Food process ontology requirements

Author:

Dooley Damion1,Weber Magalie2,Ibanescu Liliana3,Lange Matthew4,Chan Lauren5,Soldatova Larisa6,Yang Chen7,Warren Robert8,Shimizu Cogan9,McGinty Hande K.10,Hsiao William111

Affiliation:

1. Centre for Infectious Disease Genomics and One Health, Simon Fraser University, Burnaby, BC, Canada

2. INRAE, UR BIA, Biopolymères Interactions Assemblages, Nantes, France

3. UMR MIA-Paris, AgroParisTech, INRAE, Université Paris-Saclay, Paris, France

4. International Center for Food Ontology Operability Data and Semantics, Davis, California, USA

5. College of Public Health and Human Sciences, Oregon State University, Corvallis, OR, USA

6. Goldsmiths College, the University of London, UK

7. Department of Food Technology, Safety and Health, Ghent University, Ghent, Belgium

8. Glengarry Agriculture and Forestry, Guelph, On, Canada

9. Kansas State University, Manhattan, KS, USA

10. Department of Chemistry and Biochemistry, Ohio University, Athens, Ohio, USA

11. Faculty of Health Sciences, Simon Fraser University, Burnaby, BC, Canada

Abstract

People often value the sensual, celebratory, and health aspects of food, but behind this experience exists many other value-laden agricultural production, distribution, manufacturing, and physiological processes that support or undermine a healthy population and a sustainable future. The complexity of such processes is evident in both every-day food preparation of recipes and in industrial food manufacturing, packaging and storage, each of which depends critically on human or machine agents, chemical or organismal ingredient references, and the explicit instructions and implicit procedures held in formulations or recipes. An integrated ontology landscape does not yet exist to cover all the entities at work in this farm to fork journey. It seems necessary to construct such a vision by reusing expert-curated fit-to-purpose ontology subdomains and their relationship, material, and more abstract organization and role entities. The challenge is to make this merger be, by analogy, one language, rather than nouns and verbs from a dozen or more dialects which cannot be used directly in statements about some aspect of the farm to fork journey without expensive translation or substantial dialect education in order to understand a particular text or domain of knowledge. This work focuses on the ontology components – object and data properties and annotations – needed to model food processes or more general process modelling within the context of the Open Biological and Biomedical Ontology Foundry and congruent ontologies. Ideally these components can be brought together in a general process ontology that can be specialized not only for the food domain but for carrying out other protocols as well. Many operations involved in food identification, preparation, transportation and storage – shaking, boiling, mixing, freezing, labeling, shipping – are actually common to activities from manufacturing and laboratory work to local or home food preparation.

Publisher

IOS Press

Subject

Computer Networks and Communications,Computer Science Applications,Information Systems

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