Association of bidirectional network cores in the brain with perceptual awareness and cognition.

Tomoya Taguchi, Jun Kitazono, Shuntaro Sasai, Masafumi Oizumi
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Abstract

The brain comprises a complex network of interacting regions. To understand the roles and mechanisms of this intricate network, it is crucial to elucidate its structural features related to cognitive functions. Recent empirical evidence suggests that both feedforward and feedback signals are necessary for conscious perception, emphasizing the importance of subnetworks with bidirectional interactions. However, the link between such subnetworks and conscious perception remains unclear due to the complexity of brain networks. In this study, we propose a framework for extracting subnetworks with strong bidirectional interactions-termed the "cores" of a network-from brain activity. We applied this framework to resting-state and task-based human fMRI data from participants of both sexes to identify regions forming strongly bidirectional cores. We then explored the association of these cores with conscious perception and cognitive functions. We found that the extracted central cores predominantly included cerebral cortical regions rather than subcortical regions. Additionally, regarding their relation to conscious perception, we demonstrated that the cores tend to include regions previously reported to be affected by electrical stimulation that altered conscious perception, although the results are not statistically robust due to the small sample size. Furthermore, in relation to cognitive functions, based on a meta-analysis and comparison of the core structure with a cortical functional connectivity gradient, we found that the central cores were related to unimodal sensorimotor functions. The proposed framework provides novel insights into the roles of network cores with strong bidirectional interactions in conscious perception and unimodal sensorimotor functions.

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大脑双向网络核心与有意识感知和认知的关联。
大脑是一个由相互作用的区域组成的复杂网络。为了了解这一复杂网络的作用和机制,需要阐明其与特定认知功能相关的结构特征。在这些关系中,神经科学的最新发展突出了网络双向性与有意识感知之间的联系。鉴于前馈和反馈信号在有意识感知中的重要作用,人们推测具有双向互动的子网络至关重要。然而,由于网络的复杂性,这种子网络与有意识感知之间的联系仍不清楚。在本研究中,我们提出了一个从大脑活动中提取具有强烈双向互动的子网络(称为网络的 "核心")的框架。我们将这一框架应用于静息态和基于任务的 fMRI 数据,以识别形成强双向核心的区域。然后,我们探讨了这些核心与有意识感知和认知功能的关联。中心核心主要包括对有意识感知至关重要的大脑皮层区域,而不是皮层下区域。此外,这些核心还包括之前报道过的电刺激会改变意识知觉的区域。这些结果表明,双向核心与意识知觉之间存在联系。荟萃分析以及核心结构与皮层功能连接梯度的比较表明,中央核心与低阶感觉运动功能有关。一项消融研究强调了将双向性而不仅仅是相互作用强度纳入这些结果的重要性。所提出的框架为我们提供了新的视角,让我们了解具有强烈双向交互作用的网络核心在意识知觉和低阶感觉运动功能中的作用。
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