Literature DB >> 10341363

The role of basal forebrain neurons in tonic and phasic activation of the cerebral cortex.

L Détári1, D D Rasmusson, K Semba.   

Abstract

The basal forebrain and in particular its cholinergic projections to the cerebral cortex have long been implicated in the maintenance of cortical activation. This review summarizes evidence supporting a close link between basal forebrain neuronal activity and the cortical electroencephalogram (EEG). The anatomy of basal forebrain projections and effects of acetylcholine on cortical and thalamic neurons are discussed along with the modulatory inputs to basal forebrain neurons. As both cholinergic and GABAergic basal forebrain neurons project to the cortex, identification of the transmitter specificity of basal forebrain neurons is critical for correlating their activity with the activity of cortical neurons and the EEG. Characteristics of the different basal forebrain neurons from in vitro and in vivo studies are summarized which might make it possible to identify different neuronal types. Recent evidence suggests that basal forebrain neurons activate the cortex not only tonically, as previously shown, but also phasically. Data on basal forebrain neuronal activity are presented, clearly showing that there are strong tonic and phasic correlations between the firing of individual basal forebrain cells and the cortical activity. Close analysis of temporal correlation indicates that changes in basal forebrain neuronal activity precede those in the cortex. While correlational, these data, together with the anatomical and pharmacological findings, suggest that the basal forebrain has an important role in regulating both the tonic and the phasic functioning of the cortex.

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Year:  1999        PMID: 10341363     DOI: 10.1016/s0301-0082(98)00084-7

Source DB:  PubMed          Journal:  Prog Neurobiol        ISSN: 0301-0082            Impact factor:   11.685


  45 in total

1.  Analysis of state-dependent transitions in frequency and long-distance coordination in a model oscillatory cortical circuit.

Authors:  David J Pinto; Stephanie R Jones; Tasso J Kaper; Nancy Kopell
Journal:  J Comput Neurosci       Date:  2003 Sep-Oct       Impact factor: 1.621

2.  Activity of neurons in the basal magnocellular nucleus during performance of an operant task.

Authors:  B V Chernyshev; Ya A Panasyuk; I I Semikopnaya; N O Timofeeva
Journal:  Neurosci Behav Physiol       Date:  2004-11

3.  Effect of cortical spreading depression on basal forebrain neurons.

Authors:  Viktor Szentgyörgyi; Balázs Balatoni; Attila Tóth; László Détári
Journal:  Exp Brain Res       Date:  2006-01-18       Impact factor: 1.972

4.  The level of cholinergic nucleus basalis activation controls the specificity of auditory associative memory.

Authors:  Norman M Weinberger; Alexandre A Miasnikov; Jemmy C Chen
Journal:  Neurobiol Learn Mem       Date:  2006-06-05       Impact factor: 2.877

5.  The effect of prefrontal stimulation on the firing of basal forebrain neurons in urethane anesthetized rat.

Authors:  Erika Gyengési; Laszlo Zaborszky; László Détári
Journal:  Brain Res Bull       Date:  2007-10-26       Impact factor: 4.077

6.  Heterologous expression of the invertebrate FMRFamide-gated sodium channel as a mechanism to selectively activate mammalian neurons.

Authors:  S M Schanuel; K A Bell; S C Henderson; A R McQuiston
Journal:  Neuroscience       Date:  2008-06-10       Impact factor: 3.590

7.  Cholinergic filtering in the recurrent excitatory microcircuit of cortical layer 4.

Authors:  Emmanuel Eggermann; Dirk Feldmeyer
Journal:  Proc Natl Acad Sci U S A       Date:  2009-06-29       Impact factor: 11.205

8.  Distribution and intrinsic membrane properties of basal forebrain GABAergic and parvalbumin neurons in the mouse.

Authors:  James T McKenna; Chun Yang; Serena Franciosi; Stuart Winston; Kathleen K Abarr; Matthew S Rigby; Yuchio Yanagawa; Robert W McCarley; Ritchie E Brown
Journal:  J Comp Neurol       Date:  2013-04-15       Impact factor: 3.215

9.  Microdialysis elevation of adenosine in the basal forebrain produces vigilance impairments in the rat psychomotor vigilance task.

Authors:  Michael A Christie; Yunren Bolortuya; Li Chao Chen; James T McKenna; Robert W McCarley; Robert E Strecker
Journal:  Sleep       Date:  2008-10       Impact factor: 5.849

10.  Detection of an inhibitory cortical gradient underlying peak shift in learning: a neural basis for a false memory.

Authors:  Alexandre A Miasnikov; Norman M Weinberger
Journal:  Neurobiol Learn Mem       Date:  2012-10-11       Impact factor: 2.877

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