Literature DB >> 9575987

Selective REM sleep deprivation in humans: effects on sleep and sleep EEG.

T Endo1, C Roth, H P Landolt, E Werth, D Aeschbach, P Achermann, A A Borbély.   

Abstract

To investigate rapid eye movement (REM) sleep regulation, eight healthy young men were deprived of REM sleep for three consecutive nights. In a three-night control sleep deprivation (CD) session 2 wk later, the subjects were repeatedly awakened from non-REM sleep in an attempt to match the awakenings during the REM sleep deprivation (RD) nights. During the RD nights the number of sleep interruptions required to prevent REM sleep increased within and across consecutive nights. REM sleep was reduced to 9.2% of baseline (CD nights: 80.7%) and rose to 140.1% in the first recovery night. RD gave rise to changes in the EEG power spectra of REM sleep. Power in the 8.25- to 11-Hz range was reduced in the first recovery night, an effect that gradually subsided but was still present in the third recovery night. The rising REM sleep propensity, as reflected by the increase of interventions within and across RD nights, and the moderate REM sleep rebound during recovery can be accounted for by a compensatory response that serves REM sleep homeostasis. The changes in the electroencephalogram power spectra, which were observed during enhanced REM sleep propensity, may be a sign of an altered quality of REM sleep.

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Mesh:

Year:  1998        PMID: 9575987     DOI: 10.1152/ajpregu.1998.274.4.R1186

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  27 in total

1.  The relative contributions of the homeostatic and circadian processes to sleep regulation under conditions of severe sleep restriction.

Authors:  Gemma M Paech; Sally A Ferguson; Charli Sargent; David J Kennaway; Gregory D Roach
Journal:  Sleep       Date:  2012-07-01       Impact factor: 5.849

2.  Dopamine transporter regulation during four nights of REM sleep deprivation followed by recovery--an in vivo molecular imaging study in humans.

Authors:  R C S Martins; M L Andersen; S A Garbuio; L R Bittencourt; C Guindalini; M C Shih; M Q Hoexter; R A Bressan; M L V Castiglioni; S Tufik
Journal:  Sleep       Date:  2010-02       Impact factor: 5.849

3.  Mathematical model of network dynamics governing mouse sleep-wake behavior.

Authors:  Cecilia G Diniz Behn; Emery N Brown; Thomas E Scammell; Nancy J Kopell
Journal:  J Neurophysiol       Date:  2007-04-04       Impact factor: 2.714

4.  A sleepy patient with REM rebound.

Authors:  Steven D Brass; Sanford Auerbach
Journal:  J Clin Sleep Med       Date:  2009-08-15       Impact factor: 4.062

5.  Analysis of the temporal organization of sleep spindles in the human sleep EEG using a phenomenological modeling approach.

Authors:  Eckehard Olbrich; Peter Achermann
Journal:  J Biol Phys       Date:  2008-05-20       Impact factor: 1.365

6.  REM sleep phase preference in the crepuscular Octodon degus assessed by selective REM sleep deprivation.

Authors:  Adrián Ocampo-Garcés; Felipe Hernández; Adrian G Palacios
Journal:  Sleep       Date:  2013-08-01       Impact factor: 5.849

7.  Slow wave sleep and REM sleep awakenings do not affect sleep dependent memory consolidation.

Authors:  Lisa Genzel; Martin Dresler; Renate Wehrle; Michael Grözinger; Axel Steiger
Journal:  Sleep       Date:  2009-03       Impact factor: 5.849

8.  Arousal state feedback as a potential physiological generator of the ultradian REM/NREM sleep cycle.

Authors:  A J K Phillips; P A Robinson; E B Klerman
Journal:  J Theor Biol       Date:  2012-12-05       Impact factor: 2.691

9.  Rapid eye movement (REM) sleep homeostatic regulatory processes in the rat: changes in the sleep-wake stages and electroencephalographic power spectra.

Authors:  J L Shea; T Mochizuki; V Sagvaag; T Aspevik; A A Bjorkum; S Datta
Journal:  Brain Res       Date:  2008-04-07       Impact factor: 3.252

10.  Why we sleep: the temporal organization of recovery.

Authors:  Emmanuel Mignot
Journal:  PLoS Biol       Date:  2008-04-29       Impact factor: 8.029

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