A synergistic workspace for human consciousness revealed by Integrated Information Decomposition

Author:

Luppi Andrea I12ORCID,Mediano Pedro AM3,Rosas Fernando E456ORCID,Allanson Judith17,Pickard John189,Carhart-Harris Robin L410,Williams Guy B18,Craig Michael M12,Finoia Paola1,Owen Adrian M11,Naci Lorina12ORCID,Menon David K28,Bor Daniel3ORCID,Stamatakis Emmanuel A2ORCID

Affiliation:

1. Department of Clinical Neurosciences, University of Cambridge

2. University Division of Anaesthesia, School of Clinical Medicine, University of Cambridge

3. Department of Psychology, University of Cambridge

4. Center for Psychedelic Research, Department of Brain Science, Imperial College London

5. Center for Complexity Science, Imperial College London

6. Data Science Institute, Imperial College London

7. Department of Neurosciences, Cambridge University Hospitals NHS Foundation, Addenbrooke's Hospital

8. Wolfson Brain Imaging Centre, University of Cambridge

9. Division of Neurosurgery, School of Clinical Medicine, University of Cambridge, Addenbrooke's Hospital

10. Psychedelics Division - Neuroscape, Department of Neurology, University of California

11. Department of Psychology and Department of Physiology and Pharmacology, The Brain and Mind Institute, University of Western Ontario

12. Trinity College Institute of Neuroscience, School of Psychology, Lloyd Building, Trinity College

Abstract

How is the information-processing architecture of the human brain organised, and how does its organisation support consciousness? Here, we combine network science and a rigorous information-theoretic notion of synergy to delineate a ‘synergistic global workspace’, comprising gateway regions that gather synergistic information from specialised modules across the human brain. This information is then integrated within the workspace and widely distributed via broadcaster regions. Through functional MRI analysis, we show that gateway regions of the synergistic workspace correspond to the human brain’s default mode network, whereas broadcasters coincide with the executive control network. We find that loss of consciousness due to general anaesthesia or disorders of consciousness corresponds to diminished ability of the synergistic workspace to integrate information, which is restored upon recovery. Thus, loss of consciousness coincides with a breakdown of information integration within the synergistic workspace of the human brain. This work contributes to conceptual and empirical reconciliation between two prominent scientific theories of consciousness, the Global Neuronal Workspace and Integrated Information Theory, while also advancing our understanding of how the human brain supports consciousness through the synergistic integration of information.

Funder

Gates Cambridge Trust

Wellcome Trust

Medical Research Council

James S. McDonnell Foundation

Canada Excellence Research Chairs, Government of Canada

Queens' College Cambridge

Fondation L’Oréal

UNESCO

Royal College of Anaesthetists

Ad Astra Chandaria Foundation

Canadian Institute for Advanced Research

Publisher

eLife Sciences Publications, Ltd

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