频段在维持WM中的信息以及抵御干扰方面发挥着不同的作用,其中alpha频段活动可能充当支持beta和theta频段活动所反映过程的“守门人”。该研究表明,WM门控开启/关闭的决策标准依赖于由beta和theta频段活动定义的神经解剖网络内的协同相互作用。