About lab
Tikidji-Hamburyan2018 - Rod phototransductionunder strong illumination This model is described in the article: Rods progressively escape saturation to drive visual responses in daylight conditions. It can be used to explore systemsbiology tikidji hamburyan2018 rod phototransduction unde dynamics and compare simulation behavior across conditions.
Runtime
Duration1
Comms Step0.1
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Metadata
Packagetikidji-hamburyan2018-rod-phototransduction-under-strong-illumin
Created2026-05-17
Updated2026-05-17
systemsbiologysbmlbiomodels_ebifaithfulcuratedvisualisation
Manifest
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"description": "Source state initial condition exposed as a model-specific control because no explicit intervention parameter is identifiable. Maps to SBML symbol `S220`."
},
{
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"description": "Source state initial condition exposed as a model-specific control because no explicit intervention parameter is identifiable. Maps to SBML symbol `S49`."
},
{
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},
{
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},
{
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{
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{
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{
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},
{
"name": "is_cp_rec_t_bs_1_bs_2",
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}
]
},
"tags": [
"systemsbiology",
"sbml",
"biomodels_ebi",
"faithful",
"curated"
],
"title": "Tikidji Hamburyan2018 Rod Phototransduction Under Strong Illumination Lab",
"models": [
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"runtime": {
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"communication_step": 0.1
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"description": "Tikidji-Hamburyan2018 - Rod phototransductionunder strong illumination This model is described in the article: Rods progressively escape saturation to drive visual responses in daylight conditions. It can be used to explore systemsbiology tikidji hamburyan2018 rod phototransduction unde dynamics and compare simulation behavior across conditions.",
"schema_version": "2.0"
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