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ABSTRACT: The model should reproduce the figure 1C of the article (successfully reproduced in MathSBML). If your software does not support the variable "time", you can replace the assignmentRule: To the extent possible under law, all copyright and related or neighbouring rights to this encoded model have been dedicated to the public domain worldwide. Please refer to CC0 Public Domain Dedication for more information. In summary, you are entitled to use this encoded model in absolutely any manner you deem suitable, verbatim, or with modification, alone or embedded it in a larger context, redistribute it, commercially or not, in a restricted way or not. To cite BioModels Database, please use: Li C, Donizelli M, Rodriguez N, Dharuri H, Endler L, Chelliah V, Li L, He E, Henry A, Stefan MI, Snoep JL, Hucka M, Le Novère N, Laibe C (2010) BioModels Database: An enhanced, curated and annotated resource for published quantitative kinetic models. BMC Syst Biol., 4:92.
n = n0 * [ exp(-kbN*time) + kappa * (1 - exp(-kbN*time))]
by
n = n0 * kappa
ORGANISM(S): Rattus
SUBMITTER: Lucian Smith
PROVIDER: MODEL6623415355 | biostudies-other |
SECONDARY ACCESSION(S): 15596518
REPOSITORIES: biostudies-other

European journal of biochemistry 20020301 5
This review provides a comparative overview of recent developments in the modelling of cellular calcium oscillations. A large variety of mathematical models have been developed for this wide-spread phenomenon in intra- and intercellular signalling. From these, a general model is extracted that involves six types of concentration variables: inositol 1,4,5-trisphosphate (IP3), cytoplasmic, endoplasmic reticulum and mitochondrial calcium, the occupied binding sites of calcium buffers, and the fract ...[more]