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Synthesis of spatial tuning functions from theta cell spike trains (Welday et al., 2011)
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Model Information
Model File
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Accession:
129067
A single compartment model reproduces the firing rate maps of place, grid, and boundary cells by receiving inhibitory inputs from theta cells. The theta cell spike trains are modulated by the rat's movement velocity in such a way that phase interference among their burst pattern creates spatial envelope function which simulate the firing rate maps.
Reference:
1 .
Welday AC, Shlifer IG, Bloom ML, Zhang K, Blair HT (2011) Cosine directional tuning of theta cell burst frequencies: evidence for spatial coding by oscillatory interference.
J Neurosci
31
:16157-76
[
PubMed
]
Citations
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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;
Brain Region(s)/Organism:
Cell Type(s):
Hippocampus CA1 pyramidal GLU cell;
Hippocampus CA3 pyramidal GLU cell;
Entorhinal cortex stellate cell;
Channel(s):
I Na,p;
Gap Junctions:
Receptor(s):
GabaA;
AMPA;
Gene(s):
Transmitter(s):
Gaba;
Glutamate;
Simulation Environment:
NEURON;
MATLAB;
Model Concept(s):
Synchronization;
Envelope synthesis;
Grid cell;
Place cell/field;
Implementer(s):
Blair, Hugh T.;
Search NeuronDB
for information about:
Hippocampus CA1 pyramidal GLU cell
;
Hippocampus CA3 pyramidal GLU cell
;
GabaA
;
AMPA
;
I Na,p
;
Gaba
;
Glutamate
;
Download the displayed file
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Welday_et_al
Welday_et_al_Fig9C
README.txt
ampa.mod
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Synthesis of spatial tuning functions from theta cell spike trains (Welday et al., 2011)
Nap.mod
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Synthesis of spatial tuning functions from theta cell spike trains (Welday et al., 2011)
vecevent.mod
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Synthesis of spatial tuning functions from theta cell spike trains (Welday et al., 2011)
BOUNDARY_SIM.hoc
boundary_thetaspikes.m
boundary_vecstims.ses
grid_thetaspikes.m
grid_vecstims.ses
gridcell_GABA_inputs.ses
GRIDCELL_SIM.hoc
place_GABA_inputs.ses
PLACE_SIM.hoc
place_thetaspikes.m
place_vecstims.ses
plotnrn.m
read_boundary_theta_spikes.hoc
read_grid_cell_theta_spikes.hoc
read_place_theta_spikes.hoc
savespikes.hoc
*
Other models using savespikes.hoc:
Synthesis of spatial tuning functions from theta cell spike trains (Welday et al., 2011)
trackingdata.mat
spikefile.wopen("SPIKEOUT.dat") spiketimes.printf(spikefile,"%8.1f\n") spikefile.close()
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Fig 9A
Fig 9B