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语义感知实验室:在神经科学中实现语义网的愿景。

Semantic SenseLab: Implementing the vision of the Semantic Web in neuroscience.

机构信息

Center for Medical Informatics, Yale University School of Medicine, New Haven, CT 06520-8009, USA.

出版信息

Artif Intell Med. 2010 Jan;48(1):21-8. doi: 10.1016/j.artmed.2009.11.003. Epub 2009 Dec 16.

Abstract

OBJECTIVE

Integrative neuroscience research needs a scalable informatics framework that enables semantic integration of diverse types of neuroscience data. This paper describes the use of the Web Ontology Language (OWL) and other Semantic Web technologies for the representation and integration of molecular-level data provided by several of SenseLab suite of neuroscience databases.

METHODS

Based on the original database structure, we semi-automatically translated the databases into OWL ontologies with manual addition of semantic enrichment. The SenseLab ontologies are extensively linked to other biomedical Semantic Web resources, including the Subcellular Anatomy Ontology, Brain Architecture Management System, the Gene Ontology, BIRNLex and UniProt. The SenseLab ontologies have also been mapped to the Basic Formal Ontology and Relation Ontology, which helps ease interoperability with many other existing and future biomedical ontologies for the Semantic Web. In addition, approaches to representing contradictory research statements are described. The SenseLab ontologies are designed for use on the Semantic Web that enables their integration into a growing collection of biomedical information resources.

CONCLUSION

We demonstrate that our approach can yield significant potential benefits and that the Semantic Web is rapidly becoming mature enough to realize its anticipated promises. The ontologies are available online at http://neuroweb.med.yale.edu/senselab/.

摘要

目的

综合神经科学研究需要一个可扩展的信息学框架,使不同类型的神经科学数据能够实现语义集成。本文介绍了使用 Web 本体语言(OWL)和其他语义 Web 技术来表示和集成 SenseLab 神经科学数据库套件提供的分子水平数据。

方法

基于原始数据库结构,我们通过手动添加语义丰富度半自动地将数据库转换为 OWL 本体。SenseLab 本体与其他生物医学语义 Web 资源广泛链接,包括细胞内解剖本体、大脑架构管理系统、基因本体、BIRNLex 和 UniProt。SenseLab 本体也已映射到基本形式本体和关系本体,这有助于与许多其他现有的和未来的语义 Web 生物医学本体实现互操作性。此外,还描述了表示矛盾研究声明的方法。SenseLab 本体旨在在语义 Web 上使用,使其能够集成到不断增长的生物医学信息资源集合中。

结论

我们证明了我们的方法可以带来重大的潜在益处,并且语义 Web 已经迅速成熟到可以实现其预期的承诺。本体可在线获取,网址为 http://neuroweb.med.yale.edu/senselab/。

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本文引用的文献

1
Approaches to neuroscience data integration.神经科学数据整合方法。
Brief Bioinform. 2009 Jul;10(4):345-53. doi: 10.1093/bib/bbp029.
3
4
Advancing translational research with the Semantic Web.利用语义网推进转化医学研究。
BMC Bioinformatics. 2007 May 9;8 Suppl 3(Suppl 3):S2. doi: 10.1186/1471-2105-8-S3-S2.
6
Brain architecture management system.脑架构管理系统
Neuroinformatics. 2005;3(1):15-48. doi: 10.1385/NI:3:1:015.
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Relations in biomedical ontologies.生物医学本体中的关系。
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