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BOAT: Automatic alignment of biomedical ontologies using term informativeness and candidate selection

机译:船:使用术语信息和候选者选择自动对齐生物医学本体

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摘要

The biomedical sciences is one of the few domains where ontologies are widely being developed to facilitate information retrieval and knowledge sharing, but there still remains the problem that applications using different ontologies cannot share knowledge without explicit references between overlapping concepts. Ontology alignment is the task of identifying such equivalence relations between concepts across ontologies. Its application to the biomedical domain should address two open issues: (1) determining the equivalence of concept-pairs which have overlapping terms in their names, and (2) the high run-time required to align large ontologies which are typical in the biomedical domain. To address them, we present a novel approach, named the Biomedical Ontologies Alignment Technique (. BOAT), which is state-of-the-art in terms of F-measure, precision and speed. A key feature of BOAT is that it considers the informativeness of each component word in the concept labels, which has significant impact on biomedical ontologies, resulting in a 12.2% increase in F-measure. Another important feature of BOAT is that it selects for comparison only concept pairs that show high likelihoods of equivalence, based on the similarity of their annotations. BOAT's F-measure of 0.88 for the alignment of the mouse and human anatomy ontologies is on par with that of another state-of-the-art matcher, AgreementMaker, while taking a shorter time.
机译:生物医学科学是为方便信息检索和知识共享而广泛开发本体论的少数领域之一,但是仍然存在一个问题,即使用不同本体论的应用程序无法在没有重叠概念之间明确引用的情况下共享知识。本体一致性是确定跨本体概念之间的等价关系的任务。它在生物医学领域的应用应解决两个悬而未决的问题:(1)确定名称对中具有重叠术语的概念对的等价性;(2)对齐生物医学中典型的大型本体所需的运行时间长域。为了解决这些问题,我们提出了一种新颖的方法,称为生物医学本体对齐技术(。BOAT),它在F量度,精度和速度方面都是最先进的。 BOAT的主要功能是考虑概念标签中每个组成词的信息性,这对生物医学本体有重大影响,导致F量度增加12.2%。 BOAT的另一个重要特征是,基于注释的相似性,它仅选择显示对等可能性很高的概念对进行比较。 BOAT的0.88的F量度用于对齐鼠标和人体解剖学本体,与另一个最先进的匹配器AgreementMaker相比,耗时更短。

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