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CA1 pyramidal neuron: signal propagation in oblique dendrites (Migliore et al 2005)
Accession: 55035
NEURON mod files from the paper: M. Migliore, M. Ferrante, GA Ascoli (2005). The model shows how the back- and forward propagation of action potentials in the oblique dendrites of CA1 neurons could be modulated by local properties such as morphology or active conductances.
Reference: Migliore M, Ferrante M, Ascoli GA (2005) Signal propagation in oblique dendrites of CA1 pyramidal cells. J Neurophysiol 94:4145-4155 [PubMed]
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Model Information (Click on a link to find other models with that property)
Model Type:  Dendrite;
Brain Region(s)/Organism:  
Cell Type(s):  CA1 pyramidal neuron;  
Channel(s):  I Na,t; I A; I K; I h;  
Gap Junctions:  
Receptor(s):  AMPA;
Gene(s):  
Transmitter(s):  Glutamate;
Simulation Environment:  Neuron; neuroConstruct (web link to model);
Model Concept(s):  Action Potential Initiation; Dendritic Action Potentials; Ion Channel Kinetics; Active Dendrites; Influence of Dendritic Geometry; Detailed Neuronal Models; Action Potentials;
Implementer(s):  Migliore, Michele [Michele.Migliore at Yale.edu];
Search NeuronDB for information about:  CA1 pyramidal neuron; AMPA; I Na,t; I A; I K; I h; Glutamate;
Files displayed below are from the implementation
Model files   Download zip file   Auto-launch             Help downloading and running models
\
obliques
readme.html
fig2A.jpg
h.mod
kadist.mod
kaprox.mod
kdrca1.mod
na3n.mod
naxn.mod
netstims.mod
distr.mod
fixnseg.hoc
geo5038804.hoc
fig2A.hoc
mosinit.hoc
                            
NEURON mod files from the paper:

Migliore M, Ferrante M, Ascoli GA (2005) 
Signal propagation in oblique dendrites of CA1 pyramidal cells.
J Neurophysiol 94:4145-4155

The model shows how the back- and forward propagation of action potentials 
in the oblique dendrites of CA1 neurons could be modulated by local properties 
such as morphology or active conductances.
The simulation reproduces Fig.2A of the paper, using neuron 5038804:

Figure 2A
Morphology files for all the neurons used in this paper can be found at: http://krasnow.gmu.edu/L-Neuron Under unix systems: to compile the mod files use the command nrnivmodl and run the simulation hoc file with the command nrngui fig2A.hoc Under Windows systems: to compile the mod files use the "mknrndll" command. A double click on the simulation file fig2A.hoc will open the simulation window. Questions on how to use this model should be directed to michele.migliore@pa.ibf.cnr.it

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