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Foundations of Human Consciousness: Imaging the Twilight Zone

What happens in the brain when conscious awareness of the surrounding world fades? We manipulated consciousness in two experiments in a group of healthy males and measured brain activity with positron emission tomography. Measurements were made during wakefulness, escalating and constant levels of t...

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Autores principales: Scheinin, Annalotta, Kantonen, Oskari, Alkire, Michael, Långsjö, Jaakko, Kallionpää, Roosa E., Kaisti, Kaike, Radek, Linda, Johansson, Jarkko, Sandman, Nils, Nyman, Mikko, Scheinin, Mika, Vahlberg, Tero, Revonsuo, Antti, Valli, Katja, Scheinin, Harry
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for Neuroscience 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8115882/
https://www.ncbi.nlm.nih.gov/pubmed/33372062
http://dx.doi.org/10.1523/JNEUROSCI.0775-20.2020
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author Scheinin, Annalotta
Kantonen, Oskari
Alkire, Michael
Långsjö, Jaakko
Kallionpää, Roosa E.
Kaisti, Kaike
Radek, Linda
Johansson, Jarkko
Sandman, Nils
Nyman, Mikko
Scheinin, Mika
Vahlberg, Tero
Revonsuo, Antti
Valli, Katja
Scheinin, Harry
author_facet Scheinin, Annalotta
Kantonen, Oskari
Alkire, Michael
Långsjö, Jaakko
Kallionpää, Roosa E.
Kaisti, Kaike
Radek, Linda
Johansson, Jarkko
Sandman, Nils
Nyman, Mikko
Scheinin, Mika
Vahlberg, Tero
Revonsuo, Antti
Valli, Katja
Scheinin, Harry
author_sort Scheinin, Annalotta
collection PubMed
description What happens in the brain when conscious awareness of the surrounding world fades? We manipulated consciousness in two experiments in a group of healthy males and measured brain activity with positron emission tomography. Measurements were made during wakefulness, escalating and constant levels of two anesthetic agents (experiment 1, n = 39), and during sleep-deprived wakefulness and non-rapid eye movement sleep (experiment 2, n = 37). In experiment 1, the subjects were randomized to receive either propofol or dexmedetomidine until unresponsiveness. In both experiments, forced awakenings were applied to achieve rapid recovery from an unresponsive to a responsive state, followed by immediate and detailed interviews of subjective experiences during the preceding unresponsive condition. Unresponsiveness rarely denoted unconsciousness, as the majority of the subjects had internally generated experiences. Unresponsive anesthetic states and verified sleep stages, where a subsequent report of mental content included no signs of awareness of the surrounding world, indicated a disconnected state. Functional brain imaging comparing responsive and connected versus unresponsive and disconnected states of consciousness during constant anesthetic exposure revealed that activity of the thalamus, cingulate cortices, and angular gyri are fundamental for human consciousness. These brain structures were affected independent from the pharmacologic agent, drug concentration, and direction of change in the state of consciousness. Analogous findings were obtained when consciousness was regulated by physiological sleep. State-specific findings were distinct and separable from the overall effects of the interventions, which included widespread depression of brain activity across cortical areas. These findings identify a central core brain network critical for human consciousness. SIGNIFICANCE STATEMENT Trying to understand the biological basis of human consciousness is currently one of the greatest challenges of neuroscience. While the loss and return of consciousness regulated by anesthetic drugs and physiological sleep are used as model systems in experimental studies on consciousness, previous research results have been confounded by drug effects, by confusing behavioral “unresponsiveness” and internally generated consciousness, and by comparing brain activity levels across states that differ in several other respects than only consciousness. Here, we present carefully designed studies that overcome many previous confounders and for the first time reveal the neural mechanisms underlying human consciousness and its disconnection from behavioral responsiveness, both during anesthesia and during normal sleep, and in the same study subjects.
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spelling pubmed-81158822021-05-13 Foundations of Human Consciousness: Imaging the Twilight Zone Scheinin, Annalotta Kantonen, Oskari Alkire, Michael Långsjö, Jaakko Kallionpää, Roosa E. Kaisti, Kaike Radek, Linda Johansson, Jarkko Sandman, Nils Nyman, Mikko Scheinin, Mika Vahlberg, Tero Revonsuo, Antti Valli, Katja Scheinin, Harry J Neurosci Research Articles What happens in the brain when conscious awareness of the surrounding world fades? We manipulated consciousness in two experiments in a group of healthy males and measured brain activity with positron emission tomography. Measurements were made during wakefulness, escalating and constant levels of two anesthetic agents (experiment 1, n = 39), and during sleep-deprived wakefulness and non-rapid eye movement sleep (experiment 2, n = 37). In experiment 1, the subjects were randomized to receive either propofol or dexmedetomidine until unresponsiveness. In both experiments, forced awakenings were applied to achieve rapid recovery from an unresponsive to a responsive state, followed by immediate and detailed interviews of subjective experiences during the preceding unresponsive condition. Unresponsiveness rarely denoted unconsciousness, as the majority of the subjects had internally generated experiences. Unresponsive anesthetic states and verified sleep stages, where a subsequent report of mental content included no signs of awareness of the surrounding world, indicated a disconnected state. Functional brain imaging comparing responsive and connected versus unresponsive and disconnected states of consciousness during constant anesthetic exposure revealed that activity of the thalamus, cingulate cortices, and angular gyri are fundamental for human consciousness. These brain structures were affected independent from the pharmacologic agent, drug concentration, and direction of change in the state of consciousness. Analogous findings were obtained when consciousness was regulated by physiological sleep. State-specific findings were distinct and separable from the overall effects of the interventions, which included widespread depression of brain activity across cortical areas. These findings identify a central core brain network critical for human consciousness. SIGNIFICANCE STATEMENT Trying to understand the biological basis of human consciousness is currently one of the greatest challenges of neuroscience. While the loss and return of consciousness regulated by anesthetic drugs and physiological sleep are used as model systems in experimental studies on consciousness, previous research results have been confounded by drug effects, by confusing behavioral “unresponsiveness” and internally generated consciousness, and by comparing brain activity levels across states that differ in several other respects than only consciousness. Here, we present carefully designed studies that overcome many previous confounders and for the first time reveal the neural mechanisms underlying human consciousness and its disconnection from behavioral responsiveness, both during anesthesia and during normal sleep, and in the same study subjects. Society for Neuroscience 2021-02-24 /pmc/articles/PMC8115882/ /pubmed/33372062 http://dx.doi.org/10.1523/JNEUROSCI.0775-20.2020 Text en Copyright © 2021 Scheinin et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Articles
Scheinin, Annalotta
Kantonen, Oskari
Alkire, Michael
Långsjö, Jaakko
Kallionpää, Roosa E.
Kaisti, Kaike
Radek, Linda
Johansson, Jarkko
Sandman, Nils
Nyman, Mikko
Scheinin, Mika
Vahlberg, Tero
Revonsuo, Antti
Valli, Katja
Scheinin, Harry
Foundations of Human Consciousness: Imaging the Twilight Zone
title Foundations of Human Consciousness: Imaging the Twilight Zone
title_full Foundations of Human Consciousness: Imaging the Twilight Zone
title_fullStr Foundations of Human Consciousness: Imaging the Twilight Zone
title_full_unstemmed Foundations of Human Consciousness: Imaging the Twilight Zone
title_short Foundations of Human Consciousness: Imaging the Twilight Zone
title_sort foundations of human consciousness: imaging the twilight zone
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8115882/
https://www.ncbi.nlm.nih.gov/pubmed/33372062
http://dx.doi.org/10.1523/JNEUROSCI.0775-20.2020
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