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注意选择与连贯通讯:范围与局限。

Attentional selection and communication through coherence: Scope and limitations.

机构信息

Department of Mathematics, University of British Columbia, Vancouver, Canada.

Department of Psychology and Djavad Mowafaghian Centre for Brain Health, University of British Columbia, Vancouver, Canada.

出版信息

PLoS Comput Biol. 2024 Aug 5;20(8):e1011431. doi: 10.1371/journal.pcbi.1011431. eCollection 2024 Aug.

Abstract

Synchronous neural oscillations are strongly associated with a variety of perceptual, cognitive, and behavioural processes. It has been proposed that the role of the synchronous oscillations in these processes is to facilitate information transmission between brain areas, the 'communication through coherence,' or CTC hypothesis. The details of how this mechanism would work, however, and its causal status, are still unclear. Here we investigate computationally a proposed mechanism for selective attention that directly implicates the CTC as causal. The mechanism involves alpha band (about 10 Hz) oscillations, originating in the pulvinar nucleus of the thalamus, being sent to communicating cortical areas, organizing gamma (about 40 Hz) oscillations there, and thus facilitating phase coherence and communication between them. This is proposed to happen contingent on control signals sent from higher-level cortical areas to the thalamic reticular nucleus, which controls the alpha oscillations sent to cortex by the pulvinar. We studied the scope of this mechanism in parameter space, and limitations implied by this scope, using a computational implementation of our conceptual model. Our results indicate that, although the CTC-based mechanism can account for some effects of top-down and bottom-up attentional selection, its limitations indicate that an alternative mechanism, in which oscillatory coherence is caused by communication between brain areas rather than being a causal factor for it, might operate in addition to, or even instead of, the CTC mechanism.

摘要

同步神经振荡与各种知觉、认知和行为过程密切相关。有人提出,同步振荡在这些过程中的作用是促进大脑区域之间的信息传递,即“相干传递通讯”(CTC)假说。然而,这个机制如何运作的细节及其因果地位仍不清楚。在这里,我们从计算的角度研究了一种直接涉及 CTC 的选择性注意的机制。该机制涉及起源于丘脑的丘脑枕核的 alpha 波段(约 10 Hz)振荡,被发送到通讯皮层区域,在那里组织 gamma 波段(约 40 Hz)振荡,从而促进它们之间的相位相干和通讯。这是根据从高级皮层区域发送到丘脑网状核的控制信号来实现的,该信号控制丘脑枕核发送到皮层的 alpha 振荡。我们使用我们的概念模型的计算实现研究了这个机制在参数空间中的范围及其所暗示的限制。我们的结果表明,尽管基于 CTC 的机制可以解释自上而下和自下而上注意选择的一些影响,但它的局限性表明,一种替代机制可能会与 CTC 机制一起作用,或者甚至替代它,在这种机制中,振荡相干性是由大脑区域之间的通讯引起的,而不是其因果因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b84/11326628/f6f69f46a265/pcbi.1011431.g001.jpg

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