Sorbonne Université, Institut du Cerveau-Paris Brain Institute-ICM, Inserm, CNRS, Paris, 75013, France.
Université Paris Cité, Paris, 75006, France.
Commun Biol. 2024 Jul 12;7(1):856. doi: 10.1038/s42003-024-06533-7.
The neuroscience of consciousness aims to identify neural markers that distinguish brain dynamics in healthy individuals from those in unconscious conditions. Recent research has revealed that specific brain connectivity patterns correlate with conscious states and diminish with loss of consciousness. However, the contribution of these patterns to shaping conscious processing remains unclear. Our study investigates the functional significance of these neural dynamics by examining their impact on participants' ability to process external information during wakefulness. Using fMRI recordings during an auditory detection task and rest, we show that ongoing dynamics are underpinned by brain patterns consistent with those identified in previous research. Detection of auditory stimuli at threshold is specifically improved when the connectivity pattern at stimulus presentation corresponds to patterns characteristic of conscious states. Conversely, the occurrence of these conscious state-associated patterns increases after detection, indicating a mutual influence between ongoing brain dynamics and conscious perception. Our findings suggest that certain brain configurations are more favorable to the conscious processing of external stimuli. Targeting these favorable patterns in patients with consciousness disorders may help identify windows of greater receptivity to the external world, guiding personalized treatments.
意识神经科学旨在确定神经标记物,以区分健康个体和无意识状态下的大脑动力学。最近的研究表明,特定的大脑连接模式与意识状态相关,并随着意识丧失而减少。然而,这些模式对塑造意识加工的贡献尚不清楚。我们的研究通过考察它们对参与者在清醒状态下处理外部信息能力的影响,来研究这些神经动力学的功能意义。我们使用听觉检测任务和休息期间的 fMRI 记录,表明持续的动力学是由与先前研究中确定的模式一致的大脑模式支撑的。当刺激呈现时的连接模式与意识状态特征模式一致时,对听觉刺激的检测会特别改善。相反,在检测后这些与意识状态相关的模式会增加,表明持续的大脑动力学和意识感知之间存在相互影响。我们的研究结果表明,某些大脑构型更有利于对外界刺激的意识加工。在意识障碍患者中针对这些有利的模式可能有助于确定对外界更具接受性的窗口,从而指导个性化治疗。