An optimal monitor of the electroencephalographic sigma sleep state

A model has been proposed for a Markov-jumping sleep depth that modulates a white-noise driven structure generating the sigma rhythm in the electroencephalogram. The corresponding maximum likelihood monitor, that continuously detects the current sleep stage from the observed electroencephalogram, ha...

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Veröffentlicht in:Biological cybernetics 1985, Vol.51 (4), p.263-270
Hauptverfasser: KEMP, B, JASPERS, P, FRANZEN, J. M, JANSSEN, A. J. M. W
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container_title Biological cybernetics
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creator KEMP, B
JASPERS, P
FRANZEN, J. M
JANSSEN, A. J. M. W
description A model has been proposed for a Markov-jumping sleep depth that modulates a white-noise driven structure generating the sigma rhythm in the electroencephalogram. The corresponding maximum likelihood monitor, that continuously detects the current sleep stage from the observed electroencephalogram, has been derived and implemented. Simulations show high detection performances.
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subjects Biological and medical sciences
Cybernetics
Electroencephalography
Fundamental and applied biological sciences. Psychology
Humans
Models, Neurological
Monitoring, Physiologic - instrumentation
Sleep Stages - physiology
Sleep. Vigilance
Vertebrates: nervous system and sense organs
title An optimal monitor of the electroencephalographic sigma sleep state
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