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Medial vestibular neuron models (Quadroni and Knopfel 1994)
 
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Accession:
53876
The structure and the parameters of the model cells were chosen to reproduce the responses of type A and type B MVNns as described in electrophysiological recordings. The emergence of oscillatory firing under these two specific experimental conditions is consistent with electrophysiological recordings not used during construction of the model. We, therefore, suggest that these models have a high predictive value.
Reference:
1 .
Quadroni R, Knöpfel T (1994) Compartmental models of type A and type B guinea pig medial vestibular neurons.
J Neurophysiol
72
:1911-24
[
PubMed
]
Model Information
(Click on a link to find other models with that property)
Model Type:
Neuron or other electrically excitable cell;
Brain Region(s)/Organism:
Cell Type(s):
Vestibular neuron;
Channel(s):
I Na,p;
I Na,t;
I L high threshold;
I T low threshold;
I A;
I K;
I h;
Gap Junctions:
Receptor(s):
NMDA;
Gene(s):
Transmitter(s):
Simulation Environment:
NEURON;
Model Concept(s):
Oscillations;
Action Potentials;
Calcium dynamics;
Implementer(s):
Morse, Tom [Tom.Morse at Yale.edu];
Search NeuronDB
for information about:
NMDA
;
I Na,p
;
I Na,t
;
I L high threshold
;
I T low threshold
;
I A
;
I K
;
I h
;
/
mvns
diagnostics
readme.txt
a.mod
ahp.mod
akfast.mod
bkfast.mod
ca_dist.mod
ca_prox.mod
ca_soma.mod
caleak.mod
clleak.mod
h.mod
hva.mod
kleak.mod
kslow.mod
lva.mod
na.mod
naleak.mod
nap.mod
nmda.mod
ab_volt_graph.ses
Acell.ses
Bcell.ses
bothcells.ses
ca_currents_fluxes.ses
*
Other models using ca_currents_fluxes.ses:
Medial vestibular neuron models (Quadroni and Knopfel 1994)
ca_inside.ses
fig13ab.hoc
fig2a1b1.hoc
fig2a2b2.hoc
fig2c.hoc
fig2d.hoc
fig3.hoc
fig3.ses
fig3ABtopCDbot.jpg
fig4a.hoc
load_somaA_only.hoc
mosinit.hoc
nmda_offon.hoc
q_ahp_graph.ses
section_lists.hoc
section_lists_A.hoc
somaA_vgraph.ses
SomaAcell.ses
variousGraphs.ses
variousGraphsA.ses
variousGraphsB.ses
variousGraphsdendB.ses
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2 D
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