about
Inhibitory synaptic plasticity: spike timing-dependence and putative network function.Activity-dependent plasticity of electrical synapses: increasing evidence for its presence and functional roles in the mammalian brain.Activity-dependent long-term depression of electrical synapses.A new measure for the strength of electrical synapses.Bursts modify electrical synaptic strengthState-dependent modulation of gap junction signaling by the persistent sodium current.Contributions of Ih to feature selectivity in layer II stellate cells of the entorhinal cortex.Spike-timing-dependent plasticity of inhibitory synapses in the entorhinal cortex.Measuring multiple spike train synchrony.Rate maintenance and resonance in the entorhinal cortex.A calcium-dependent pathway underlies activity-dependent plasticity of electrical synapses in the thalamic reticular nucleus.Asymmetry and modulation of spike timing in electrically coupled neurons.Frequency selectivity of layer II stellate cells in the medial entorhinal cortex.Electrical synapses between inhibitory neurons shape the responses of principal neurons to transient inputs in the thalamus: a modeling study.Electrical synapses regulate both subthreshold integration and population activity of principal cells in response to transient inputs within canonical feedforward circuitsMeasuring spike train synchrony
P50
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P50
description
Forscher
@de
investigador
@es
onderzoeker
@nl
researcher
@en
ricercatore
@it
研究員
@ja
研究者
@zh
name
Julie S Haas
@en
Julie S Haas
@nl
type
label
Julie S Haas
@en
Julie S Haas
@nl
prefLabel
Julie S Haas
@en
Julie S Haas
@nl
P106
P31
P496
0000-0002-1571-8512