Suppr超能文献

通过在OQuaRE中结合静态和动态缩放函数来支持本体演化过程的分析。

Supporting the analysis of ontology evolution processes through the combination of static and dynamic scaling functions in OQuaRE.

作者信息

Duque-Ramos Astrid, Quesada-Martínez Manuel, Iniesta-Moreno Miguela, Fernández-Breis Jesualdo Tomás, Stevens Robert

机构信息

Universidad de Murcia, IMIB-Arrixaca, Campus de Espinardo, Murcia, 30071, Spain.

School of Computer Science, University of Manchester, Oxford Road, Manchester, M13 9PL, UK.

出版信息

J Biomed Semantics. 2016 Oct 17;7(1):63. doi: 10.1186/s13326-016-0091-z.

Abstract

BACKGROUND

The biomedical community has now developed a significant number of ontologies. The curation of biomedical ontologies is a complex task and biomedical ontologies evolve rapidly, so new versions are regularly and frequently published in ontology repositories. This has the implication of there being a high number of ontology versions over a short time span. Given this level of activity, ontology designers need to be supported in the effective management of the evolution of biomedical ontologies as the different changes may affect the engineering and quality of the ontology. This is why there is a need for methods that contribute to the analysis of the effects of changes and evolution of ontologies.

RESULTS

In this paper we approach this issue from the ontology quality perspective. In previous work we have developed an ontology evaluation framework based on quantitative metrics, called OQuaRE. Here, OQuaRE is used as a core component in a method that enables the analysis of the different versions of biomedical ontologies using the quality dimensions included in OQuaRE. Moreover, we describe and use two scales for evaluating the changes between the versions of a given ontology. The first one is the static scale used in OQuaRE and the second one is a new, dynamic scale, based on the observed values of the quality metrics of a corpus defined by all the versions of a given ontology (life-cycle). In this work we explain how OQuaRE can be adapted for understanding the evolution of ontologies. Its use has been illustrated with the ontology of bioinformatics operations, types of data, formats, and topics (EDAM).

CONCLUSIONS

The two scales included in OQuaRE provide complementary information about the evolution of the ontologies. The application of the static scale, which is the original OQuaRE scale, to the versions of the EDAM ontology reveals a design based on good ontological engineering principles. The application of the dynamic scale has enabled a more detailed analysis of the evolution of the ontology, measured through differences between versions. The statistics of change based on the OQuaRE quality scores make possible to identify key versions where some changes in the engineering of the ontology triggered a change from the OQuaRE quality perspective. In the case of the EDAM, this study let us to identify that the fifth version of the ontology has the largest impact in the quality metrics of the ontology, when comparative analyses between the pairs of consecutive versions are performed.

摘要

背景

生物医学领域现已开发出大量本体。生物医学本体的管理是一项复杂任务,且生物医学本体发展迅速,因此新版本会定期且频繁地发布在本体知识库中。这意味着在短时间内会有大量的本体版本。鉴于此活跃程度,本体设计者在有效管理生物医学本体的演变方面需要得到支持,因为不同的变化可能会影响本体的工程设计和质量。这就是为什么需要有助于分析本体变化和演变影响的方法。

结果

在本文中,我们从本体质量的角度来探讨这个问题。在之前的工作中,我们开发了一个基于定量指标的本体评估框架,称为OQuaRE。在此,OQuaRE被用作一种方法的核心组件,该方法能够使用OQuaRE中包含的质量维度来分析生物医学本体的不同版本。此外,我们描述并使用了两种尺度来评估给定本体不同版本之间的变化。第一种是OQuaRE中使用的静态尺度,第二种是基于给定本体(生命周期)所有版本定义的语料库质量指标观测值的新的动态尺度。在这项工作中,我们解释了如何调整OQuaRE以理解本体的演变。通过生物信息学操作、数据类型、格式和主题(EDAM)本体说明了它的使用。

结论

OQuaRE中包含的两种尺度提供了关于本体演变的补充信息。原始的OQuaRE尺度即静态尺度应用于EDAM本体的版本,揭示了基于良好本体工程原则的设计。动态尺度的应用使得能够通过版本之间的差异对本体演变进行更详细的分析。基于OQuaRE质量得分的变化统计使得能够识别关键版本——在这些版本中,本体工程设计的某些变化从OQuaRE质量角度引发了改变。就EDAM而言,当对连续版本对进行比较分析时,本研究让我们确定本体的第五个版本对本体的质量指标影响最大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/688e/5067895/73dda417f395/13326_2016_91_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验