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用于虚拟生理人体的表示分子实体的知识环境。

Knowledge environments representing molecular entities for the virtual physiological human.

作者信息

Hofmann-Apitius Martin, Fluck Juliane, Furlong Laura, Fornes Oriol, Kolárik Corinna, Hanser Susanne, Boeker Martin, Schulz Stefan, Sanz Ferran, Klinger Roman, Mevissen Theo, Gattermayer Tobias, Oliva Baldo, Friedrich Christoph M

机构信息

Bonn-Aachen International Center for Information Technology, University of Bonn, Dahlmannstrasse 2, 53113 Bonn, Germany.

出版信息

Philos Trans A Math Phys Eng Sci. 2008 Sep 13;366(1878):3091-110. doi: 10.1098/rsta.2008.0099.

Abstract

In essence, the virtual physiological human (VPH) is a multiscale representation of human physiology spanning from the molecular level via cellular processes and multicellular organization of tissues to complex organ function. The different scales of the VPH deal with different entities, relationships and processes, and in consequence the models used to describe and simulate biological functions vary significantly. Here, we describe methods and strategies to generate knowledge environments representing molecular entities that can be used for modelling the molecular scale of the VPH. Our strategy to generate knowledge environments representing molecular entities is based on the combination of information extraction from scientific text and the integration of information from biomolecular databases. We introduce @neuLink, a first prototype of an automatically generated, disease-specific knowledge environment combining biomolecular, chemical, genetic and medical information. Finally, we provide a perspective for the future implementation and use of knowledge environments representing molecular entities for the VPH.

摘要

本质上,虚拟生理人(VPH)是人类生理学的多尺度表示,涵盖从分子水平经由细胞过程、组织的多细胞组织到复杂器官功能。VPH的不同尺度涉及不同的实体、关系和过程,因此用于描述和模拟生物学功能的模型差异很大。在这里,我们描述了生成表示分子实体的知识环境的方法和策略,这些知识环境可用于对VPH的分子尺度进行建模。我们生成表示分子实体的知识环境的策略基于从科学文本中提取信息与整合来自生物分子数据库的信息相结合。我们引入了@neuLink,这是一个自动生成的、特定疾病的知识环境的首个原型,它结合了生物分子、化学、遗传和医学信息。最后,我们为未来实现和使用表示VPH分子实体的知识环境提供了一个展望。

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