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PMID: 11069606 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A model of gamma-frequency network oscillations induced in the rat CA3 region by carbachol in vitro.

The European journal of neuroscience ·Vol. 12 ·No. 11 ·2000-11-00 ·Pages 4093-106

Traub RD, Bibbig A, Fisahn A, LeBeau FE, Whittington MA, Buhl EH

Abstract

Carbachol (> 20 microM) and kainate (100 nM) induce, in the in vitro CA3 region, synchronized neuronal population oscillations at approximately 40 Hz having distinctive features: (i) the oscillations persist for hours; (ii) interneurons in kainate fire at 5-20 Hz and their firing is tightly locked to field potential maxima (recorded in s. radiatum); (iii) in contrast, pyramidal cells, in both carbachol and kainate, fire at frequencies as low as 2 Hz, and their firing is less tightly locked to field potentials; (iv) the oscillations require GABAA receptors, AMPA receptors and gap junctions. Using a network of 3072 pyramidal cells and 384 interneurons (each multicompartmental and containing a segment of unmyelinated axon), we employed computer simulations to examine conditions under which network oscillations might occur with the experimentally determined properties. We found that such network oscillations could be generated, robustly, when gap junctions were located between pyramidal cell axons, as suggested to occur based on studies of spontaneous high-frequency (> 100 Hz) network oscillations in the in vitro hippocampus. In the model, pyramidal cell somatic firing was not essential for the oscillations. Critical components of the model are (i) the plexus of pyramidal cell axons, randomly and sparsely interconnected by gap junctions; (ii) glutamate synapses onto interneurons; (iii) synaptic inhibition between interneurons and onto pyramidal cell axons and somata; (iv) a sufficiently high rate of spontaneous action potentials generated in pyramidal cell axons. This model explains the dependence of network oscillations on GABA(A) and AMPA receptors, as well as on gap junctions. Besides the existence of axon-axon gap junctions, the model predicts that many of the pyramidal cell action potentials, during sustained gamma oscillations, are initiated in axons.

MeSH Terms
Action Potentials/drug effects,physiology Animals Axons/drug effects,physiology Carbachol/pharmacology Electric Stimulation Evoked Potentials/drug effects,physiology Gap Junctions/drug effects,physiology Hippocampus/drug effects,physiology In Vitro Techniques Kainic Acid/pharmacology Nerve Net/drug effects,physiology Neurons/drug effects,physiology Oscillometry Pyramidal Cells/drug effects,physiology Rats Rats, Wistar Receptors, AMPA/physiology Receptors, GABA-A/physiology
Chemicals
Receptors, AMPA Receptors, GABA-A Carbachol Kainic Acid
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Traub R D
Division of Neuroscience, University of Birmingham School of Medicine, Edgbaston, Birmingham B15 2TT, UK. [email protected]
Bibbig A
Fisahn A
LeBeau F E
Whittington M A
Buhl E H
Article Info
Journal
The European journal of neuroscience
Abbr.
Eur J Neurosci
ISSN
0953-816X
Published
2000-11-00
Pages
4093-106
Language
English
Region
France
NLM ID
8918110
Subset
IM
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