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Modularization Requirements in Bio-Ontologies: A Case Study of ChEBI

机译:生物本体中的模块化需求:以ChEBI为例

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Bio-ontologies such as the Gene Ontology and ChEBI are characterized by large sizes and relatively low expressivity. However, ongoing efforts aim to increase the formalisation of these ontologies by adding full definitions (equivalent classes). This increase in complexity results in a decrease of performance for standard reasoning tasks. In this paper, we explore the contribution which modularization can play in the evolution of bio-ontologies. In particular, we focus on ChEBI, the ontology of chemical entities of biological interest. ChEBI consists of around 25,000 classes, organised into a structure-based chemical classification and enriched with a role-based classification of their biologically properties. Ontology modularization - partitioning large ontologies into smaller, more manageable chunks - provides the only feasible mechanism for sustainably maintaining the large-scale and ever-growing ontologies in the biomedical domain. We evaluate available ontology partitioning tools.
机译:诸如基因本体论和ChEBI之类的生物本体论的特征在于大尺寸和相对低的表达性。但是,正在进行的工作旨在通过添加完整的定义(等效类)来增加这些本体的形式化。这种复杂性的增加导致标准推理任务的性能下降。在本文中,我们探讨了模块化可以在生物本体论的发展中发挥的作用。特别是,我们专注于ChEBI,这是具有生物学意义的化学实体的本体。 ChEBI包含大约25,000个类别,分为基于结构的化学分类和丰富的基于生物学特性的基于角色的分类。本体模块化-将大型本体划分为较小的,更易于管理的块-提供了唯一可行的机制,用于在生物医学领域中可持续地维护大规模且不断增长的本体。我们评估可用的本体划分工具。

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