Simulated responses of cerebellar Purkinje cells are independent of the dendritic location of granule cell synaptic inputs
about
Modeling the Cerebellar Microcircuit: New Strategies for a Long-Standing IssueThe 40-year history of modeling active dendrites in cerebellar Purkinje cells: emergence of the first single cell "community model"Compartmental models of rat cerebellar Purkinje cells based on simultaneous somatic and dendritic patch-clamp recordingsAn Ultrascalable Solution to Large-scale Neural Tissue SimulationA federated design for a neurobiological simulation engine: the CBI federated software architectureWhy are computational neuroscience and systems biology so separate?Optimization principles of dendritic structure.GABA(A) and GABA(B) receptors on neocortical neurons are differentially distributed.Complex parameter landscape for a complex neuron model.Quantitative localization of Cav2.1 (P/Q-type) voltage-dependent calcium channels in Purkinje cells: somatodendritic gradient and distinct somatic coclustering with calcium-activated potassium channels.Model-founded explorations of the roles of molecular layer inhibition in regulating purkinje cell responses in cerebellar cortex: more trouble for the beam hypothesis.Anti-hebbian spike-timing-dependent plasticity and adaptive sensory processing.A functional AMPA receptor-calcium channel complex in the postsynaptic membrane.The microcircuit concept applied to cortical evolution: from three-layer to six-layer cortexCerebellar LTD and pattern recognition by Purkinje cells.A discrete approach for a model of temporal learning by the cerebellum: in silico classical conditioning of the eyeblink reflex.Interneuron- and GABA(A) receptor-specific inhibitory synaptic plasticity in cerebellar Purkinje cells.Dendritic excitability and synaptic plasticity.Using Strahler's analysis to reduce up to 200-fold the run time of realistic neuron models.Spike-timing-dependent synaptic plasticity and synaptic democracy in dendrites.Single Neuron Optimization as a Basis for Accurate Biophysical Modeling: The Case of Cerebellar Granule Cells.An inverse approach for elucidating dendritic function.Dendritic excitability modulates dendritic information processing in a purkinje cell model.Ascending granule cell axon: an important component of cerebellar cortical circuitry.Nonspecific synaptic plasticity improves the recognition of sparse patterns degraded by local noise.Modeling thalamocortical cell: impact of ca channel distribution and cell geometry on firing pattern.Action potential processing in a detailed Purkinje cell model reveals a critical role for axonal compartmentalization.Stochastic Synchronization in Purkinje Cells with Feedforward Inhibition Could Be Studied with Equivalent Phase-Response CurvesLoss of the calcium channel β4 subunit impairs parallel fibre volley and Purkinje cell firing in cerebellum of adult ataxic mice.Background synaptic activity modulates the response of a modeled purkinje cell to paired afferent input.Repetitive firing of rat cerebellar parallel fibres after a single stimulation.Correlations between purkinje cell single-unit activity and simultaneously recorded field potentials in the immediately underlying granule cell layer.Generating dendritic Ca2+ spikes with different models of Ca2+ buffering in cerebellar Purkinje cells.Dendritic voltage and calcium-gated channels amplify the variability of postsynaptic responses in a Purkinje cell model.Firing dynamics of cerebellar purkinje cells.Synchronization of golgi and granule cell firing in a detailed network model of the cerebellar granule cell layer.Feedforward inhibition controls the spread of granule cell-induced Purkinje cell activity in the cerebellar cortex.Voltage-dependent properties of dendrites that eliminate location-dependent variability of synaptic input.Active dendrites reduce location-dependent variability of synaptic input trains.Simultaneous dendritic voltage and calcium imaging and somatic recording from Purkinje neurons in awake mice
P2860
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P2860
Simulated responses of cerebellar Purkinje cells are independent of the dendritic location of granule cell synaptic inputs
description
1994 nî lūn-bûn
@nan
1994 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
1994 թվականի մայիսին հրատարակված գիտական հոդված
@hy
1994年の論文
@ja
1994年論文
@yue
1994年論文
@zh-hant
1994年論文
@zh-hk
1994年論文
@zh-mo
1994年論文
@zh-tw
1994年论文
@wuu
name
Simulated responses of cerebel ...... f granule cell synaptic inputs
@ast
Simulated responses of cerebel ...... f granule cell synaptic inputs
@en
type
label
Simulated responses of cerebel ...... f granule cell synaptic inputs
@ast
Simulated responses of cerebel ...... f granule cell synaptic inputs
@en
prefLabel
Simulated responses of cerebel ...... f granule cell synaptic inputs
@ast
Simulated responses of cerebel ...... f granule cell synaptic inputs
@en
P2860
P356
P1476
Simulated responses of cerebel ...... f granule cell synaptic inputs
@en
P2093
E De Schutter
P2860
P304
P356
10.1073/PNAS.91.11.4736
P407
P577
1994-05-01T00:00:00Z