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复杂感觉运动整合过程中theta 带和 beta 带活动的可分离功能相关性。

A dissociable functional relevance of theta- and beta-band activities during complex sensorimotor integration.

机构信息

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

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

出版信息

Cereb Cortex. 2023 Jul 5;33(14):9154-9164. doi: 10.1093/cercor/bhad191.

Abstract

Sensorimotor integration processes play a central role in daily life and require that different sources of sensory information become integrated: i.e. the information related to the object being under control of the agent (i.e. indicator) and the information about the goal of acting. Yet, how this is accomplished on a neurophysiological level is contentious. We focus on the role of theta- and beta-band activities and examine which neuroanatomical structures are involved. Healthy participants (n = 41) performed 3 consecutive pursuit-tracking EEG experiments in which the source of visual information available for tracking was varied (i.e. that of the indicator and the goal of acting). The initial specification of indicator dynamics is determined through beta-band activity in parietal cortices. When information about the goal was not accessible, but operating the indicator was required nevertheless, this incurred increased theta-band activity in the superior frontal cortex, signaling a higher need for control. Later, theta- and beta-band activities encode distinct information within the ventral processing stream: Theta-band activity is affected by the indicator information, while beta-band activity is affected by the information about the action goal. Complex sensorimotor integration is realized through a cascade of theta- and beta-band activities in a ventral-stream-parieto-frontal network.

摘要

感觉运动整合过程在日常生活中起着核心作用,需要将不同来源的感觉信息整合在一起:即与被代理人(即指示器)控制的物体相关的信息和关于行动目标的信息。然而,这在神经生理学水平上是如何实现的还存在争议。我们专注于θ和β波段活动的作用,并研究涉及哪些神经解剖结构。健康参与者(n=41)连续进行了 3 次追踪脑电图实验,其中跟踪可用的视觉信息来源(即指示器和行动目标)有所不同。通过顶叶皮层中的β波段活动来确定指示器动态的初始规范。当无法获得目标信息,但仍需要操作指示器时,这会导致额上回的θ波段活动增加,表明需要更高的控制。之后,θ和β波段活动在腹侧处理流内编码不同的信息:θ波段活动受指示器信息影响,而β波段活动受动作目标信息影响。复杂的感觉运动整合是通过腹侧流-顶-额网络中的θ和β波段活动级联实现的。

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