TY - GEN
T1 - Ontology (Science)
AU - Smith, Barry
PY - 2008
Y1 - 2008
N2 - Increasingly, in data-intensive areas of the life sciences, experimental results are being described in algorithmically useful ways with the help of ontologies. Such ontologies are authored and maintained by scientists to support the retrieval, integration and analysis of their data. The proposition to be defended here is that ontologies of this type-the Gene Ontology (GO) being the most conspicuous example-are a part of science. Initial evidence for the truth of this proposition (which some will find self-evident) is the increasing recognition of the importance of empirically-based methods of evaluation to the ontology development work being undertaken in support of scientific research. Ontologies created by scientists must, of course, be associated with implementations satisfying the requirements of software engineering. But the ontologies are not themselves engineering artifacts, and to conceive them as such brings grievous consequences. Rather, ontologies such as the GO are in different respects comparable to scientific theories, to scientific databases, and to scientific journal publications. Such a view implies a new conception of what is involved in the authoring, maintenance and application of ontologies in scientific contexts, and therewith also a new approach to the evaluation of ontologies and to the training of ontologists.
AB - Increasingly, in data-intensive areas of the life sciences, experimental results are being described in algorithmically useful ways with the help of ontologies. Such ontologies are authored and maintained by scientists to support the retrieval, integration and analysis of their data. The proposition to be defended here is that ontologies of this type-the Gene Ontology (GO) being the most conspicuous example-are a part of science. Initial evidence for the truth of this proposition (which some will find self-evident) is the increasing recognition of the importance of empirically-based methods of evaluation to the ontology development work being undertaken in support of scientific research. Ontologies created by scientists must, of course, be associated with implementations satisfying the requirements of software engineering. But the ontologies are not themselves engineering artifacts, and to conceive them as such brings grievous consequences. Rather, ontologies such as the GO are in different respects comparable to scientific theories, to scientific databases, and to scientific journal publications. Such a view implies a new conception of what is involved in the authoring, maintenance and application of ontologies in scientific contexts, and therewith also a new approach to the evaluation of ontologies and to the training of ontologists.
KW - biomedical informatics
KW - expert peer review
KW - Gene Ontology
KW - OBO Foundry
KW - ontology engineering
KW - scientific method
UR - https://www.scopus.com/pages/publications/84875914217
U2 - 10.3233/978-1-58603-923-3-21
DO - 10.3233/978-1-58603-923-3-21
M3 - Conference contribution
AN - SCOPUS:84875914217
SN - 9781586039233
T3 - Frontiers in Artificial Intelligence and Applications
SP - 21
EP - 35
BT - Formal Ontology in Information Systems. Proceedings of the Fifth International Conference (FOIS 2008)
PB - IOS Press BV
ER -