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Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
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Model Information
Model File
Accession:
266806
The Golgi cells are the main inhibitory interneurons of the cerebellar granular layer. To study the mechanisms through which these neurons integrate complex input patterns, a new set of models were developed using the latest experimental information and a genetic algorithm approach to fit the maximum ionic channel conductances. The models faithfully reproduced a rich pattern of electrophysiological and pharmacological properties and predicted the operating mechanisms of these neurons.
Reference:
1 .
Masoli S, Ottaviani A, Casali S, D'Angelo E (2020) Cerebellar Golgi cell models predict dendritic processing and mechanisms of synaptic plasticity.
PLoS Comput Biol
16
:e1007937
[
PubMed
]
Citations
Citation Browser
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:
Cerebellum;
Cell Type(s):
Cerebellum golgi cell;
Channel(s):
I Sodium;
Gap Junctions:
Receptor(s):
Gene(s):
Transmitter(s):
Simulation Environment:
NEURON;
Model Concept(s):
Action Potential Initiation;
Neurotransmitter dynamics;
Calcium dynamics;
Implementer(s):
Masoli, Stefano [stefano.masoli at unipv.it];
Search NeuronDB
for information about:
I Sodium
;
/
Golgi_cell_2020
Morphology_2
mod_files
Cav12.mod
*
Other models using Cav12.mod:
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Cav13.mod
*
Other models using Cav13.mod:
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Cav2_3.mod
*
Other models using Cav2_3.mod:
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Cav3_1.mod
*
Other models using Cav3_1.mod:
A detailed Purkinje cell model (Masoli et al 2015)
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Purkinje cell: Synaptic activation predicts voltage control of burst-pause (Masoli & D'Angelo 2017)
cdp5StCmod.mod
*
Other models using cdp5StCmod.mod:
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
GOLGI_Ampa_mossy_det_vi.mod
*
Other models using GOLGI_Ampa_mossy_det_vi.mod:
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
GOLGI_Ampa_pf_aa_det_vi.mod
*
Other models using GOLGI_Ampa_pf_aa_det_vi.mod:
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
GRC_CA.mod
*
Other models using GRC_CA.mod:
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Cerebellar cortex oscil. robustness from Golgi cell gap jncs (Simoes de Souza and De Schutter 2011)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellum granule cell FHF (Dover et al. 2016)
Multicompartmental cerebellar granule cell model (Diwakar et al. 2009)
Reconstructing cerebellar granule layer evoked LFP using convolution (ReConv) (Diwakar et al. 2011)
GRC_KM.mod
*
Other models using GRC_KM.mod:
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Cerebellar cortex oscil. robustness from Golgi cell gap jncs (Simoes de Souza and De Schutter 2011)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Multicompartmental cerebellar granule cell model (Diwakar et al. 2009)
Reconstructing cerebellar granule layer evoked LFP using convolution (ReConv) (Diwakar et al. 2011)
Hcn1.mod
*
Other models using Hcn1.mod:
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Hcn2.mod
*
Other models using Hcn2.mod:
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Kca11.mod
*
Other models using Kca11.mod:
A detailed Purkinje cell model (Masoli et al 2015)
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Purkinje cell: Synaptic activation predicts voltage control of burst-pause (Masoli & D'Angelo 2017)
Kca22.mod
*
Other models using Kca22.mod:
A detailed Purkinje cell model (Masoli et al 2015)
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Purkinje cell: Synaptic activation predicts voltage control of burst-pause (Masoli & D'Angelo 2017)
Kca31.mod
*
Other models using Kca31.mod:
A detailed Purkinje cell model (Masoli et al 2015)
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Purkinje cell: Synaptic activation predicts voltage control of burst-pause (Masoli & D'Angelo 2017)
Kv11.mod
*
Other models using Kv11.mod:
A detailed Purkinje cell model (Masoli et al 2015)
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Purkinje cell: Synaptic activation predicts voltage control of burst-pause (Masoli & D'Angelo 2017)
Kv34.mod
*
Other models using Kv34.mod:
A detailed Purkinje cell model (Masoli et al 2015)
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Purkinje cell: Synaptic activation predicts voltage control of burst-pause (Masoli & D'Angelo 2017)
Kv43.mod
*
Other models using Kv43.mod:
A detailed Purkinje cell model (Masoli et al 2015)
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Purkinje cell: Synaptic activation predicts voltage control of burst-pause (Masoli & D'Angelo 2017)
Leak.mod
*
Other models using Leak.mod:
A detailed Purkinje cell model (Masoli et al 2015)
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Cerebellar granule cell (Masoli et al 2020)
Purkinje cell: Synaptic activation predicts voltage control of burst-pause (Masoli & D'Angelo 2017)
Nav16.mod
*
Other models using Nav16.mod:
A detailed Purkinje cell model (Masoli et al 2015)
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
Purkinje cell: Synaptic activation predicts voltage control of burst-pause (Masoli & D'Angelo 2017)
PC_NMDA_NR2B.mod
*
Other models using PC_NMDA_NR2B.mod:
Cerebellar Golgi cells, dendritic processing, and synaptic plasticity (Masoli et al 2020)
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