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Basic Formal Ontology (BFO) is a top-level ontology developed by Barry Smith and his associates for the purposes of promoting interoperability among domain ontologies built in its terms through a process of downward population. A guide to building BFO-conformant domain ontologies was published by MIT Press in 2015.
Basic Formal Ontology, for example (see below), has no native term for information entities such as sentences or data items or publications. These terms are however supplied by the BFO-conformant Information Artifact Ontology (IAO).
Basic Formal Ontology, which serves as the top-level hub of the IOF, has been applied in the development of ontologies in many areas of engineering, [50] including maintenance, [51] supply chain, [52] product life cycle, [53] and additive manufacturing. [54] Artificial Intelligence and Complex Systems
In philosophy, the term formal ontology is used to refer to an ontology defined by axioms in a formal language with the goal to provide an unbiased (domain- and application-independent) view on reality, which can help the modeler of domain- or application-specific ontologies to avoid possibly erroneous ontological assumptions encountered in modeling large-scale ontologies.
Ontology for antibiotic resistance genes and mutations. Apollo Structured Vocabulary [1] APOLLO-SV Ontology for enabling interoperability of epidemic models and public health application software. Ascomycete phenotype ontology APO A structured controlled vocabulary for the phenotypes of Ascomycete fungi. Basic Formal Ontology [2] BFO
Basic Formal Ontology, [38] a formal upper ontology designed to support scientific research; BioPAX, [39] an ontology for the exchange and interoperability of biological pathway (cellular processes) data; BMO, [40] an e-Business Model Ontology based on a review of enterprise ontologies and business model literature
Act (CEQA) review, or New York's State Environmental States with Programs Similar to NEPA Theworld’sleadingsustainabilityconsultancy ERM specialist teams have been
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