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The corresponding page is
https://modeldb.science/136308
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Wang-Buzsaki Interneuron (Talathi et al., 2010)
 
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Model Information
Model File
Citations
Accession:
136308
The submitted code provides the relevant C++ files, matlabfiles and the data files essential to reproduce the figures in the JCNS paper titled Control of neural synchrony using channelrhodopsin-2: A computational study.
Reference:
1 .
Talathi SS, Carney PR, Khargonekar PP (2011) Control of neural synchrony using channelrhodopsin-2: a computational study.
J Comput Neurosci
31
:87-103
[
PubMed
]
Model Information
(Click on a link to find other models with that property)
Model Type:
Neuron or other electrically excitable cell;
Synapse;
Brain Region(s)/Organism:
Cell Type(s):
Neocortex fast spiking (FS) interneuron;
Abstract Wang-Buzsaki neuron;
Channel(s):
Gap Junctions:
Receptor(s):
Gene(s):
Transmitter(s):
Gaba;
Simulation Environment:
C or C++ program;
Model Concept(s):
Synchronization;
Implementer(s):
Talathi Sachin [talathi at ufl.edu];
Search NeuronDB
for information about:
Gaba
;
Download the displayed file
/
JCNS-2010-CodeAndData
simul_lrn
CNlib
CVS
readme
*
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STDP promotes synchrony of inhibitory networks in the presence of heterogeneity (Talathi et al 2008)
CN_absynapse.cc
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STDP promotes synchrony of inhibitory networks in the presence of heterogeneity (Talathi et al 2008)
CN_absynapse.h
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STDP promotes synchrony of inhibitory networks in the presence of heterogeneity (Talathi et al 2008)
CN_absynapseECplast1.cc
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STDP promotes synchrony of inhibitory networks in the presence of heterogeneity (Talathi et al 2008)
CN_absynapseECplast1.h
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STDP promotes synchrony of inhibitory networks in the presence of heterogeneity (Talathi et al 2008)
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STDP promotes synchrony of inhibitory networks in the presence of heterogeneity (Talathi et al 2008)
CN_absynapseECplast2.h
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CN_absynapseECplast3.cc
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testCN.o
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