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Awakening
by
Logothetis, Nikos K.
, Kringelbach, Morten L.
, Cruzat, Josephine
, Deco, Gustavo
, Laufs, Helmut
, Cabral, Joana
, Tagliazucchi, Enzo
in
Biological Sciences
/ Brain
/ Brain - diagnostic imaging
/ Brain - physiopathology
/ Brain Injuries - diagnostic imaging
/ Brain Injuries - physiopathology
/ Brain injury
/ Coma
/ Computer simulation
/ Deep Brain Stimulation
/ Electrical stimuli
/ Female
/ Frequency stability
/ Head injuries
/ Humans
/ Male
/ Medical imaging
/ Mental disorders
/ Models, Neurological
/ Nervous system
/ Neural networks
/ Neuroimaging
/ Neurology
/ Neuroscience
/ PNAS Plus
/ Sleep
/ Sleep and wakefulness
/ Stimulation
/ Wakefulness
2019
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Awakening
by
Logothetis, Nikos K.
, Kringelbach, Morten L.
, Cruzat, Josephine
, Deco, Gustavo
, Laufs, Helmut
, Cabral, Joana
, Tagliazucchi, Enzo
in
Biological Sciences
/ Brain
/ Brain - diagnostic imaging
/ Brain - physiopathology
/ Brain Injuries - diagnostic imaging
/ Brain Injuries - physiopathology
/ Brain injury
/ Coma
/ Computer simulation
/ Deep Brain Stimulation
/ Electrical stimuli
/ Female
/ Frequency stability
/ Head injuries
/ Humans
/ Male
/ Medical imaging
/ Mental disorders
/ Models, Neurological
/ Nervous system
/ Neural networks
/ Neuroimaging
/ Neurology
/ Neuroscience
/ PNAS Plus
/ Sleep
/ Sleep and wakefulness
/ Stimulation
/ Wakefulness
2019
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Do you wish to request the book?
Awakening
by
Logothetis, Nikos K.
, Kringelbach, Morten L.
, Cruzat, Josephine
, Deco, Gustavo
, Laufs, Helmut
, Cabral, Joana
, Tagliazucchi, Enzo
in
Biological Sciences
/ Brain
/ Brain - diagnostic imaging
/ Brain - physiopathology
/ Brain Injuries - diagnostic imaging
/ Brain Injuries - physiopathology
/ Brain injury
/ Coma
/ Computer simulation
/ Deep Brain Stimulation
/ Electrical stimuli
/ Female
/ Frequency stability
/ Head injuries
/ Humans
/ Male
/ Medical imaging
/ Mental disorders
/ Models, Neurological
/ Nervous system
/ Neural networks
/ Neuroimaging
/ Neurology
/ Neuroscience
/ PNAS Plus
/ Sleep
/ Sleep and wakefulness
/ Stimulation
/ Wakefulness
2019
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Journal Article
Awakening
2019
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Overview
A fundamental problem in systems neuroscience is how to force a transition from one brain state to another by external driven stimulation in, for example, wakefulness, sleep, coma, or neuropsychiatric diseases. This requires a quantitative and robust definition of a brain state, which has so far proven elusive. Here, we provide such a definition, which, together with whole-brain modeling, permits the systematic study in silico of how simulated brain stimulation can force transitions between different brain states in humans. Specifically, we use a unique neuroimaging dataset of human sleep to systematically investigate where to stimulate the brain to force an awakening of the human sleeping brain and vice versa. We show where this is possible using a definition of a brain state as an ensemble of “metastable substates,” each with a probabilistic stability and occurrence frequency fitted by a generative whole-brain model, fine-tuned on the basis of the effective connectivity. Given the biophysical limitations of direct electrical stimulation (DES) of microcircuits, this opens exciting possibilities for discovering stimulation targets and selecting connectivity patterns that can ensure propagation of DES-induced neural excitation, potentially making it possible to create awakenings from complex cases of brain injury.
Publisher
National Academy of Sciences
Subject
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