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Interaction of leak and IMI conductance on the STG over broad temperature range (Stadele et al 2015)
 
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Model Information
Model File
Accession:
184404
The ZIP file contains a Hodgkin-Huxley based circuit model and the simulation environment MadSim used to study the interaction of leak and IMI on the gastric mill network of the crab (Cancer borealis) as represented in (C. Städele, S. Heigele and W. Stein, 2015) MadSim, the simulation environment used for this study, is freeware and included in the package.
Reference:
1 .
Stein W, Straub O, Ausborn J, Mader W, Wolf H (2008) Motor pattern selection by combinatorial code of interneuronal pathways.
J Comput Neurosci
25
:543-61
[
PubMed
]
2 .
Ausborn J, Stein W, Wolf H (2007) Frequency control of motor patterning by negative sensory feedback.
J Neurosci
27
:9319-28
[
PubMed
]
3 .
Städele C, Heigele S, Stein W (2015) Neuromodulation to the Rescue: Compensation of Temperature-Induced Breakdown of Rhythmic Motor Patterns via Extrinsic Neuromodulatory Input.
PLoS Biol
13
:e1002265
[
PubMed
]
4 .
Daur N, Diehl F, Mader W, Stein W (2012) The stomatogastric nervous system as a model for studying sensorimotor interactions in real-time closed-loop conditions.
Front Comput Neurosci
6
:13
[
PubMed
]
Citations
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Model Information
(Click on a link to find other models with that property)
Model Type:
Realistic Network;
Brain Region(s)/Organism:
Stomatogastric ganglion;
Cell Type(s):
Stomatogastric Ganglion (STG) Lateral Gastric (LG) cell;
Channel(s):
I MI;
Gap Junctions:
Receptor(s):
Gene(s):
Transmitter(s):
CabTRP 1a;
Simulation Environment:
MadSim;
Model Concept(s):
Temporal Pattern Generation;
Invertebrate;
Neuromodulation;
Implementer(s):
Search NeuronDB
for information about:
I MI
;
CabTRP 1a
;
/
StaedeleEtAl2015
madSim 6.11
readme.txt
Staedele_et_al_2015_Plos_Biology_Model_ Instruction.pdf
Supplemental 2_model.gui
supplemental 2_model_high_leak.gui
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