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L5 PFC pyramidal neurons (Papoutsi et al. 2017)
 
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Model Information
Model File
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Accession:
230811
" ... Here, we use a modeling approach to investigate whether and how the morphology of the basal tree mediates the functional output of neurons. We implemented 57 basal tree morphologies of layer 5 prefrontal pyramidal neurons of the rat and identified morphological types which were characterized by different response features, forming distinct functional types. These types were robust to a wide range of manipulations (distribution of active ionic mechanisms, NMDA conductance, somatic and apical tree morphology or the number of activated synapses) and supported different temporal coding schemes at both the single neuron and the microcircuit level. We predict that the basal tree morphological diversity among neurons of the same class mediates their segregation into distinct functional pathways. ..."
Reference:
1 .
Papoutsi A, Kastellakis G, Poirazi P (2017) Basal tree complexity shapes functional pathways in the prefrontal cortex.
J Neurophysiol
118
:1970-1983
[
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:
Prefrontal cortex (PFC);
Cell Type(s):
Neocortex L5/6 pyramidal GLU cell;
Channel(s):
I A;
I h;
I L high threshold;
I T low threshold;
I N;
I R;
I K,Ca;
I_AHP;
I_Ks;
I Na,p;
I Na,t;
I K;
Gap Junctions:
Receptor(s):
AMPA;
NMDA;
GabaA;
GabaB;
Gene(s):
Transmitter(s):
Glutamate;
Gaba;
Simulation Environment:
NEURON;
Model Concept(s):
Active Dendrites;
Detailed Neuronal Models;
Implementer(s):
Papoutsi, Athanasia [athpapoutsi at gmail.com];
Search NeuronDB
for information about:
Neocortex L5/6 pyramidal GLU cell
;
GabaA
;
GabaB
;
AMPA
;
NMDA
;
I Na,p
;
I Na,t
;
I L high threshold
;
I N
;
I T low threshold
;
I A
;
I K
;
I h
;
I K,Ca
;
I_Ks
;
I R
;
I_AHP
;
Gaba
;
Glutamate
;
/
PapoutsiEtAl2017
mod_files
ampa.mod
ampain.mod
cad.mod
cal.mod
can.mod
*
Other models using can.mod:
Layer V PFC pyramidal neuron used to study persistent activity (Sidiropoulou & Poirazi 2012)
Linear vs non-linear integration in CA1 oblique dendrites (Gómez González et al. 2011)
car.mod
*
Other models using car.mod:
Layer V PFC pyramidal neuron used to study persistent activity (Sidiropoulou & Poirazi 2012)
cat.mod
*
Other models using cat.mod:
Layer V PFC pyramidal neuron used to study persistent activity (Sidiropoulou & Poirazi 2012)
gabaa.mod
*
Other models using gabaa.mod:
Fast Spiking Basket cells (Tzilivaki et al 2019)
Fast Spiking Basket cells (Tzilivaki et al 2019)
L5 PFC microcircuit used to study persistent activity (Papoutsi et al. 2014, 2013)
Layer V PFC pyramidal neuron used to study persistent activity (Sidiropoulou & Poirazi 2012)
Linear vs non-linear integration in CA1 oblique dendrites (Gómez González et al. 2011)
Pyramidal neuron, fast, regular, and irregular spiking interneurons (Konstantoudaki et al 2014)
gabaain.mod
gabab.mod
*
Other models using gabab.mod:
Layer V PFC pyramidal neuron used to study persistent activity (Sidiropoulou & Poirazi 2012)
h.mod
iks_in.mod
kadist.mod
*
Other models using kadist.mod:
Layer V PFC pyramidal neuron used to study persistent activity (Sidiropoulou & Poirazi 2012)
kca.mod
*
Other models using kca.mod:
Layer V PFC pyramidal neuron used to study persistent activity (Sidiropoulou & Poirazi 2012)
kct.mod
*
Other models using kct.mod:
Layer V PFC pyramidal neuron used to study persistent activity (Sidiropoulou & Poirazi 2012)
kd.mod
kdr_in.mod
kdrD.mod
*
Other models using kdrD.mod:
Layer V PFC pyramidal neuron used to study persistent activity (Sidiropoulou & Poirazi 2012)
naf.mod
naf_in.mod
nap.mod
*
Other models using nap.mod:
Layer V PFC pyramidal neuron used to study persistent activity (Sidiropoulou & Poirazi 2012)
NMDA.mod
NMDA_syn.mod
vecstim.mod
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