Literature DB >> 17544519

Thalamic synchrony and dynamic regulation of global forebrain oscillations.

John R Huguenard1, David A McCormick.   

Abstract

The circuitry within the thalamus creates an intrinsic oscillatory unit whose function depends critically on reciprocal synaptic connectivity between excitatory thalamocortical relay neurons and inhibitory thalamic reticular neurons along with a robust post-inhibitory rebound mechanism in relay neurons. Feedforward and feedback connections between cortex and thalamus reinforce the thalamic oscillatory activity into larger thalamocortical networks to generate sleep spindles and spike-wave discharge of generalized absence epilepsy. The degree of synchrony within the thalamic network seems to be crucial in determining whether normal (spindle) or pathological (spike-wave) oscillations occur, and recent studies show that regulation of excitability in the reticular nucleus leads to dynamical modulation of the state of the thalamic circuit and provide a basis for explaining how a variety of unrelated genetic alterations might lead to the spike-wave phenotype. In addition, given the central role of the reticular nucleus in generating spike-wave discharge, these studies have suggested specific interventions that would prevent seizures while still allowing normal spindle generation to occur. This review is part of the INMED/TINS special issue Physiogenic and pathogenic oscillations: the beauty and the beast, based on presentations at the annual INMED/TINS symposium (http://inmednet.com).

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Year:  2007        PMID: 17544519     DOI: 10.1016/j.tins.2007.05.007

Source DB:  PubMed          Journal:  Trends Neurosci        ISSN: 0166-2236            Impact factor:   13.837


  163 in total

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2.  Zona glomerulosa cells of the mouse adrenal cortex are intrinsic electrical oscillators.

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3.  Nerve terminal nicotinic acetylcholine receptors initiate quantal GABA release from perisomatic interneurons by activating axonal T-type (Cav3) Ca²⁺ channels and Ca²⁺ release from stores.

Authors:  Ai-Hui Tang; Miranda A Karson; Daniel A Nagode; J Michael McIntosh; Victor N Uebele; John J Renger; Matthias Klugmann; Teresa A Milner; Bradley E Alger
Journal:  J Neurosci       Date:  2011-09-21       Impact factor: 6.167

4.  Tissue-specific variation of Ube3a protein expression in rodents and in a mouse model of Angelman syndrome.

Authors:  Richard M Gustin; Terry Jo Bichell; Michael Bubser; Jennifer Daily; Irina Filonova; Davit Mrelashvili; Ariel Y Deutch; Roger J Colbran; Edwin J Weeber; Kevin F Haas
Journal:  Neurobiol Dis       Date:  2010-04-25       Impact factor: 5.996

5.  Dynamics of coupled thalamocortical modules.

Authors:  Jonathan D Drover; Nicholas D Schiff; Jonathan D Victor
Journal:  J Comput Neurosci       Date:  2010-05-20       Impact factor: 1.621

6.  Regulation of inhibitory synapses by presynaptic D₄ dopamine receptors in thalamus.

Authors:  Gubbi Govindaiah; Tongfei Wang; Martha U Gillette; Shane R Crandall; Charles L Cox
Journal:  J Neurophysiol       Date:  2010-09-08       Impact factor: 2.714

7.  The same core rhythm generator underlies different rhythmic motor patterns.

Authors:  Rachel S White; Michael P Nusbaum
Journal:  J Neurosci       Date:  2011-08-10       Impact factor: 6.167

8.  Genetic complexity of absence seizures in substrains of C3H mice.

Authors:  S Tokuda; B J Beyer; W N Frankel
Journal:  Genes Brain Behav       Date:  2009-12-17       Impact factor: 3.449

9.  Extraction and characterization of essential discharge patterns from multisite recordings of spiking ongoing activity.

Authors:  Riccardo Storchi; Gabriele E M Biella; Diego Liberati; Giuseppe Baselli
Journal:  PLoS One       Date:  2009-01-28       Impact factor: 3.240

Review 10.  Mechanisms of intrinsic epileptogenesis in human gelastic seizures with hypothalamic hamartoma.

Authors:  Jie Wu; Ming Gao; Jian-Xin Shen; Shen-Feng Qiu; John F Kerrigan
Journal:  CNS Neurosci Ther       Date:  2014-12-12       Impact factor: 5.243

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