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Relative spike time coding and STDP-based orientation selectivity in V1 (Masquelier 2012)
 
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Model Information
Model File
Accession:
141062
Phenomenological spiking model of the cat early visual system. We show how natural vision can drive spike time correlations on sufficiently fast time scales to lead to the acquisition of orientation-selective V1 neurons through STDP. This is possible without reference times such as stimulus onsets, or saccade landing times. But even when such reference times are available, we demonstrate that the relative spike times encode the images more robustly than the absolute ones.
Reference:
1 .
Masquelier T (2012) Relative spike time coding and STDP-based orientation selectivity in the early visual system in natural continuous and saccadic vision: a computational model.
J Comput Neurosci
32
:425-41
[
PubMed
]
Citations
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Model Information
(Click on a link to find other models with that property)
Model Type:
Realistic Network;
Synapse;
Brain Region(s)/Organism:
Cell Type(s):
Thalamus geniculate nucleus/lateral principal GLU cell;
Neocortex L2/3 pyramidal GLU cell;
Retina ganglion GLU cell;
Retina photoreceptor cone GLU cell;
Retina bipolar GLU cell;
Abstract integrate-and-fire leaky neuron;
Channel(s):
Gap Junctions:
Receptor(s):
AMPA;
Gene(s):
Transmitter(s):
Simulation Environment:
C or C++ program;
MATLAB;
Model Concept(s):
Pattern Recognition;
Coincidence Detection;
Temporal Pattern Generation;
Synchronization;
Spatio-temporal Activity Patterns;
Synaptic Plasticity;
Long-term Synaptic Plasticity;
Action Potentials;
Learning;
Unsupervised Learning;
Winner-take-all;
STDP;
Development;
Information transfer;
Orientation selectivity;
Vision;
Implementer(s):
Masquelier, Tim [timothee.masquelier at alum.mit.edu];
Search NeuronDB
for information about:
Thalamus geniculate nucleus/lateral principal GLU cell
;
Neocortex L2/3 pyramidal GLU cell
;
Retina ganglion GLU cell
;
Retina photoreceptor cone GLU cell
;
Retina bipolar GLU cell
;
AMPA
;
Download the displayed file
/
ModelDB.JCNS
src
cat.retina.xml
concatSL.m
createNewNeuron.m
DoG.m
*
Other models using DoG.m:
Microsaccades and synchrony coding in the retina (Masquelier et al. 2016)
LGN.m
main.m
param.c
paramV1.m
plots.m
pspKernel.c
*
Other models using pspKernel.c:
Microsaccades and synchrony coding in the retina (Masquelier et al. 2016)
STDPContinuous.c
timedLog.m
*
Other models using timedLog.m:
Microsaccades and synchrony coding in the retina (Masquelier et al. 2016)
Optimal Localist and Distributed Coding Through STDP (Masquelier & Kheradpisheh 2018)
Optimal spatiotemporal spike pattern detection by STDP (Masquelier 2017)
STDP allows fast rate-modulated coding with Poisson-like spike trains (Gilson et al. 2011)
timedLogLn.m
*
Other models using timedLogLn.m:
Microsaccades and synchrony coding in the retina (Masquelier et al. 2016)
Optimal Localist and Distributed Coding Through STDP (Masquelier & Kheradpisheh 2018)
Optimal spatiotemporal spike pattern detection by STDP (Masquelier 2017)
STDP allows fast rate-modulated coding with Poisson-like spike trains (Gilson et al. 2011)
V1.m
function timedLogLn(str) disp(' '); timedLog(str);