Literature DB >> 16936722

Arm immobilization causes cortical plastic changes and locally decreases sleep slow wave activity.

Reto Huber1, M Felice Ghilardi, Marcello Massimini, Fabio Ferrarelli, Brady A Riedner, Michael J Peterson, Giulio Tononi.   

Abstract

Sleep slow wave activity (SWA) is thought to reflect sleep need, increasing after wakefulness and decreasing after sleep. We showed recently that a learning task involving a circumscribed brain region produces a local increase in sleep SWA. We hypothesized that increases in cortical SWA reflect synaptic potentiation triggered by learning. To further investigate the link between synaptic plasticity and sleep, we asked whether a procedure leading to synaptic depression would cause instead a decrease in sleep SWA. We show here that if a subject's arm is immobilized during the day, motor performance deteriorates and both somatosensory and motor evoked potentials decrease over contralateral sensorimotor cortex, indicative of local synaptic depression. Notably, during subsequent sleep, SWA over the same cortical area is markedly reduced. Thus, cortical plasticity is linked to local sleep regulation without learning in the classical sense. Moreover, when synaptic strength is reduced, local sleep need is also reduced.

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Year:  2006        PMID: 16936722     DOI: 10.1038/nn1758

Source DB:  PubMed          Journal:  Nat Neurosci        ISSN: 1097-6256            Impact factor:   24.884


  206 in total

1.  Localized suppression of cortical growth hormone-releasing hormone receptors state-specifically attenuates electroencephalographic delta waves.

Authors:  Fan Liao; Ping Taishi; Lynn Churchill; Marcus J Urza; James M Krueger
Journal:  J Neurosci       Date:  2010-03-17       Impact factor: 6.167

2.  Local sleep homeostasis in the avian brain: convergence of sleep function in mammals and birds?

Authors:  John A Lesku; Alexei L Vyssotski; Dolores Martinez-Gonzalez; Christiane Wilzeck; Niels C Rattenborg
Journal:  Proc Biol Sci       Date:  2011-01-05       Impact factor: 5.349

3.  Sleep and synaptic renormalization: a computational study.

Authors:  Umberto Olcese; Steve K Esser; Giulio Tononi
Journal:  J Neurophysiol       Date:  2010-10-06       Impact factor: 2.714

4.  Hippocampal memory consolidation during sleep: a comparison of mammals and birds.

Authors:  Niels C Rattenborg; Dolores Martinez-Gonzalez; Timothy C Roth; Vladimir V Pravosudov
Journal:  Biol Rev Camb Philos Soc       Date:  2010-11-11

5.  Sleep- and time of day-linked RNA transcript expression in wild-type and IL1 receptor accessory protein-null mice.

Authors:  Vladyslav Oles; Khia Min Sabrina Koh; Cheryl J Dykstra-Aiello; Marina Savenkova; Cody M Gibbons; Joseph T Nguyen; Ilia Karatsoreos; Alexander Panchenko; James M Krueger
Journal:  J Appl Physiol (1985)       Date:  2020-04-23

6.  Emergence of sensory patterns during sleep highlights differential dynamics of REM and non-REM sleep stages.

Authors:  Michal Ramot; Lior Fisch; Ido Davidesco; Michal Harel; Svetlana Kipervasser; Fani Andelman; Miri Y Neufeld; Uri Kramer; Itzhak Fried; Rafael Malach
Journal:  J Neurosci       Date:  2013-09-11       Impact factor: 6.167

Review 7.  Local sleep.

Authors:  James M Krueger; Joseph T Nguyen; Cheryl J Dykstra-Aiello; Ping Taishi
Journal:  Sleep Med Rev       Date:  2018-11-12       Impact factor: 11.609

Review 8.  The role of cytokines in sleep regulation.

Authors:  James M Krueger
Journal:  Curr Pharm Des       Date:  2008       Impact factor: 3.116

Review 9.  About sleep's role in memory.

Authors:  Björn Rasch; Jan Born
Journal:  Physiol Rev       Date:  2013-04       Impact factor: 37.312

10.  Measures of cortical plasticity after transcranial paired associative stimulation predict changes in electroencephalogram slow-wave activity during subsequent sleep.

Authors:  Reto Huber; Sara Määttä; Steve K Esser; Simone Sarasso; Fabio Ferrarelli; Adam Watson; Florinda Ferreri; Michael J Peterson; Giulio Tononi
Journal:  J Neurosci       Date:  2008-07-30       Impact factor: 6.167

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