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首页> 外文期刊>Journal of Biomedical Semantics >GOMMA: a component-based infrastructure for managing and analyzing life science ontologies and their evolution
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GOMMA: a component-based infrastructure for managing and analyzing life science ontologies and their evolution

机译:GOMMA:基于组件的基础架构,用于管理和分析生命科学本体及其演化

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Background Ontologies are increasingly used to structure and semantically describe entities of domains, such as genes and proteins in life sciences. Their increasing size and the high frequency of updates resulting in a large set of ontology versions necessitates efficient management and analysis of this data. Results We present GOMMA, a generic infrastructure for managing and analyzing life science ontologies and their evolution. GOMMA utilizes a generic repository to uniformly and efficiently manage ontology versions and different kinds of mappings. Furthermore, it provides components for ontology matching, and determining evolutionary ontology changes. These components are used by analysis tools, such as the Ontology Evolution Explorer (OnEX) and the detection of unstable ontology regions. We introduce the component-based infrastructure and show analysis results for selected components and life science applications. GOMMA is available at http://dbs.uni-leipzig.de/GOMMA webcite. Conclusions GOMMA provides a comprehensive and scalable infrastructure to manage large life science ontologies and analyze their evolution. Key functions include a generic storage of ontology versions and mappings, support for ontology matching and determining ontology changes. The supported features for analyzing ontology changes are helpful to assess their impact on ontology-dependent applications such as for term enrichment. GOMMA complements OnEX by providing functionalities to manage various versions of mappings between two ontologies and allows combining different match approaches.
机译:背景技术本体越来越多地用于结构化和语义化地描述域的实体,例如生命科学中的基因和蛋白质。它们的规模越来越大,更新的频率高,导致存在大量的本体版本,因此有必要对此数据进行有效的管理和分析。结果我们介绍了GOMMA,这是用于管理和分析生命科学本体及其演化的通用基础结构。 GOMMA利用通用存储库统一有效地管理本体版本和各种映射。此外,它提供了用于本体匹配和确定进化本体更改的组件。这些组件由分析工具使用,例如Ontology Evolution Explorer(OnEX)和不稳定本体区域的检测。我们介绍了基于组件的基础架构,并显示了选定组件和生命科学应用程序的分析结果。 GOMMA可从http://dbs.uni-leipzig.de/GOMMA网站获得。结论GOMMA提供了一个全面且可扩展的基础架构来管理大型生命科学本体并分析其发展。关键功能包括本体版本和映射的通用存储,对本体匹配和确定本体更改的支持。用于分析本体更改的受支持功能有助于评估其对依赖本体的应用程序(例如术语丰富)的影响。 GOMMA通过提供管理两种本体之间各种映射版本的功能来补充OnEX,并允许组合不同的匹配方法。

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