Lee Yugyung, Geller James
Department of Computer Science and Informatics, School of Computing and Engineering, University of Missouri, Kansas City, MO 64110, USA.
J Biomed Inform. 2006 Apr;39(2):209-26. doi: 10.1016/j.jbi.2005.08.001. Epub 2005 Sep 9.
The Unified Medical Language System (UMLS) contains two separate but interconnected knowledge structures, the Semantic Network (upper level) and the Metathesaurus (lower level). In this paper, we have attempted to work out better how the use of such a two-level structure in the medical field has led to notable advances in terminologies and ontologies. However, most ontologies and terminologies do not have such a two-level structure. Therefore, we present a method, called semantic enrichment, which generates a two-level ontology from a given one-level terminology and an auxiliary two-level ontology. During semantic enrichment, concepts of the one-level terminology are assigned to semantic types, which are the building blocks of the upper level of the auxiliary two-level ontology. The result of this process is the desired new two-level ontology. We discuss semantic enrichment of two example terminologies and how we approach the implementation of semantic enrichment in the medical domain. This implementation performs a major part of the semantic enrichment process with the medical terminologies, with difficult cases left to a human expert.
统一医学语言系统(UMLS)包含两个独立但相互关联的知识结构,即语义网络(上层)和元词表(下层)。在本文中,我们试图更好地探究在医学领域中使用这种两级结构如何在术语和本体方面取得显著进展。然而,大多数本体和术语并不具有这种两级结构。因此,我们提出了一种称为语义丰富的方法,该方法从给定的一级术语和辅助两级本体生成两级本体。在语义丰富过程中,一级术语的概念被分配到语义类型,这些语义类型是辅助两级本体上层的构建块。这个过程的结果就是所需的新两级本体。我们讨论了两个示例术语的语义丰富以及我们在医学领域实现语义丰富的方法。此实现使用医学术语执行语义丰富过程的主要部分,困难情况则留给人类专家处理。