Inhibitory Postsynaptic Currents

Known as: Inhibitory Postsynaptic Current, Postsynaptic Currents, Inhibitory, Currents, Inhibitory Postsynaptic 
The flow of ions into or out of cells that cause INHIBITORY POSTSYNAPTIC POTENTIALS.
National Institutes of Health

Topic mentions per year

Topic mentions per year

1974-2017
05010019742017

Papers overview

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Highly Cited
2004
Highly Cited
2004
Synchronous activation of dopamine neurons, for instance upon presentation of an unexpected rewarding stimulus, results in the… (More)
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Highly Cited
2001
Highly Cited
2001
Changes in neurotransmitter receptor density at the synapse have been proposed as a mechanism underlying synaptic plasticity… (More)
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Highly Cited
2001
Highly Cited
2001
gamma-Aminobutyric acid (GABA), the principal inhibitory neurotransmitter, activates a persistent low amplitude tonic current in… (More)
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Highly Cited
2000
Highly Cited
2000
1. Inhibitory postsynaptic currents (IPSCs) evoked in CA1 pyramidal cells (n = 46) by identified interneurones (n = 43) located… (More)
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Highly Cited
1998
Highly Cited
1998
We investigated the role of astrocytes in activity-dependent modulation of inhibitory synaptic transmission in hippocampal slices… (More)
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Highly Cited
1998
Highly Cited
1998
Electrophysiological consequences of activation of cannabinoid receptors have been mostly investigated on neuronal cell lines and… (More)
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Highly Cited
1997
Highly Cited
1997
Modification of synaptic strength in the mammalian central nervous system (CNS) occurs at both pre- and postsynaptic sites… (More)
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Highly Cited
1996
Highly Cited
1996
1. Paired patch-clamp recordings were performed in cerebellar slices to study IPSCs evoked by interneurones (stellate and basket… (More)
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Highly Cited
1992
Highly Cited
1992
Inhibitory postsynaptic currents mediated by spontaneous activation of GABAA receptors were studied using whole-cell voltage… (More)
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Highly Cited
1992
Highly Cited
1992
Using intracellular recording techniques in CA1 cells in the hippocampal slice, we studied the responses of cells to synaptically… (More)
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