A Theoretically Based Index of Consciousness Independent of Sensory Processing and Behavior

Теоретически обоснованный индекс сознания, независимый от сенсорной обработки и поведения
Olivia Gosseries, Steven Laureys, Giulio Tononi, Marcello Massimini, Mélanie Boly, Mario Rosanova, Simone Sarasso, Silvia Casarotto, Adenauer G. Casali, Karina Rabello Casali, Marie-Aurélie Bruno
2013-08-14

TMS-evoked potentialsalgorithmic complexityconsciousness assessmentperturbational complexity index (PCI)transcranial magnetic stimulation (TMS)
One challenging aspect of the clinical assessment of brain-injured, unresponsive patients is the lack of an objective measure of consciousness that is independent of the subject's ability to interact with the external environment. Theoretical considerations suggest that consciousness depends on the brain's ability to support complex activity patterns that are, at once, distributed among interacting cortical areas (integrated) and differentiated in space and time (information-rich). We introduce and test a theory-driven index of the level of consciousness called the perturbational complexity index (PCI). PCI is calculated by (i) perturbing the cortex with transcranial magnetic stimulation (TMS) to engage distributed interactions in the brain (integration) and (ii) compressing the spatiotemporal pattern of these electrocortical responses to measure their algorithmic complexity (information). We test PCI on a large data set of TMS-evoked potentials recorded in healthy subjects during wakefulness, dreaming, nonrapid eye movement sleep, and different levels of sedation induced by anesthetic agents (midazolam, xenon, and propofol), as well as in patients who had emerged from coma (vegetative state, minimally conscious state, and locked-in syndrome). PCI reliably discriminated the level of consciousness in single individuals during wakefulness, sleep, and anesthesia, as well as in patients who had emerged from coma and recovered a minimal level of consciousness. PCI can potentially be used for objective determination of the level of consciousness at the bedside.
1
PCI may enable objective bedside assessment of consciousness independently of sensory processing and behavioral interaction.
2
PCI reliably discriminated levels of consciousness in individual subjects during wakefulness, sleep, anesthesia, and recovery from coma.
3
PCI was tested on TMS-evoked potentials across wakefulness, dreaming, nonrapid eye movement sleep, multiple anesthetics, and post-coma conditions.
4
The index distinguished patients with different post-coma consciousness levels, including vegetative state, minimally conscious state, and locked-in syndrome.
5
The perturbational complexity index (PCI) estimates consciousness by combining TMS-induced cortical integration with the algorithmic complexity of spatiotemporal electrocortical responses.

Perturbational Complexity Index (PCI) measured via TMS-evoked electrocortical responses in human brains (healthy subjects across wakefulness, sleep, anesthesia, and brain-injured patients)

The level of consciousness as reflected by the complexity and integration of TMS-evoked electrocortical activity, independent of sensory processing and behavior

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Publication Date
2013-08-14
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Olivia Gosseries
Steven Laureys
Giulio Tononi
Marcello Massimini
Mélanie Boly
Mario Rosanova
Simone Sarasso
Silvia Casarotto
Adenauer G. Casali
Karina Rabello Casali
Marie-Aurélie Bruno
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