Fast computations in cortical ensembles require rapid initiation of action potentials
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Maladaptive plasticity in tinnitus--triggers, mechanisms and treatment.High bandwidth synaptic communication and frequency tracking in human neocortexNanotechnology in Auditory Research: Membrane Electromechanics in Hearing.Injection of fully-defined signal mixtures: a novel high-throughput tool to study neuronal encoding and computations.Advantages and limitations of the use of optogenetic approach in studying fast-scale spike encodingSharpness of spike initiation in neurons explained by compartmentalizationWhat is the most realistic single-compartment model of spike initiation?Complete Firing-Rate Response of Neurons with Complex Intrinsic Dynamics.Dendritic and Axonal Architecture of Individual Pyramidal Neurons across Layers of Adult Human NeocortexCortical Specializations Underlying Fast Computations.From Neuron Biophysics to Orientation Selectivity in Electrically Coupled Networks of Neocortical L2/3 Large Basket Cells.Energy-efficient encoding by shifting spikes in neocortical neuronsEncoding of High Frequencies Improves with Maturation of Action Potential Generation in Cultured Neocortical Neurons.Modeling neural activity with cumulative damage distributions.Conductance-based refractory density approach: comparison with experimental data and generalization to lognormal distribution of input current.The basis of sharp spike onset in standard biophysical models.A period of structural plasticity at the axon initial segment in developing visual cortex.Hyperexcitability of the network contributes to synchronization processes in the human epileptic neocortex.Exact analytical results for integrate-and-fire neurons driven by excitatory shot noise.A biophysical modelling platform of the cochlear nucleus and other auditory circuits: From channels to networks.Increased transient Na+ conductance and action potential output in layer 2/3 prefrontal cortex neurons of the fmr1-/y mouse.Dynamical response properties of neocortical neurons to conductance-driven time-varying inputs.Heterogeneous firing rate response of mouse layer V pyramidal neurons in the fluctuation-driven regime.Impact of membrane bistability on dynamical response of neuronal populations.
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Fast computations in cortical ensembles require rapid initiation of action potentials
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on February 2013
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Fast computations in cortical ensembles require rapid initiation of action potentials
@en
Fast computations in cortical ensembles require rapid initiation of action potentials.
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type
label
Fast computations in cortical ensembles require rapid initiation of action potentials
@en
Fast computations in cortical ensembles require rapid initiation of action potentials.
@nl
prefLabel
Fast computations in cortical ensembles require rapid initiation of action potentials
@en
Fast computations in cortical ensembles require rapid initiation of action potentials.
@nl
P2093
P2860
P1476
Fast computations in cortical ensembles require rapid initiation of action potentials
@en
P2093
Maxim Volgushev
Vladimir Ilin
P2860
P304
P356
10.1523/JNEUROSCI.0771-12.2013
P407
P577
2013-02-01T00:00:00Z