Human and Molecular Genetics Center, Medical College of Wisconsin Milwaukee, WI, USA.
Front Genet. 2012 May 28;3:87. doi: 10.3389/fgene.2012.00087. eCollection 2012.
There is an increasing need to integrate phenotype measurement data across studies for both human studies and those involving model organisms. Current practices allow researchers to access only those data involved in a single experiment or multiple experiments utilizing the same protocol.
Three ontologies were created: Clinical Measurement Ontology, Measurement Method Ontology and Experimental Condition Ontology. These ontologies provided the framework for integration of rat phenotype data from multiple studies into a single resource as well as facilitated data integration from multiple human epidemiological studies into a centralized repository.
An ontology based framework for phenotype measurement data affords the ability to successfully integrate vital phenotype data into critical resources, regardless of underlying technological structures allowing the user to easily query and retrieve data from multiple studies.
无论是人类研究还是涉及模式生物的研究,都越来越需要整合表型测量数据。目前的实践仅允许研究人员访问单个实验或使用相同方案的多个实验中涉及的数据。
创建了三个本体:临床测量本体、测量方法本体和实验条件本体。这些本体为将来自多个研究的大鼠表型数据整合到单个资源中提供了框架,并促进了来自多个人类流行病学研究的数据整合到中央存储库中。
基于本体的表型测量数据框架能够成功地将重要的表型数据整合到关键资源中,而无需考虑底层技术结构,使用户能够轻松地从多个研究中查询和检索数据。