Köhler Jacob, Schulze-Kremer Steffen
University Bielefeld, Germany.
In Silico Biol. 2002;2(3):219-31.
A system for "intelligent" semantic integration and querying of federated databases is being implemented by using three main components: A component which enables SQL access to integrated databases by database federation (MARGBench), an ontology based semantic metadatabase (SEMEDA) and an ontology based query interface (SEMEDA-query). In this publication we explain and demonstrate the principles, architecture and the use of SEMEDA. Since SEMEDA is implemented as 3 tiered web application database providers can enter all relevant semantic and technical information about their databases by themselves via a web browser. SEMEDA' s collaborative ontology editing feature is not restricted to database integration, and might also be useful for ongoing ontology developments, such as the "Gene Ontology" [2]. SEMEDA can be found at http://www-bm.cs.uni-magdeburg.de/semeda/. We explain how this ontologically structured information can be used for semantic database integration. In addition, requirements to ontologies for molecular biological database integration are discussed and relevant existing ontologies are evaluated. We further discuss how ontologies and structured knowledge sources can be used in SEMEDA and whether they can be merged supplemented or updated to meet the requirements for semantic database integration.
一个用于联合数据库“智能”语义集成和查询的系统正在通过使用三个主要组件来实现:一个通过数据库联合实现对集成数据库进行SQL访问的组件(MARGBench)、一个基于本体的语义元数据库(SEMEDA)和一个基于本体的查询接口(SEMEDA-query)。在本出版物中,我们解释并演示了SEMEDA的原理、架构和用法。由于SEMEDA被实现为三层Web应用程序,数据库提供者可以通过Web浏览器自行输入有关其数据库的所有相关语义和技术信息。SEMEDA的协作本体编辑功能不仅限于数据库集成,对于正在进行的本体开发(如“基因本体”[2])可能也很有用。可在http://www-bm.cs.uni-magdeburg.de/semeda/找到SEMEDA。我们解释了这种本体结构化信息如何用于语义数据库集成。此外,还讨论了分子生物学数据库集成对本体的要求,并对相关的现有本体进行了评估。我们进一步讨论了本体和结构化知识源如何在SEMEDA中使用,以及它们是否可以合并、补充或更新以满足语义数据库集成的要求。