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Danø2006_Glycolysis_Reduction


ABSTRACT:

This model originates from BioModels Database: A Database of Annotated Published Models. It is copyright (c) 2005-2011 The BioModels.net Team.
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.

ORGANISM(S): Saccharomyces cerevisiae

SUBMITTER: Lukas Endler 

PROVIDER: MODEL5952308332 | biostudies-other |

SECONDARY ACCESSION(S): 17010168

REPOSITORIES: biostudies-other

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Publications

Reduction of a biochemical model with preservation of its basic dynamic properties.

Danø Sune S   Madsen Mads F MF   Schmidt Henning H   Cedersund Gunnar G  

The FEBS journal 20060928 21


The complexity of full-scale metabolic models is a major obstacle for their effective use in computational systems biology. The aim of model reduction is to circumvent this problem by eliminating parts of a model that are unimportant for the properties of interest. The choice of reduction method is influenced both by the type of model complexity and by the objective of the reduction; therefore, no single method is superior in all cases. In this study we present a comparative study of two differe  ...[more]

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