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Gamma Oscillation by Synaptic Inhibition in a Hippocampal Interneuronal Network Model

Journal of Neuroscience · 1996 · Vol. 16(20) · pp. 6402–6413
Xiao‐Jing WangGyörgy Buzsáki

Abstract

Fast neuronal oscillations (gamma, 20-80 Hz) have been observed in the neocortex and hippocampus during behavioral arousal. Using computer simulations, we investigated the hypothesis that such rhythmic activity can emerge in a random network of interconnected GABAergic fast-spiking interneurons. Specific conditions for the population synchronization, on properties of single cells and the circuit, were identified. These include the following: (1) that the amplitude of spike afterhyperpolarization be above the GABAA synaptic reversal potential; (2) that the ratio between the synaptic decay time constant and the oscillation period be sufficiently large; (3) that the effects of heterogeneities be modest because of a steep frequency-current relationship of fast-spiking neurons. Furthermore, using a population coherence measure, based on coincident firings of neural pairs, it is demonstrated that large-scale network synchronization requires a critical (minimal) average number of synaptic contacts per cell, which is not sensitive to the network size. By changing the GABAA synaptic maximal conductance, synaptic decay time constant, or the mean external excitatory drive to the network, the neuronal firing frequencies were gradually and monotonically varied. By contrast, the network synchronization was found to be high only within a frequency band coinciding with the gamma (20-80 Hz) range. We conclude that the GABAA synaptic transmission provides a suitable mechanism for synchronized gamma oscillations in a sparsely connected network of fast-spiking interneurons. In turn, the interneuronal network can presumably maintain subthreshold oscillations in principal cell populations and serve to synchronize discharges of spatially distributed neurons.

Neural dynamics and brain functionNeuroscience and Neural EngineeringNeuroscience and Neuropharmacology ResearchNeuroscienceHippocampal formationPresynaptic inhibitionSynaptic fatiguePsychologyExcitatory postsynaptic potentialInhibitory postsynaptic potential

MeSH terms

AnimalsHippocampusInterneuronsTime FactorsNeural Networks, ComputerPresynaptic Terminals

Funding

  • Alfred P. Sloan Foundation
  • Office of Naval Research
Citations
1,598
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99%
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References
Gamma (40-100 Hz) oscillation in the hippocampus of the behaving rat
Journal of Neuroscience · 1995 · 1,552 citations
Synchrony in Excitatory Neural Networks
Neural Computation · 1995 · 602 citations
Type I Membranes, Phase Resetting Curves, and Synchrony
Neural Computation · 1996 · 1,017 citations
Visual Feature Integration and the Temporal Correlation Hypothesis
Annual Review of Neuroscience · 1995 · 3,169 citations
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