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多种本体在行动:生物模拟模型的组合注释。

Multiple ontologies in action: composite annotations for biosimulation models.

机构信息

Department of Biomedical & Health Informatics, University of Washington, USA.

出版信息

J Biomed Inform. 2011 Feb;44(1):146-54. doi: 10.1016/j.jbi.2010.06.007. Epub 2010 Jun 30.

Abstract

There now exists a rich set of ontologies that provide detailed semantics for biological entities of interest. However, there is not (nor should there be) a single source ontology that provides all the necessary semantics for describing biological phenomena. In the domain of physiological biosimulation models, researchers use annotations to convey semantics, and many of these annotations require the use of multiple reference ontologies. Therefore, we have developed the idea of composite annotations that access multiple ontologies to capture the physics-based meaning of model variables. These composite annotations provide the semantic expressivity needed to disambiguate the often-complex features of biosimulation models, and can be used to assist with model merging and interoperability. In this paper, we demonstrate the utility of composite annotations for model merging by describing their use within SemGen, our semantics-based model composition software. More broadly, if orthogonal reference ontologies are to meet their full potential, users need tools and methods to connect and link these ontologies. Our composite annotations and the SemGen tool provide one mechanism for leveraging multiple reference ontologies.

摘要

现在已经存在丰富的本体,可以为感兴趣的生物实体提供详细的语义。但是,(也不应该有)一个单一的本体提供描述生物现象所需的所有必要语义。在生理生物仿真模型领域,研究人员使用注释来传达语义,并且许多注释需要使用多个参考本体。因此,我们提出了组合注释的想法,这些注释可以访问多个本体以捕获模型变量的基于物理的含义。这些组合注释提供了区分生物仿真模型的复杂特征所需的语义表达能力,并可用于协助模型合并和互操作性。在本文中,我们通过描述其在我们的基于语义的模型组合软件 SemGen 中的使用,展示了组合注释在模型合并中的实用性。更广泛地说,如果正交参考本体要充分发挥其潜力,用户需要连接和链接这些本体的工具和方法。我们的组合注释和 SemGen 工具提供了利用多个参考本体的一种机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a30f/2989341/153ab540776c/nihms224440f1.jpg

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