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Selective control of cortical axonal spikes by a slowly inactivating K+ current (Shu et al. 2007)
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Accession:
135898
We discovered a low-threshold, slowly inactivating K+ current, containing Kv1.2 alpha subunits, in axon initial segment, playing a key role in the modulation of spike threshold and spike duration as well as the spike timing in prefrontal cortex layer V pyramidal cell of ferrets and rats. A kd.mod file implements this D current and put it in the axonal model: Neuron_Dcurrent.hoc. Run the model to see the gradual modulation effect over seconds on spike shape.
Reference:
1 .
Shu Y, Yu Y, Yang J, McCormick DA (2007) Selective control of cortical axonal spikes by a slowly inactivating K+ current.
Proc Natl Acad Sci U S A
104
:11453-8
[
PubMed
]
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Model Information
(Click on a link to find other models with that property)
Model Type:
Neuron or other electrically excitable cell;
Axon;
Brain Region(s)/Organism:
Neocortex;
Cell Type(s):
Neocortex L5/6 pyramidal GLU cell;
Neocortex L2/3 pyramidal GLU cell;
Channel(s):
I Na,t;
I K;
I h;
I Potassium;
Gap Junctions:
Receptor(s):
Gene(s):
Kv1.2 KCNA2;
Transmitter(s):
Simulation Environment:
NEURON;
Model Concept(s):
Action Potential Initiation;
Action Potentials;
Implementer(s):
Search NeuronDB
for information about:
Neocortex L5/6 pyramidal GLU cell
;
Neocortex L2/3 pyramidal GLU cell
;
I Na,t
;
I K
;
I h
;
I Potassium
;
Download the displayed file
/
YuEtAlPNAS2007
readme.txt
Gfluct.mod
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kv.mod
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na.mod
*
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Dcurrent_model.doc
mosinit.hoc
Neuron_Dcurrent.hoc
load_file("nrngui.hoc") load_file("Neuron_Dcurrent.hoc")
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