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Dynamic connectivity profiles characteristic of conscious states are associated with enhanced conscious processing of external stimuli

Başak Türker, Dragana Manasova, Benoît Béranger, Lionel Naccache, Claire Sergent, Jacobo D. Sitt

preprint DOI: 10.1101/2024.01.18.576171 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Observational study using fMRI during an auditory detection task
Population Healthy awake human participants
Key findings Detection of auditory stimuli at threshold was improved when the ongoing brain connectivity pattern at stimulus presentation corresponded to the "high pattern" characteristic of conscious states, and the occurrence of this high pattern increased after detection. The authors suggest that ongoing brain dynamics and conscious perception mutually influence each other, with certain brain configurations more favorable for conscious processing.

Abstract

ABSTRACT One of the goals of the neuroscience of consciousness is to identify neural markers capable of distinguishing brain dynamics in awake, healthy individuals from unconscious conditions. This problem also has a clinical diagnostic interest in disorders of consciousness. Recent research has shown that brain connectivity patterns characterized by long-range interactions and anticorrelations are associated with conscious states and diminish with loss of consciousness in human and non-human primates. However, the precise contribution of these patterns to conscious processing and subjective experience formation remains unclear. In this study, we investigated the functional role of these brain patterns in shaping conscious content by examining their influence on participants’ ability to process external information during wakefulness. Participants underwent fMRI recordings during an auditory detection task. Phase coherence-based functional connectivity and k-means clustering confirmed that the ongoing dynamics were underpinned by brain patterns consistent with those identified in previous research, including the “high pattern” characteristic of conscious states. We found that the detection of auditory stimuli at threshold was specifically improved when the connectivity pattern at the time of presentation corresponded to this high-pattern. In return, the occurrence of the high-pattern increased after detection, indicating that participants were more likely to transition to a high-pattern following stimulus detection. Our findings suggest that ongoing brain dynamics and conscious perception mutually influence each other and that certain brain configurations are more favorable for conscious processing of external stimuli. In the future, targeting these moments of favorable patterns in patients with disorders of consciousness may help us identify windows of greater receptivity to the external world, paving the way for developing individualized patient care protocols.