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…
Two-model lab for Niederer2006 Myocyte Relaxation: a core SBML simulator wired into a dedicated visualization sub-model that turns the raw state into friendly timeseries and a plain-language summary. This a model from the article: A quantitative analysis of cardiac myocyte relaxation: a simulation study. It can be used to explore cardiac dynamics and compare response patterns across conditions.
Manifest
{
"io": {
"inputs": [
{
"name": "integration_step",
"maps_to": "niederer2006_myocyte_relaxation_core.integration_step"
},
{
"name": "parameter_overrides",
"maps_to": "niederer2006_myocyte_relaxation_core.parameter_overrides"
},
{
"name": "initial_conditions",
"maps_to": "niederer2006_myocyte_relaxation_core.initial_conditions"
}
],
"outputs": [
{
"name": "scenario_metadata",
"maps_to": "niederer2006_myocyte_relaxation_scenario.scenario_metadata"
},
{
"name": "state",
"maps_to": "niederer2006_myocyte_relaxation_core.state"
},
{
"name": "run_summary",
"maps_to": "niederer2006_myocyte_relaxation_viz.run_summary"
}
]
},
"title": "Niederer2006 Myocyte Relaxation Lab",
"models": [
{
"path": "models/scenario",
"alias": "niederer2006_myocyte_relaxation_scenario",
"parameters": {
"schedule": {
"cooperativity": {
"unit": "dimensionless",
"label": "cooperativity",
"active": false,
"baseline": 0.008,
"recovery": 0.008,
"challenge": 0.008,
"description": "Scenario-controlled cooperativity value."
},
"troponin_pool": {
"unit": "dimensionless",
"label": "troponin pool",
"active": true,
"baseline": 0.067593139865,
"recovery": 0.067593139865,
"challenge": 0.1013897097975,
"description": "Scenario-controlled troponin pool value."
},
"relaxation_rate": {
"unit": "dimensionless",
"label": "relaxation rate",
"active": false,
"baseline": 0.002,
"recovery": 0.002,
"challenge": 0.002,
"description": "Scenario-controlled relaxation rate value."
}
},
"scenario_name": "Troponin pool challenge",
"baseline_until": 0.25,
"challenge_until": 0.75,
"scenario_description": "Baseline is followed by a troponin pool challenge and recovery period."
}
},
{
"path": "./models/core",
"alias": "niederer2006_myocyte_relaxation_core",
"parameters": {
"model_path": "data/MODEL8687196544.xml",
"integration_step": 0.001
}
},
{
"path": "./models/viz",
"alias": "niederer2006_myocyte_relaxation_viz",
"parameters": {
"lab_title": "Niederer2006 Myocyte Relaxation",
"lab_question": "How quickly does the myocyte relax after calcium activation?",
"integration_step": 0.001
}
}
],
"wiring": [
{
"to": [
"niederer2006_myocyte_relaxation_core.troponin_pool"
],
"from": "niederer2006_myocyte_relaxation_scenario.troponin_pool"
},
{
"to": [
"niederer2006_myocyte_relaxation_core.relaxation_rate"
],
"from": "niederer2006_myocyte_relaxation_scenario.relaxation_rate"
},
{
"to": [
"niederer2006_myocyte_relaxation_core.cooperativity"
],
"from": "niederer2006_myocyte_relaxation_scenario.cooperativity"
},
{
"to": [
"niederer2006_myocyte_relaxation_viz.scenario_metadata"
],
"from": "niederer2006_myocyte_relaxation_scenario.scenario_metadata"
},
{
"to": [
"niederer2006_myocyte_relaxation_viz.state"
],
"from": "niederer2006_myocyte_relaxation_core.state"
},
{
"to": [
"niederer2006_myocyte_relaxation_viz.species_labels"
],
"from": "niederer2006_myocyte_relaxation_core.species_labels"
}
],
"package": "niederer2006-myocyte-relaxation",
"runtime": {
"duration": 1,
"initial_inputs": {
"niederer2006_myocyte_relaxation_core": {
"integration_step": 0.001,
"initial_conditions": {
"payload": {}
},
"parameter_overrides": {
"payload": {}
}
}
},
"communication_step": 0.001
},
"version": "1.0.0",
"description": "Two-model lab for Niederer2006 Myocyte Relaxation: a core SBML simulator wired into a dedicated visualization sub-model that turns the raw state into friendly timeseries and a plain-language summary. This a model from the article: A quantitative analysis of cardiac myocyte relaxation: a simulation study. It can be used to explore cardiac dynamics and compare response patterns across conditions.",
"schema_version": "2.0"
}Runtime
Duration1
Comms Step0.001
Runs
Total0
Completed0
Failed0
Metadata
Packageniederer2006-myocyte-relaxation
Created2026-05-14
Updated2026-06-13
cardiovascularscenariostimulussbmlbiomodels_ebifaithfulvisualizationother