Researcher profile

Nick Juty

· Age UK

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Publications

2 research records shown

Harmonizing semantic annotations for computational models in biology
2018 · Briefings in Bioinformatics · DOI 10.1093/bib/bby087

Life science researchers use computational models to articulate and test hypotheses about the behavior of biological systems. Semantic annotation is a critical component for enhancing the interoperability and reusability of such models as well as for the integration of the data needed for model parameterization and validation. Encoded as machine-readable links to knowledge resource terms, semantic annotations describe the computational or biological meaning of what models and data represent. These annotations help researchers find and repurpose models, accelerate model composition and enable knowledge integration across model repositories and experimental data stores. However, realizing the potential benefits of semantic annotation requires the development of model annotation standards that adhere to a community-based annotation protocol. Without such standards, tool developers must account for a variety of annotation formats and approaches, a situation that can become prohibitively cumbersome and which can defeat the purpose of linking model elements to controlled knowledge resource terms. Currently, no consensus protocol for semantic annotation exists among the larger biological modeling community. Here, we report on the landscape of current annotation practices among the COmputational Modeling in BIology NEtwork community and provide a set of recommendations for building a consensus approach to semantic annotation.

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The systems biology markup language (SBML): a medium forrepresentation and exchange of biochemical network models
2003 · Bioinformatics · DOI 10.1093/bioinformatics/btg015

MOTIVATION: Molecular biotechnology now makes it possible to build elaborate systems models, but the systems biology community needs information standards if models are to be shared, evaluated and developed cooperatively. RESULTS: We summarize the Systems Biology Markup Language (SBML) Level 1, a free, open, XML-based format for representing biochemical reaction networks. SBML is a software-independent language for describing models common to research in many areas of computational biology, including cell signaling pathways, metabolic pathways, gene regulation, and others. AVAILABILITY: The specification of SBML Level 1 is freely available from http://www.sbml.org/

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Co-authors

Michael Hucka

California Institute of Technology

2 shared publications
Herbert M. Sauro

California Institute of Technology

2 shared publications
Andrew Finney

California Institute of Technology

1 shared publication
Hamid Bolouri

California Institute of Technology

1 shared publication
John C. Doyle

California Institute of Technology

1 shared publication
Hiroaki Kitano

California Institute of Technology

1 shared publication
Adam P. Arkin

University of California, Berkeley

1 shared publication
B. Bornstein

1 shared publication
D. Bray

University of Cambridge

1 shared publication
Athel Cornish‐Bowden

Centre National de la Recherche Scientifique

1 shared publication
Autumn Cuellar

University of Auckland

1 shared publication
С. М. Дронов

Age UK

1 shared publication