Toggling between gamma-frequency activity and suppression of cell assemblies

scientific article published on 16 April 2013

Toggling between gamma-frequency activity and suppression of cell assemblies is …
instance of (P31):
scholarly articleQ13442814

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P8978DBLP publication IDjournals/ficn/BorgersW13
P356DOI10.3389/FNCOM.2013.00033
P932PMC publication ID3627140
P698PubMed publication ID23596411
P5875ResearchGate publication ID236225659

P2093author name stringChristoph Börgers
Bryan Walker
P2860cites workA quantitative description of membrane current and its application to conduction and excitation in nerveQ22337072
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Minimal size of cell assemblies coordinated by gamma oscillationsQ34162236
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Chemical and electrical synapses perform complementary roles in the synchronization of interneuronal networksQ34359659
Gamma oscillations mediate stimulus competition and attentional selection in a cortical network modelQ34878592
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Phase resetting curves and oscillatory stability in interneurons of rat somatosensory cortexQ42129722
New roles for the gamma rhythm: population tuning and preprocessing for the Beta rhythmQ44219345
Threshold firing frequency-current relationships of neurons in rat somatosensory cortex: type 1 and type 2 dynamicsQ45069700
Integration of broadband conductance input in rat somatosensory cortical inhibitory interneurons: an inhibition-controlled switch between intrinsic and input-driven spiking in fast-spiking cellsQ46192816
Synchronization properties of networks of electrically coupled neurons in the presence of noise and heterogeneitiesQ46227917
Function of specific K(+) channels in sustained high-frequency firing of fast-spiking neocortical interneuronsQ47902292
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Two inhibitory postsynaptic potentials, and GABAA and GABAB receptor-mediated responses in neocortex of rat and cat.Q47944039
Two dynamically distinct inhibitory networks in layer 4 of the neocortexQ48276407
Functional properties of perigeniculate inhibition of dorsal lateral geniculate nucleus thalamocortical neurons in vitro.Q48604311
Rate coding and spike-time variability in cortical neurons with two types of threshold dynamics.Q48610327
Gamma oscillation by synaptic inhibition in a hippocampal interneuronal network model.Q48890720
The shape of phase-resetting curves in oscillators with a saddle node on an invariant circle bifurcation.Q51324215
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Gap junctions linking the dendritic network of GABAergic interneurons in the hippocampus.Q54142826
Shunting Inhibition Improves Robustness of Gamma Oscillations in Hippocampal Interneuron Networks by Homogenizing Firing RatesQ56991986
A network of electrically coupled interneurons drives synchronized inhibitionin neocortexQ57860893
The local electric changes associated with repetitive action in a non-medullated axonQ80317302
Effects of noisy drive on rhythms in networks of excitatory and inhibitory neuronsQ81599037
P407language of work or nameEnglishQ1860
P304page(s)33
P577publication date2013-04-16
P1433published inFrontiers in Computational NeuroscienceQ15817583
P1476titleToggling between gamma-frequency activity and suppression of cell assemblies
P478volume7

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cites work (P2860)
Q42388440Cooperation and competition of gamma oscillation mechanisms
Q47564770Dichotomous Dynamics in E-I Networks with Strongly and Weakly Intra-connected Inhibitory Neurons
Q55073122Input-dependent modulation of MEG gamma oscillations reflects gain control in the visual cortex.
Q35160333Interplay of intrinsic and synaptic conductances in the generation of high-frequency oscillations in interneuronal networks with irregular spiking
Q60701028Neural gain control measured through cortical gamma oscillations is associated with sensory sensitivity
Q38170514Neurosystems: brain rhythms and cognitive processing
Q36319851Resonant Interneurons Can Increase Robustness of Gamma Oscillations.
Q42837608Seizure-induced alterations in fast-spiking basket cell GABA currents modulate frequency and coherence of gamma oscillation in network simulations
Q90538221Shunting Inhibition Improves Synchronization in Heterogeneous Inhibitory Interneuronal Networks with Type 1 Excitability Whereas Hyperpolarizing Inhibition is Better for Type 2 Excitability
Q42148653Spiking neural network connectivity and its potential for temporal sensory processing and variable binding

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