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Purkinje neuron network (Zang et al. 2020)
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Model Information
Model File
Accession:
266799
Both spike rate and timing can transmit information in the brain. Phase response curves (PRCs) quantify how a neuron transforms input to output by spike timing. PRCs exhibit strong firing-rate adaptation, but its mechanism and relevance for network output are poorly understood. Using our Purkinje cell (PC) model we demonstrate that the rate adaptation is caused by rate-dependent subthreshold membrane potentials efficiently regulating the activation of Na+ channels. Then we use a realistic PC network model to examine how rate-dependent responses synchronize spikes in the scenario of reciprocal inhibition-caused high-frequency oscillations. The changes in PRC cause oscillations and spike correlations only at high firing rates. The causal role of the PRC is confirmed using a simpler coupled oscillator network model. This mechanism enables transient oscillations between fast-spiking neurons that thereby form PC assemblies. Our work demonstrates that rate adaptation of PRCs can spatio-temporally organize the PC input to cerebellar nuclei.
Reference:
1 .
Zang Y, Hong S, De Schutter E (2020) Firing rate-dependent phase responses of Purkinje cells support transient oscillations.
Elife
[
PubMed
]
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Model Information
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Model Type:
Neuron or other electrically excitable cell;
Realistic Network;
Brain Region(s)/Organism:
Cerebellum;
Cell Type(s):
Cerebellum Purkinje GABA cell;
Channel(s):
Gap Junctions:
Receptor(s):
Gene(s):
Transmitter(s):
Simulation Environment:
NEURON;
MATLAB;
Model Concept(s):
Phase Response Curves;
Action Potentials;
Spatio-temporal Activity Patterns;
Synchronization;
Action Potential Initiation;
Oscillations;
Implementer(s):
Zang, Yunliang ;
Hong, Sungho [shhong at oist.jp];
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for information about:
Cerebellum Purkinje GABA cell
;
Download the displayed file
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PRC_network_code
figure2
figure2B
mod
readme
axialcurr2.hoc
electrode.hoc
Fig2B.m
PRC_script_curr.hoc
prc_th.mat
Purkinje19b972-1.nrn
*
Other models using Purkinje19b972-1.nrn:
Purkinje neuron network (Zang et al. 2020)
Purkinje neuron network (Zang et al. 2020)
ssa_soma_h.dat
ssi_soma_h.dat
v_th.mat
run PRC_script_curr.hoc first and then run Fig2B.m