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Functional geometry of the cortex encodes dimensions of consciousness

Zirui Huang, G. Mashour, A. Hudetz

Nature Communications January 5, 2023 DOI: 10.1038/s41467-022-35764-7 via Semantic Scholar

Summary

AI-generated from the abstract

Dimensions of consciousness such as wakefulness and awareness are encoded in multiple neurofunctional dimensions of the brain's cortical geometry. Disruptions of consciousness from pharmacological, neuropathological, or psychiatric causes degrade one or more major cortical gradients depending on the condition. Network-specific reconfigurations within this multidimensional gradient space are associated with behavioral unresponsiveness across various etiologies, and these spatial reconfigurations correlate with a temporal disruption of structured transitions of dynamic brain states. The work provides a unifying neurofunctional framework for multiple dimensions of human consciousness in both health and disease.

Study at a glance

Characteristics Theoretical or philosophical paper Peer reviewed
Keywords Medicine Psychology Biology
Key finding Dimensions of consciousness such as wakefulness and awareness are encoded in multiple neurofunctional dimensions of the brain's cortical geometry, and disruptions of consciousness degrade one or more major cortical gradients.

Abstract

Consciousness is a multidimensional phenomenon, but key dimensions such as awareness and wakefulness have been described conceptually rather than neurobiologically. We hypothesize that dimensions of consciousness are encoded in multiple neurofunctional dimensions of the brain. We analyze cortical gradients, which are continua of the brain’s overarching functional geometry, to characterize these neurofunctional dimensions. We demonstrate that disruptions of human consciousness – due to pharmacological, neuropathological, or psychiatric causes – are associated with a degradation of one or more of the major cortical gradients depending on the state. Network-specific reconfigurations within the multidimensional cortical gradient space are associated with behavioral unresponsiveness of various etiologies, and these spatial reconfigurations correlate with a temporal disruption of structured transitions of dynamic brain states. In this work, we therefore provide a unifying neurofunctional framework for multiple dimensions of human consciousness in both health and disease. Dimensions of consciousness such as wakefulness or awareness are well established but have not been mapped to the brain. Here, the authors show that dimensions of consciousness are encoded in the functional geometry of the cortex.

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