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嵌入式响应计划的处理受到额顶叶θ和β活动相互作用的调节。

Processing of embedded response plans is modulated by an interplay of frontoparietal theta and beta activity.

机构信息

Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, Faculty of Medicine, TU Dresden, Dresden, Germany.

University Neuropsychology Center, Faculty of Medicine, TU Dresden, Dresden, Germany.

出版信息

J Neurophysiol. 2022 Sep 1;128(3):543-555. doi: 10.1152/jn.00537.2021. Epub 2022 Jul 27.

Abstract

Even simple actions like opening a door require integration/binding and flexible reactivation of different motor elements. Yet, the neural mechanisms underlying the processing of such "embedded response plans" are largely elusive, despite theoretical frameworks, such as the theory of event coding, describing the involved cognitive processes. In a sample of = 40 healthy participants, we combine time-frequency decomposition and various beamforming methods to examine the neurophysiological dynamics of such action plans, with special emphasis on the interplay of theta and beta frequency activity during the processing of these plans. We show that the integration and rule-guided reactivation of embedded response plans is modulated by a complex interplay of theta and beta activity. Pretrial beta-band activity (BBA) is related to different functional neuroanatomical structures that are activated in a consecutive fashion. Enhanced preparatory activity is positively associated with higher binding-related BBA in the precuneus/parietal areas, indicating that activity in the precuneus/parietal cortex facilitates the execution of an embedded action sequence. Increased preparation subsequently leads to reduced working memory retrieval demands. A cascading pattern of interactions between pretrial and within-trial activity indicates the importance of preparatory brain activity. The study shows that there are multiple roles of beta and theta oscillations associated with different functional neuroanatomical structures during the integration and reactivation of motor elements during actions. Even simple actions like opening a door require integration/binding and flexible reactivation of different motor elements. Yet, the neural mechanisms underlying the processing of such "embedded response plans" are largely elusive. The study shows that there are multiple roles of beta and theta oscillations associated with different functional neuroanatomical structures during the integration and reactivation of motor elements during actions.

摘要

即使是像开门这样简单的动作,也需要整合/绑定不同的运动元素,并灵活地重新激活它们。然而,尽管有理论框架,如事件编码理论,描述了涉及的认知过程,但对于这种“嵌入式反应计划”的处理的神经机制在很大程度上仍然难以捉摸。在一个由 40 名健康参与者组成的样本中,我们结合时频分解和各种波束形成方法来研究这些行动计划的神经生理动力学,特别强调在处理这些计划时theta 和 beta 频率活动的相互作用。我们表明,嵌入式反应计划的整合和规则引导的重新激活受到 theta 和 beta 活动的复杂相互作用的调节。在处理这些计划之前,beta 频带活动(BBA)与以连续方式激活的不同功能神经解剖结构有关。增强的预备活动与后扣带回/顶叶区域的绑定相关的更高 BBA 呈正相关,这表明后扣带回/顶叶皮层的活动有助于执行嵌入式动作序列。增加的准备随后会降低工作记忆检索的需求。预备期和试验内活动之间的级联交互模式表明预备期大脑活动的重要性。该研究表明,在动作过程中,整合和重新激活运动元素时,beta 和 theta 振荡与不同的功能神经解剖结构有关,具有多种作用。即使是像开门这样简单的动作,也需要整合/绑定不同的运动元素,并灵活地重新激活它们。然而,对于这种“嵌入式反应计划”的处理的神经机制在很大程度上仍然难以捉摸。该研究表明,在动作过程中,整合和重新激活运动元素时,beta 和 theta 振荡与不同的功能神经解剖结构有关,具有多种作用。

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