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The Foundational Model of Anatomy (FMA) ontology is a domain reference ontology based on a disciplined modeling approach.
The objective is to represent the Foundational Model of Anatomy (FMA) in the OWL 2 Web Ontology Language (informally OWL 2), and to use it in a European cross-lingual portal of health terminologies for indexing and searching Web resources.
An example of reference ontology in biomedical informatics is the Foundational Model of Anatomy (FMA), an ontology of anatomy that covers the entire range of macroscopic, microscopic, and subcellular anatomy.
Existing neuroanatomical ontologies, databases and information systems, such as the Foundational Model of Anatomy (FMA), represent outgoing connections from brain structures, but cannot represent the "internal wiring" of structures and as such, cannot distinguish between different independent connections from the same structure.
Drosophila melanogaster is the foundational model organism for investigating circadian rhythms.
The Foundational Model of Anatomy (FMA) is the reference ontology regarding human anatomy.
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Plato focused on beauty as an abstract form whose essence is bestowed on the particular items that instantiate it, and in keeping with this foundational model, philosophers have usually treated beauty in the most general of terms.
Specifically, the basic principles that underpin the CIS provide a possible foundational model for the development of a global SSFFC surveillance system that includes efforts by WHO to implement a new open web-based system for reporting cases of counterfeit, falsified and/or substandard medicines.
They pointed out that the geometric Brownian motion (GBM) should be a foundational model and the mean reverting model could describe the stochastic characteristics of oil price more accurately since oil price fluctuated around the cost of oil production which was stable.
When used in conjunction with existing reference (naming authority) ontologies, such as the Gene Ontology (GO), ChEBI, Foundational Model of Anatomy (FMA), developers can create fully specified biological models, which will greatly enhance others' ability to locate, understand, validate and redeploy these biological models.
An {H/O, C1,2, C3Hx (x ≤ 6)} kinetic model, involving 41 species and 348 reactions, is taken as the foundational fuel model and the gap between the fuel molecule and this base model is bridged at five different models that use the constrained-equilibrium assumption.
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