About lab
One published Lab
Build with this Lab. Run it anywhere.
Use the same immutable release locally or through managed cloud execution, with its exact version and provenance preserved.
Preparing exact examples…
This a model from the article: The control systems structures of energy metabolism. It can be used to explore metabolic flux dynamics and compare pathway behavior across conditions.
Manifest
{
"io": {
"inputs": [
{
"name": "initial_fructose_6_phosphate",
"units": "native SBML value",
"default": 0.2,
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.initial_fructose_6_phosphate",
"description": "Initial condition for fructose 6 phosphate. Maps to bundled SBML symbol `F6P`. Applied before the Tellurium simulation starts; this does not change kinetic parameters or equations. Default from bundled SBML initial value."
},
{
"name": "initial_fructose_2_6_bisphosphate",
"units": "native SBML value",
"default": 0.001,
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.initial_fructose_2_6_bisphosphate",
"description": "Initial condition for fructose 2 6 bisphosphate. Maps to bundled SBML symbol `F26P`. Applied before the Tellurium simulation starts; this does not change kinetic parameters or equations. Default from bundled SBML initial value."
},
{
"name": "initial_glyceraldehyde_3_phosphate",
"units": "native SBML value",
"default": 0.0405,
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.initial_glyceraldehyde_3_phosphate",
"description": "Initial condition for glyceraldehyde 3 phosphate. Maps to bundled SBML symbol `GAP`. Applied before the Tellurium simulation starts; this does not change kinetic parameters or equations. Default from bundled SBML initial value."
},
{
"name": "initial_pyruvate",
"units": "native SBML value",
"default": 0.1,
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.initial_pyruvate",
"description": "Initial condition for pyruvate. Maps to bundled SBML symbol `PYR`. Applied before the Tellurium simulation starts; this does not change kinetic parameters or equations. Default from bundled SBML initial value."
},
{
"name": "initial_lactate",
"units": "native SBML value",
"default": 0.5,
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.initial_lactate",
"description": "Initial condition for lactate. Maps to bundled SBML symbol `LAC`. Applied before the Tellurium simulation starts; this does not change kinetic parameters or equations. Default from bundled SBML initial value."
}
],
"outputs": [
{
"name": "fructose_6_phosphate",
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.fructose_6_phosphate"
},
{
"name": "fructose_2_6_bisphosphate",
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.fructose_2_6_bisphosphate"
},
{
"name": "glyceraldehyde_3_phosphate",
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.glyceraldehyde_3_phosphate"
},
{
"name": "pyruvate",
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.pyruvate"
},
{
"name": "lactate",
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.lactate"
},
{
"name": "observable_values",
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.observable_values"
},
{
"name": "run_summary",
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.run_summary"
},
{
"name": "observable_labels",
"maps_to": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.observable_labels"
}
]
},
"title": "Cloutier2009_EnergyMetabolism_ModelC Lab",
"models": [
{
"path": "models/core",
"alias": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model",
"parameters": {
"model_path": "data/MODEL1006230068.xml",
"integration_step": 0.1
}
},
{
"path": "models/visualisation",
"alias": "visualisation"
}
],
"wiring": [
{
"to": [
"visualisation.metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model_observable_values"
],
"from": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.observable_values"
},
{
"to": [
"visualisation.metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model_run_summary"
],
"from": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.run_summary"
},
{
"to": [
"visualisation.metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model_observable_labels"
],
"from": "metabolism_sbml_cloutier2009_energymetabolism_modelc_model1006230068_model.observable_labels"
}
],
"package": "cloutier2009-energymetabolism-modelc",
"runtime": {
"duration": 10,
"initial_inputs": {},
"communication_step": 1
},
"version": "1.0.0",
"description": "This a model from the article: The control systems structures of energy metabolism. It can be used to explore metabolic flux dynamics and compare pathway behavior across conditions.",
"schema_version": "2.0"
}Runtime
Duration10
Comms Step1
Runs
Total0
Completed0
Failed0
Metadata
Packagecloutier2009-energymetabolism-modelc
Created2026-05-15
Updated2026-06-13
biomodels_ebifaithfulmetabolismodesbmltelluriumvisualisationother