Fast-reset of pacemaking and theta-frequency resonance patterns in cerebellar golgi cells: simulations of their impact in vivo.
about
Modeling the Cerebellar Microcircuit: New Strategies for a Long-Standing IssueThe cerebellar Golgi cell and spatiotemporal organization of granular layer activityModeling spike-train processing in the cerebellum granular layer and changes in plasticity reveal single neuron effects in neural ensemblesLocal field potential modeling predicts dense activation in cerebellar granule cells clusters under LTP and LTD controlAlcohol excites cerebellar Golgi cells by inhibiting the Na+/K+ ATPaseSensory coding by cerebellar mossy fibres through inhibition-driven phase resetting and synchronisation.Regulation of output spike patterns by phasic inhibition in cerebellar granule cellsCurrent source density correlates of cerebellar Golgi and Purkinje cell responses to tactile input.Axonal Na+ channels ensure fast spike activation and back-propagation in cerebellar granule cells.Oscillation-Driven Spike-Timing Dependent Plasticity Allows Multiple Overlapping Pattern Recognition in Inhibitory Interneuron Networks.Active Dendrites and Differential Distribution of Calcium Channels Enable Functional Compartmentalization of Golgi CellsLinking oscillations in cerebellar circuits.Realistic modeling of neurons and networks: towards brain simulation.Synchronization in primate cerebellar granule cell layer local field potentials: basic anisotropy and dynamic changes during active expectancyIntegration and regulation of glomerular inhibition in the cerebellar granular layer circuit.Single Neuron Optimization as a Basis for Accurate Biophysical Modeling: The Case of Cerebellar Granule Cells.Discovery and rediscoveries of Golgi cells.θ-Frequency resonance at the cerebellum input stage improves spike timing on the millisecond time-scale.Spike timing regulation on the millisecond scale by distributed synaptic plasticity at the cerebellum input stage: a simulation study.A realistic large-scale model of the cerebellum granular layer predicts circuit spatio-temporal filtering properties.Robustness effect of gap junctions between Golgi cells on cerebellar cortex oscillations.Long-term depression at parallel fiber to Golgi cell synapses.Neural circuit and its functional roles in cerebellar cortex.Action potential processing in a detailed Purkinje cell model reveals a critical role for axonal compartmentalization.Back to front: cerebellar connections and interactions with the prefrontal cortex.Computational reconstruction of pacemaking and intrinsic electroresponsiveness in cerebellar Golgi cells.Computational modeling predicts the ionic mechanism of late-onset responses in unipolar brush cells.Non-synaptic signaling from cerebellar climbing fibers modulates Golgi cell activity.The critical role of Golgi cells in regulating spatio-temporal integration and plasticity at the cerebellum input stage.High frequency synchrony in the cerebellar cortex during goal directed movements.Combinatorial responses controlled by synaptic inhibition in the cerebellum granular layer.Tonic activation of GABAB receptors reduces release probability at inhibitory connections in the cerebellar glomerulus.Realistic circuit modeling: large-scale simulations of the cerebellar granular layer.Gap Junction Modulation of Low-Frequency Oscillations in the Cerebellar Granule Cell Layer.Spiking resonances in models with the same slow resonant and fast amplifying currents but different subthreshold dynamic properties.Resonance modulation, annihilation and generation of anti-resonance and anti-phasonance in 3D neuronal systems: interplay of resonant and amplifying currents with slow dynamics.How synaptic release probability shapes neuronal transmission: information-theoretic analysis in a cerebellar granule cell.Late-onset bursts evoked by mossy fibre bundle stimulation in unipolar brush cells: evidence for the involvement of H- and TRP-currents.Subthreshold amplitude and phase resonance in models of quadratic type: nonlinear effects generated by the interplay of resonant and amplifying currents.
P2860
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P2860
Fast-reset of pacemaking and theta-frequency resonance patterns in cerebellar golgi cells: simulations of their impact in vivo.
description
2007 nî lūn-bûn
@nan
2007年の論文
@ja
2007年論文
@yue
2007年論文
@zh-hant
2007年論文
@zh-hk
2007年論文
@zh-mo
2007年論文
@zh-tw
2007年论文
@wuu
2007年论文
@zh
2007年论文
@zh-cn
name
Fast-reset of pacemaking and t ...... tions of their impact in vivo.
@en
Fast-reset of pacemaking and t ...... tions of their impact in vivo.
@nl
type
label
Fast-reset of pacemaking and t ...... tions of their impact in vivo.
@en
Fast-reset of pacemaking and t ...... tions of their impact in vivo.
@nl
prefLabel
Fast-reset of pacemaking and t ...... tions of their impact in vivo.
@en
Fast-reset of pacemaking and t ...... tions of their impact in vivo.
@nl
P2860
P50
P1476
Fast-reset of pacemaking and t ...... tions of their impact in vivo.
@en
P2093
Elisabetta Cesana
Sergio Solinas
P2860
P356
10.3389/NEURO.03.004.2007
P577
2007-12-30T00:00:00Z