Brain dynamics depicts an extremely complex energy landscape that changes over time, and its characterisation is a central unsolved problem in neuroscience. We approximate the non-stationary landscape sustained by the human brain through a novel mathematical formalism that allows us characterise the attractor structure, i.e. the stationary points and their connections. Due to its time-varying nature, the structure of the global attractor and the corresponding number of energy levels changes over time. We apply this formalism to distinguish quantitatively between the different human brain states of wakefulness and different stages of sleep, as a step towards future clinical applications
International audienceThe resting state dynamics of the brain shows robust features of spatiotempora...
International audienceIn the human brain, spontaneous activity during resting state consists of rapi...
Human neuroimaging research has revealed that wakefulness and sleep involve very different activity ...
Brain dynamics depicts an extremely complex energy landscape that changes over time, and its charact...
The self-organising global dynamics underlying brain states emerge from complex recursive nonlinear ...
The modern understanding of sleep is based on the classification of sleep into stages defined by the...
Current state-of-the-art functional magnetic resonance imaging (fMRI) offers remarkable imaging qual...
Background and objectives: In standard practice, sleep is classified into distinct stages by human o...
The configuration of the human brain system at rest, which is in a transitory phase among multistabl...
Global brain states are frequently placed within a unidimensional continuum by correlational studies...
Functional and effective connectivity of cortical areas are essential for normal brain function unde...
International audienceDuring the sleep-wake cycle, the brain undergoes profound dynamical changes, w...
International audienceThe resting state dynamics of the brain shows robust features of spatiotempora...
International audienceIn the human brain, spontaneous activity during resting state consists of rapi...
Human neuroimaging research has revealed that wakefulness and sleep involve very different activity ...
Brain dynamics depicts an extremely complex energy landscape that changes over time, and its charact...
The self-organising global dynamics underlying brain states emerge from complex recursive nonlinear ...
The modern understanding of sleep is based on the classification of sleep into stages defined by the...
Current state-of-the-art functional magnetic resonance imaging (fMRI) offers remarkable imaging qual...
Background and objectives: In standard practice, sleep is classified into distinct stages by human o...
The configuration of the human brain system at rest, which is in a transitory phase among multistabl...
Global brain states are frequently placed within a unidimensional continuum by correlational studies...
Functional and effective connectivity of cortical areas are essential for normal brain function unde...
International audienceDuring the sleep-wake cycle, the brain undergoes profound dynamical changes, w...
International audienceThe resting state dynamics of the brain shows robust features of spatiotempora...
International audienceIn the human brain, spontaneous activity during resting state consists of rapi...
Human neuroimaging research has revealed that wakefulness and sleep involve very different activity ...