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kinetic models of pathways, many published models from literature  (Biomodels LLC)

 
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    Biomodels LLC kinetic models of pathways, many published models from literature
    Kinetic Models Of Pathways, Many Published Models From Literature, supplied by Biomodels LLC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/matlab+object-oriented+programming/kinetic+models/pm19287049-56-78-73
    Average 90 stars, based on 1 article reviews
    kinetic models of pathways, many published models from literature - by Bioz Stars, 2026-09
    90/100 stars

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    other:

    Article Title: Systems analysis of miR-199a/b-5p and multiple miR-199a/b-5p targets during chondrogenesis
    Article Snippet: The enhanced kinetic model can be found in the following biomodels repository MODEL2305010001.

    Article Title: Ethanologenesis and respiration in a pyruvate decarboxylase-deficient Zymomonas mobilis
    Article Snippet: The kinetic model used for simulations is deposited un the BioModels database; ID: MODEL 2008060001.

    Article Title: Microbiome modeling: a beginner's guide
    Article Snippet: They tried to reproduce 455 kinetic models from the BioModels repository, which was possible for only 49% based on information from respective publications.

    Article Title: Acetate is a beneficial nutrient for E. coli at low glycolytic flux.
    Article Snippet: We used a kinetic model of E. coli (Millard et al, 2021) available from the Biomodels database (https://www.ebi.ac.uk/biomodels; Chelliah et al, 2015) under identifier MODEL2005050001.

    Article Title: Model Integration in Computational Biology: The Role of Reproducibility, Credibility and Utility
    Article Snippet: In a recent study , the BioModels group analyzed 455 kinetic models published in 152 peer-reviewed journals, a collective work of about 1,400 scientists from 49 countries.

    Article Title: Standardization of Human Metabolic Stoichiometric Models: Challenges and Directions
    Article Snippet: So far, the BioModels team has undertaken the standardization task for the kinetic models, however, standardization and thus direct comparability is not yet available for the stoichiometric models, including human.

    Article Title: Recommendations for a standardized publication protocol for a QSP model.
    Article Snippet: subsequent 2011 white paper [7].. Due to the youthfulness of QSP, standard practices for reporting and sharing QSP models have not yet been established.. In this manuscript, we seek to provide standard practices and workflows to ensure QSP modeling efforts are best portrayed to and reproducible by the scientific community.

    Article Title: Control and regulation of acetate overflow in Escherichia coli
    Article Snippet: The cali- brated kinetic model has also been deposited in the Biomodels database (https://www.ebi.ac.uk/ biomodels) (Chelliah et al., 2015) with the identifier MODEL2005050001.



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    The user can use Python or MATLAB code to access and download the ABI–CTdb’s electrophysiological data and run ABI’s Python SDK routines to extract features from the electrophysiological data. The user can also store them in a local MySQL database that we call “CellSurvey”, use a new extension of our NeuroManager software to run simulations and extract features from them, then compare the simulated and experimental data. The results of these interactions are stored in a second investigation database called “NM–INVdb”. For more details please see the User Guide

    Journal: Neuroinformatics

    Article Title: Integrating the Allen Brain Institute Cell Types Database into automated neuroscience workflow

    doi: 10.1007/s12021-017-9337-x

    Figure Lengend Snippet: The user can use Python or MATLAB code to access and download the ABI–CTdb’s electrophysiological data and run ABI’s Python SDK routines to extract features from the electrophysiological data. The user can also store them in a local MySQL database that we call “CellSurvey”, use a new extension of our NeuroManager software to run simulations and extract features from them, then compare the simulated and experimental data. The results of these interactions are stored in a second investigation database called “NM–INVdb”. For more details please see the User Guide

    Article Snippet: 2 2.3 Extending NeuroManager towards integrated simulation—analysis management Our group has developed an object–oriented MATLAB program called NeuroManager which automates the workflow of simulation job submissions when using multiple heterogeneous computational resources ( Stockton and Santamaria, 2017 , 2016 , 2015 ).

    Techniques: Software

    The ABIApiML classes give access to the ABI Cell Types electrophysiological data from within MATLAB

    Journal: Neuroinformatics

    Article Title: Integrating the Allen Brain Institute Cell Types Database into automated neuroscience workflow

    doi: 10.1007/s12021-017-9337-x

    Figure Lengend Snippet: The ABIApiML classes give access to the ABI Cell Types electrophysiological data from within MATLAB

    Article Snippet: 2 2.3 Extending NeuroManager towards integrated simulation—analysis management Our group has developed an object–oriented MATLAB program called NeuroManager which automates the workflow of simulation job submissions when using multiple heterogeneous computational resources ( Stockton and Santamaria, 2017 , 2016 , 2015 ).

    Techniques:

    The local MySQL CellSurvey Database holds features extracted from NWB files downloaded from the Allen Brain Institute Database website. We can use standard SQL queries like these to access the database. The INNER JOINs connect tables in the database, allowing disparate parts of the stored data to be accessed in a single query. The table design is straightforward and is easily seen in the code or by browsing the database with MySQL Workbench. Automating the SQL query employment using custom Python or MATLAB functions is straightforward and easily extended; we have provided a MATLAB wrapper class which is described in Section 3.3

    Journal: Neuroinformatics

    Article Title: Integrating the Allen Brain Institute Cell Types Database into automated neuroscience workflow

    doi: 10.1007/s12021-017-9337-x

    Figure Lengend Snippet: The local MySQL CellSurvey Database holds features extracted from NWB files downloaded from the Allen Brain Institute Database website. We can use standard SQL queries like these to access the database. The INNER JOINs connect tables in the database, allowing disparate parts of the stored data to be accessed in a single query. The table design is straightforward and is easily seen in the code or by browsing the database with MySQL Workbench. Automating the SQL query employment using custom Python or MATLAB functions is straightforward and easily extended; we have provided a MATLAB wrapper class which is described in Section 3.3

    Article Snippet: 2 2.3 Extending NeuroManager towards integrated simulation—analysis management Our group has developed an object–oriented MATLAB program called NeuroManager which automates the workflow of simulation job submissions when using multiple heterogeneous computational resources ( Stockton and Santamaria, 2017 , 2016 , 2015 ).

    Techniques:

    MATLAB access of CellSurvey database. The MATLAB class ABIFeatExtrData provides access to the local CellSurvey database of features extracted from the public online ABI Cell Types database

    Journal: Neuroinformatics

    Article Title: Integrating the Allen Brain Institute Cell Types Database into automated neuroscience workflow

    doi: 10.1007/s12021-017-9337-x

    Figure Lengend Snippet: MATLAB access of CellSurvey database. The MATLAB class ABIFeatExtrData provides access to the local CellSurvey database of features extracted from the public online ABI Cell Types database

    Article Snippet: 2 2.3 Extending NeuroManager towards integrated simulation—analysis management Our group has developed an object–oriented MATLAB program called NeuroManager which automates the workflow of simulation job submissions when using multiple heterogeneous computational resources ( Stockton and Santamaria, 2017 , 2016 , 2015 ).

    Techniques: