Ontology Creation and Management Tools: the Case of Anatomical Connectivity

Fuente: arXiv
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Autori principali: Kokash, Natallia, de Bono, Bernard, Gillespie, Tom
Natura: Preprint
Pubblicazione: 2025
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author Kokash, Natallia
de Bono, Bernard
Gillespie, Tom
author_facet Kokash, Natallia
de Bono, Bernard
Gillespie, Tom
contents We are developing infrastructure to support researchers in mapping data related to the peripheral nervous system and other physiological systems, with an emphasis on their relevance to the organs under investigation. The nervous system, a complex network of nerves and ganglia, plays a critical role in coordinating and transmitting signals throughout the body. To aid in this, we have created ApiNATOMY, a framework for the topological and semantic representation of multiscale physiological circuit maps. ApiNATOMY integrates a Knowledge Representation (KR) model and a suite of Knowledge Management (KM) tools. The KR model enables physiology experts to easily capture interactions between anatomical entities, while the KM tools help modelers convert high-level abstractions into detailed models of physiological processes, which can be integrated with external ontologies and knowledge graphs.
format Preprint
id arxiv_https___arxiv_org_abs_2509_15780
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Ontology Creation and Management Tools: the Case of Anatomical Connectivity
Kokash, Natallia
de Bono, Bernard
Gillespie, Tom
Artificial Intelligence
Digital Libraries
We are developing infrastructure to support researchers in mapping data related to the peripheral nervous system and other physiological systems, with an emphasis on their relevance to the organs under investigation. The nervous system, a complex network of nerves and ganglia, plays a critical role in coordinating and transmitting signals throughout the body. To aid in this, we have created ApiNATOMY, a framework for the topological and semantic representation of multiscale physiological circuit maps. ApiNATOMY integrates a Knowledge Representation (KR) model and a suite of Knowledge Management (KM) tools. The KR model enables physiology experts to easily capture interactions between anatomical entities, while the KM tools help modelers convert high-level abstractions into detailed models of physiological processes, which can be integrated with external ontologies and knowledge graphs.
title Ontology Creation and Management Tools: the Case of Anatomical Connectivity
topic Artificial Intelligence
Digital Libraries
url https://arxiv.org/abs/2509.15780