生物医学本体中功能的大规模推理

R. Hoehndorf, Liam Mencel, G. Gkoutos, P. Schofield
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引用次数: 6

摘要

大量生物医学资源被开发出来代表生物实体的功能,这些资源被广泛用于数据集成和分析。在生物医学本体中表达功能目前使用的是正式的表示模式,这使得基本的推理任务落在超过多项式时间的复杂性类中,从而限制了使用基于知识的方法进行数据集成、查询或质量控制的潜力。在这里,我们提出了一种替代的表示模式来表达关于生物功能的知识,以及生物学和本体论的证明,该模式可以使用描述逻辑el++来表达,并使用owl2 EL profile来实现。为了证明我们的生物功能帐户的效用,我们将其应用于SwissProt数据库中包含的所有蛋白质,并评估其在回答复杂查询以及分类和查询时间方面的效用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Large-Scale Reasoning over Functions in Biomedical Ontologies
A large number of biomedical resources have been developed to represent the functions of biological entities, and these resources are widely used for data integration and analysis. Expressing functions in biomedical ontologies currently uses formal representation patterns that renders basic reasoning tasks to fall in complexity classes beyond polynomial time, thereby limiting the potential of using knowledge-based methods for data integration, querying or quality control. Here, we propose an alternative representation pattern for expressing knowledge about biological functions, together with a biological and ontological justification, which can be expressed using the description logic EL++ and implemented using the OWL 2 EL profile. To demonstrate the utility of our account of biological functions, we apply it to all proteins contained in the SwissProt database and evaluate its utility with respect to answering complex queries as well with respect to the classification and query times.
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