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中文摘要
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描述(由申请人提供):阅读关于任何神经退行性疾病的文献,很快就会发现一系列令人困惑的事实,有些事实是相互矛盾的,关于疾病的已知病理学和临床特征之间的相关性。为了帮助解开疾病,如帕金森氏症和脑缺血的多方面的尺寸,我们描述了一个正式的系统,代表人类神经系统疾病和动物模型的特点,以促进对疾病机制的理解,并提供一个更严格的方法来比较模型系统和人类疾病。国家生物医学本体中心(NCBO),国家显微镜和成像研究中心和生物医学信息学研究网络项目之间的合作将开发工具,在本体,分布式数据库和图像中包含的信息之间架起桥梁。这项工作建立在NCBO努力开发表型和性状本体的基础上,用于以机器可处理的形式表达复杂的表型,以便可以采用强大的算法来寻找数据中的相关性和有趣的模式。将开发用于注释帕金森病和短暂性脑缺血动物模型的复杂特征的本体论,并将其应用于多尺度成像数据的分析。该本体将提供执行基于本体的图像分析和跨尺度的表型相关性的手段。该项目形成了NCBO的一个驱动生物学项目,将对多个空间和时间尺度的基于本体的分析的需求带入NCBO正在开发的框架中,同时将本体和数据贡献到由NCBO策划的开放生物本体和数据存储库中。该提案的一个核心组成部分是开发一个基于本体的集成环境,以帮助科学家了解观察到的数据和收集到的有关帕金森氏症等神经系统疾病的知识之间的深层相互关系。因此,拟议的工作与NCBO的既定目标直接一致:创建,访问和浏览相关本体;使用本体来注释实验数据集;访问并从注释数据中得出推论;以及模型系统和人类疾病之间的桥梁。尽管作为本提案的一部分开发的工具将在特定的驱动生物项目的背景下开发,但它们将广泛适用于其他成像。
英文摘要
DESCRIPTION (provided by applicant): Reading the literature on any neurodegenerative condition quickly leads to a bewildering array of facts, some contradictory, regarding the correlations between known pathological and clinical features of the disease. To help unravel the multifaceted dimensions of diseases such as Parkinsonian disorders and cerebral ischemia, we describe a formal system for representing the characteristics of human neurological disease and animal models to promote understanding of disease mechanisms and to provide a more rigorous method to compare model systems and human disease. This collaboration between the National Center for Biomedical Ontologies (NCBO), the National Center for Microscopy and Imaging Research and the Biomedical Informatics Research Network project will develop tools that bridge between information contained in ontologies, distributed databases and images. This work builds upon efforts at NCBO to develop a Phenotype and Trait Ontology for expression of complex phenotypes in a machine-processable form, so that powerful algorithms can be employed to look for correlations and interesting patterns in the data. Ontologies for annotation of complex traits from animal models of Parkinsonian disorders and transient cerebral ischemia will be developed and applied to an analysis of multiscale imaging data. This ontology will provide the means to perform ontology-based image analysis and correlation of phenotypes across scales. This project forms a driving biological project for NCBO, bringing the need for ontology-based analysis of multiple spatial and temporal scales into the frameworks under development at NCBO, while at the same time contributing ontologies and data into the Open Biological Ontologies and Data repositories curated by NCBO. A core component of the proposal is the development of an integrated ontology-based environment for the that will help the scientist to understand the deep interrelationships among observed data and collected knowledge about neurological diseases such as Parkinson's. The proposed work thus aligns directly with the stated objectives of NCBO: create, access and browse relevant ontologies; use ontologies to annotate experimental datasets; access and draw inferences from the annotated data; and bridge between model systems and human disease. Eventhough tools developed as part of this proposal will be developed in the context of a specific driving biological project they will be broadly applicable to other imaging
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