Direction selectivity in a model of the starburst amacrine cell.
about
Dendritic spikes amplify the synaptic signal to enhance detection of motion in a simulation of the direction-selective ganglion cellA dendrite-autonomous mechanism for direction selectivity in retinal starburst amacrine cellsTetrodotoxin-resistant sodium channels contribute to directional responses in starburst amacrine cells.Dendro-dendritic cholinergic excitation controls dendritic spike initiation in retinal ganglion cells.Space-time wiring specificity supports direction selectivity in the retinaA model of direction selectivity in the starburst amacrine cell network.Directional summation in non-direction selective retinal ganglion cells.Modeling Starburst cells' GABA(B) receptors and their putative role in motion sensitivity.Parallel mechanisms encode direction in the retinaInhibitory input to the direction-selective ganglion cell is saturated at low contrastBiophysical mechanisms and essential topography of directionally selective subunits in rabbit's retina.Orientation Selectivity Sharpens Motion Detection in Drosophila.Role of active dendritic conductances in subthreshold input integration.A Role for Synaptic Input Distribution in a Dendritic Computation of Motion Direction in the Retina.Species-specific wiring for direction selectivity in the mammalian retina.Synaptic physiology of direction selectivity in the retina.The role of starburst amacrine cells in visual signal processing.The synaptic mechanism of direction selectivity in distal processes of starburst amacrine cells.Cellular inhibitory behavior underlying the formation of retinal direction selectivity in the starburst network.Detection and resolution of drifting gratings by motion detectors in the fish retina.Symmetric interactions within a homogeneous starburst cell network can lead to robust asymmetries in dendrites of starburst amacrine cells.The interdependence and independence of amacrine cell dendrites: patch-clamp recordings and simulation studies on cultured GABAergic amacrine cells."Silent" NMDA Synapses Enhance Motion Sensitivity in a Mature Retinal Circuit.Cross-compartmental Modulation of Dendritic Signals for Retinal Direction Selectivity.Time course of EPSCs in ON-type starburst amacrine cells is independent of dendritic location.A simulation study investigating the impact of dendritic morphology and synaptic topology on neuronal firing patterns.Does heterogeneity of intracellular Ca[Formula: see text] dynamics underlie speed tuning of direction-selective responses in starburst amacrine cells?Functional Compartmentalization within Starburst Amacrine Cell Dendrites in the Retina.
P2860
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P2860
Direction selectivity in a model of the starburst amacrine cell.
description
2004 nî lūn-bûn
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2004年の論文
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2004年学术文章
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name
Direction selectivity in a model of the starburst amacrine cell.
@en
Direction selectivity in a model of the starburst amacrine cell.
@nl
type
label
Direction selectivity in a model of the starburst amacrine cell.
@en
Direction selectivity in a model of the starburst amacrine cell.
@nl
prefLabel
Direction selectivity in a model of the starburst amacrine cell.
@en
Direction selectivity in a model of the starburst amacrine cell.
@nl
P2860
P1433
P1476
Direction selectivity in a model of the starburst amacrine cell
@en
P2093
Robert G Smith
P2860
P304
P356
10.1017/S0952523804214109
P577
2004-07-01T00:00:00Z