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Beyond alpha power: EEG spatial and spectral gradients robustly stratify disorders of consciousness

Neurophysiological markers can overcome the limitations of behavioural assessments of Disorders of Consciousness (DoC). EEG alpha power emerged as a promising marker for DoC, although long-standing literature reported alpha power being sustained during anesthetic-induced unconsciousness, and reduced...

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Autores principales: Colombo, Michele Angelo, Comanducci, Angela, Casarotto, Silvia, Derchi, Chiara-Camilla, Annen, Jitka, Viganò, Alessandro, Mazza, Alice, Trimarchi, Pietro Davide, Boly, Melanie, Fecchio, Matteo, Bodart, Olivier, Navarro, Jorge, Laureys, Steven, Gosseries, Olivia, Massimini, Marcello, Sarasso, Simone, Rosanova, Mario
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10233271/
https://www.ncbi.nlm.nih.gov/pubmed/36977648
http://dx.doi.org/10.1093/cercor/bhad031
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author Colombo, Michele Angelo
Comanducci, Angela
Casarotto, Silvia
Derchi, Chiara-Camilla
Annen, Jitka
Viganò, Alessandro
Mazza, Alice
Trimarchi, Pietro Davide
Boly, Melanie
Fecchio, Matteo
Bodart, Olivier
Navarro, Jorge
Laureys, Steven
Gosseries, Olivia
Massimini, Marcello
Sarasso, Simone
Rosanova, Mario
author_facet Colombo, Michele Angelo
Comanducci, Angela
Casarotto, Silvia
Derchi, Chiara-Camilla
Annen, Jitka
Viganò, Alessandro
Mazza, Alice
Trimarchi, Pietro Davide
Boly, Melanie
Fecchio, Matteo
Bodart, Olivier
Navarro, Jorge
Laureys, Steven
Gosseries, Olivia
Massimini, Marcello
Sarasso, Simone
Rosanova, Mario
author_sort Colombo, Michele Angelo
collection PubMed
description Neurophysiological markers can overcome the limitations of behavioural assessments of Disorders of Consciousness (DoC). EEG alpha power emerged as a promising marker for DoC, although long-standing literature reported alpha power being sustained during anesthetic-induced unconsciousness, and reduced during dreaming and hallucinations. We hypothesized that EEG power suppression caused by severe anoxia could explain this conflict. Accordingly, we split DoC patients (n = 87) in postanoxic and non-postanoxic cohorts. Alpha power was suppressed only in severe postanoxia but failed to discriminate un/consciousness in other aetiologies. Furthermore, it did not generalize to an independent reference dataset (n = 65) of neurotypical, neurological, and anesthesia conditions. We then investigated EEG spatio-spectral gradients, reflecting anteriorization and slowing, as alternative markers. In non-postanoxic DoC, these features, combined in a bivariate model, reliably stratified patients and indexed consciousness, even in unresponsive patients identified as conscious by an independent neural marker (the Perturbational Complexity Index). Crucially, this model optimally generalized to the reference dataset. Overall, alpha power does not index consciousness; rather, its suppression entails diffuse cortical damage, in postanoxic patients. As an alternative, EEG spatio-spectral gradients, reflecting distinct pathophysiological mechanisms, jointly provide a robust, parsimonious, and generalizable marker of consciousness, whose clinical application may guide rehabilitation efforts.
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spelling pubmed-102332712023-06-02 Beyond alpha power: EEG spatial and spectral gradients robustly stratify disorders of consciousness Colombo, Michele Angelo Comanducci, Angela Casarotto, Silvia Derchi, Chiara-Camilla Annen, Jitka Viganò, Alessandro Mazza, Alice Trimarchi, Pietro Davide Boly, Melanie Fecchio, Matteo Bodart, Olivier Navarro, Jorge Laureys, Steven Gosseries, Olivia Massimini, Marcello Sarasso, Simone Rosanova, Mario Cereb Cortex Original Article Neurophysiological markers can overcome the limitations of behavioural assessments of Disorders of Consciousness (DoC). EEG alpha power emerged as a promising marker for DoC, although long-standing literature reported alpha power being sustained during anesthetic-induced unconsciousness, and reduced during dreaming and hallucinations. We hypothesized that EEG power suppression caused by severe anoxia could explain this conflict. Accordingly, we split DoC patients (n = 87) in postanoxic and non-postanoxic cohorts. Alpha power was suppressed only in severe postanoxia but failed to discriminate un/consciousness in other aetiologies. Furthermore, it did not generalize to an independent reference dataset (n = 65) of neurotypical, neurological, and anesthesia conditions. We then investigated EEG spatio-spectral gradients, reflecting anteriorization and slowing, as alternative markers. In non-postanoxic DoC, these features, combined in a bivariate model, reliably stratified patients and indexed consciousness, even in unresponsive patients identified as conscious by an independent neural marker (the Perturbational Complexity Index). Crucially, this model optimally generalized to the reference dataset. Overall, alpha power does not index consciousness; rather, its suppression entails diffuse cortical damage, in postanoxic patients. As an alternative, EEG spatio-spectral gradients, reflecting distinct pathophysiological mechanisms, jointly provide a robust, parsimonious, and generalizable marker of consciousness, whose clinical application may guide rehabilitation efforts. Oxford University Press 2023-03-28 /pmc/articles/PMC10233271/ /pubmed/36977648 http://dx.doi.org/10.1093/cercor/bhad031 Text en © The Author(s) 2023. Published by Oxford University Press. All rights reserved. For permissions, please e-mail: journals.permission@oup.com https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original Article
Colombo, Michele Angelo
Comanducci, Angela
Casarotto, Silvia
Derchi, Chiara-Camilla
Annen, Jitka
Viganò, Alessandro
Mazza, Alice
Trimarchi, Pietro Davide
Boly, Melanie
Fecchio, Matteo
Bodart, Olivier
Navarro, Jorge
Laureys, Steven
Gosseries, Olivia
Massimini, Marcello
Sarasso, Simone
Rosanova, Mario
Beyond alpha power: EEG spatial and spectral gradients robustly stratify disorders of consciousness
title Beyond alpha power: EEG spatial and spectral gradients robustly stratify disorders of consciousness
title_full Beyond alpha power: EEG spatial and spectral gradients robustly stratify disorders of consciousness
title_fullStr Beyond alpha power: EEG spatial and spectral gradients robustly stratify disorders of consciousness
title_full_unstemmed Beyond alpha power: EEG spatial and spectral gradients robustly stratify disorders of consciousness
title_short Beyond alpha power: EEG spatial and spectral gradients robustly stratify disorders of consciousness
title_sort beyond alpha power: eeg spatial and spectral gradients robustly stratify disorders of consciousness
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10233271/
https://www.ncbi.nlm.nih.gov/pubmed/36977648
http://dx.doi.org/10.1093/cercor/bhad031
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