Groza Tudor, Hunter Jane, Zankl Andreas
School of ITEE, The University of Queensland, Australia.
Biomed Inform Insights. 2013;6:1-14. doi: 10.4137/BII.S10729. Epub 2013 Feb 4.
Over the course of the last few years there has been a significant amount of research performed on ontology-based formalization of phenotype descriptions. The intrinsic value and knowledge captured within such descriptions can only be expressed by taking advantage of their inner structure that implicitly combines qualities and anatomical entities. We present a meta-model (the Phenotype Fragment Ontology) and a processing pipeline that enable together the automatic decomposition and conceptualization of phenotype descriptions for the human skeletal phenome. We use this approach to showcase the usefulness of the generic concept of phenotype decomposition by performing an experimental study on all skeletal phenotype concepts defined in the Human Phenotype Ontology.
在过去几年中,针对基于本体的表型描述形式化开展了大量研究。此类描述中所蕴含的内在价值和知识,只有通过利用其内在结构才能得以表达,该内在结构隐含地结合了特征与解剖实体。我们提出了一个元模型(表型片段本体)和一个处理流程,它们共同实现了对人类骨骼表型组的表型描述进行自动分解和概念化。我们通过对人类表型本体中定义的所有骨骼表型概念进行实验研究,利用这种方法来展示表型分解这一通用概念的实用性。