首页> 外文期刊>Theoretical Biology and Medical Modelling >PDON: Parkinson’s disease ontology for representation and modeling of the Parkinson’s disease knowledge domain
【24h】

PDON: Parkinson’s disease ontology for representation and modeling of the Parkinson’s disease knowledge domain

机译:PDON:帕金森氏病本体论,用于帕金森氏病知识领域的表示和建模

获取原文
获取外文期刊封面目录资料

摘要

Background Despite the unprecedented and increasing amount of data, relatively little progress has been made in molecular characterization of mechanisms underlying Parkinson’s disease. In the area of Parkinson’s research, there is a pressing need to integrate various pieces of information into a meaningful context of presumed disease mechanism(s). Disease ontologies provide a novel means for organizing, integrating, and standardizing the knowledge domains specific to disease in a compact, formalized and computer-readable form and serve as a reference for knowledge exchange or systems modeling of disease mechanism. Methods The Parkinson’s disease ontology was built according to the life cycle of ontology building. Structural, functional, and expert evaluation of the ontology was performed to ensure the quality and usability of the ontology. A novelty metric has been introduced to measure the gain of new knowledge using the ontology. Finally, a cause-and-effect model was built around PINK1 and two gene expression studies from the Gene Expression Omnibus database were re-annotated to demonstrate the usability of the ontology. Results The Parkinson’s disease ontology with a subclass-based taxonomic hierarchy covers the broad spectrum of major biomedical concepts from molecular to clinical features of the disease, and also reflects different views on disease features held by molecular biologists, clinicians and drug developers. The current version of the ontology contains 632 concepts, which are organized under nine views. The structural evaluation showed the balanced dispersion of concept classes throughout the ontology. The functional evaluation demonstrated that the ontology-driven literature search could gain novel knowledge not present in the reference Parkinson’s knowledge map. The ontology was able to answer specific questions related to Parkinson’s when evaluated by experts. Finally, the added value of the Parkinson’s disease ontology is demonstrated by ontology-driven modeling of PINK1 and re-annotation of gene expression datasets relevant to Parkinson’s disease. Conclusions Parkinson’s disease ontology delivers the knowledge domain of Parkinson’s disease in a compact, computer-readable form, which can be further edited and enriched by the scientific community and also to be used to construct, represent and automatically extend Parkinson’s-related computable models. A practical version of the Parkinson’s disease ontology for browsing and editing can be publicly accessed at http://bioportal.bioontology.org/ontologies/PDON .
机译:背景技术尽管有史无前例且不断增加的数据量,但在帕金森氏病潜在机制的分子表征方面,进展相对较小。在帕金森氏症的研究领域,迫切需要将各种信息整合到有意义的假定疾病机制中。疾病本体提供了一种新颖的方法,可以以紧凑,形式化和计算机可读的形式组织,整合和标准化特定于疾病的知识领域,并可以作为疾病机理的知识交换或系统建模的参考。方法根据本体构建的生命周期建立帕金森氏病本体。对本体进行结构,功能和专家评估,以确保本体的质量和可用性。引入了新颖性度量以使用本体来度量新知识的获得。最后,围绕PINK1建立了因果模型,并重新注释了来自Gene Expression Omnibus数据库的两项基因表达研究,以证明本体的可用性。结果帕金森病的疾病本体具有基于子类的分类体系,涵盖了从疾病的分子特征到临床特征的广泛的主要生物医学概念,并且还反映了分子生物学家,临床医生和药物开发商对疾病特征的不同看法。当前版本的本体包含632个概念,这些概念按照9个视图进行组织。结构评估显示概念类在整个本体中的均衡分散。功能评估表明,本体论驱动的文献搜索可以获取参考帕金森知识地图中不存在的新颖知识。经过专家评估,该本体论能够回答与帕金森氏症有关的特定问题。最后,通过本体驱动的PINK1建模和与帕金森氏病相关的基因表达数据集的重新注释,证明了帕金森氏病本体的附加价值。结论帕金森氏病本体以紧凑的计算机可读形式提供了帕金森氏病的知识领域,科学界可以对其进行进一步的编辑和丰富,还可以用于构建,表示和自动扩展帕金森氏相关的可计算模型。可以在http://bioportal.bioontology.org/ontologies/PDON上公开访问实用的帕金森氏病本体版本,以进行浏览和编辑。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号