Hoehndorf Robert, Ngonga Ngomo Axel-Cyrille, Kelso Janet
Institute for Medical Informatics, Statistics and Epidemiology, University of Leipzig, Leipzig, Germany.
J Biomed Semantics. 2010 Mar 31;1(1):4. doi: 10.1186/2041-1480-1-4.
Several biomedical ontologies cover the domain of biological functions, including molecular and cellular functions. However, there is currently no publicly available ontology of anatomical functions.Consequently, no explicit relation between anatomical structures and their functions is expressed in the anatomy ontologies that are available for various species. Such an explicit relation between anatomical structures and their functions would be useful both for defining the classes of the anatomy and the phenotype ontologies accurately.
We provide an ontological analysis of functions and functional abnormalities. From this analysis, we derive an approach to the automatic extraction of anatomical functions from existing ontologies which uses a combination of natural language processing, graph-based analysis of the ontologies and formal inferences. Additionally, we introduce a new relation to link material objects to processes that realize the function of these objects. This relation is introduced to avoid a needless duplication of processes already covered by the Gene Ontology in a new ontology of anatomical functions.
Ontological considerations on the nature of functional abnormalities and their representation in current phenotype ontologies show that we can extract a skeleton for an ontology of anatomical functions by using a combination of process, phenotype and anatomy ontologies automatically. We identify several limitations of the current ontologies that still need to be addressed to ensure a consistent and complete representation of anatomical functions and their abnormalities.
The source code and results of our analysis are available at http://bioonto.de.
有几种生物医学本体涵盖了生物功能领域,包括分子和细胞功能。然而,目前尚无公开可用的解剖学功能本体。因此,在可用于各种物种的解剖学本体中,未表达解剖结构与其功能之间的明确关系。解剖结构与其功能之间的这种明确关系对于准确定义解剖学和表型本体的类别都将是有用的。
我们提供了对功能和功能异常的本体分析。通过该分析,我们得出了一种从现有本体中自动提取解剖学功能的方法,该方法结合了自然语言处理、基于图的本体分析和形式推理。此外,我们引入了一种新的关系,将物质对象与实现这些对象功能的过程联系起来。引入这种关系是为了避免在新的解剖学功能本体中不必要地重复基因本体已经涵盖的过程。
对功能异常的性质及其在当前表型本体中的表示的本体考虑表明,我们可以通过自动结合过程、表型和解剖学本体来提取解剖学功能本体的框架。我们确定了当前本体的几个局限性,仍需要解决这些局限性以确保解剖学功能及其异常的一致和完整表示。
我们分析的源代码和结果可在http://bioonto.de获得。