Literature DB >> 20730381

Integrated brain circuits: neuron-astrocyte interaction in sleep-related rhythmogenesis.

Michael M Halassa1, Marco Dal Maschio, Riccardo Beltramo, Philip G Haydon, Fabio Benfenati, Tommaso Fellin.   

Abstract

Although astrocytes are increasingly recognized as important modulators of neuronal excitability and information transfer at the synapse, whether these cells regulate neuronal network activity has only recently started to be investigated. In this article, we highlight the role of astrocytes in the modulation of circuit function with particular focus on sleep-related rhythmogenesis. We discuss recent data showing that these glial cells regulate slow oscillations, a specific thalamocortical activity that characterizes non-REM sleep, and sleep-associated behaviors. Based on these findings, we predict that our understanding of the genesis and tuning of thalamocortical rhythms will necessarily go through an integrated view of brain circuits in which non-neuronal cells can play important neuromodulatory roles.

Mesh:

Year:  2010        PMID: 20730381      PMCID: PMC3097528          DOI: 10.1100/tsw.2010.130

Source DB:  PubMed          Journal:  ScientificWorldJournal        ISSN: 1537-744X


  126 in total

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Authors:  Grant R J Gordon; Dinara V Baimoukhametova; Sarah A Hewitt; W R A Kosala J S Rajapaksha; Thomas E Fisher; Jaideep S Bains
Journal:  Nat Neurosci       Date:  2005-07-03       Impact factor: 24.884

Review 8.  Integrated brain circuits: astrocytic networks modulate neuronal activity and behavior.

Authors:  Michael M Halassa; Philip G Haydon
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Review 6.  Pedunculopontine Gamma Band Activity and Development.

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Review 7.  A Neurophysiological Perspective on a Preventive Treatment against Schizophrenia Using Transcranial Electric Stimulation of the Corticothalamic Pathway.

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8.  Single-cell transcriptomics and cell-specific proteomics reveals molecular signatures of sleep.

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