Literature DB >> 10196566

Frequency-dependent synaptic depression and the balance of excitation and inhibition in the neocortex.

M Galarreta1, S Hestrin.   

Abstract

The stability of cortical neuron activity in vivo suggests that the firing rates of both excitatory and inhibitory neurons are dynamically adjusted. Using dual recordings from excitatory pyramidal neurons and inhibitory fast-spiking neurons in neocortical slices, we report that sustained activation by trains of several hundred presynaptic spikes resulted in much stronger depression of synaptic currents at excitatory synapses than at inhibitory ones. The steady-state synaptic depression was frequency dependent and reflected presynaptic function. These results suggest that inhibitory terminals of fast-spiking cells are better equipped to support prolonged transmitter release at a high frequency compared with excitatory ones. This difference in frequency-dependent depression could produce a relative increase in the impact of inhibition during periods of high global activity and promote the stability of cortical circuits.

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Year:  1998        PMID: 10196566     DOI: 10.1038/2822

Source DB:  PubMed          Journal:  Nat Neurosci        ISSN: 1097-6256            Impact factor:   24.884


  157 in total

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8.  Efficacy and stability of quantal GABA release at a hippocampal interneuron-principal neuron synapse.

Authors:  U Kraushaar; P Jonas
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9.  Voltage-sensitive dye imaging of neocortical spatiotemporal dynamics to afferent activation frequency.

Authors:  D Contreras; R Llinas
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10.  Presynaptic short-term depression is maintained during regulation of transmitter release at a GABAergic synapse in rat hippocampus.

Authors:  Stefan Hefft; Udo Kraushaar; Jörg R P Geiger; Peter Jonas
Journal:  J Physiol       Date:  2002-02-15       Impact factor: 5.182

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