Knowledge environments representing molecular entities for the virtual physiological human

Author:

Hofmann-Apitius Martin12,Fluck Juliane2,Furlong Laura3,Fornes Oriol3,Kolářik Corinna2,Hanser Susanne4,Boeker Martin4,Schulz Stefan4,Sanz Ferran3,Klinger Roman2,Mevissen Theo2,Gattermayer Tobias2,Oliva Baldo3,Friedrich Christoph M2

Affiliation:

1. Bonn-Aachen International Center for Information Technology (B-IT), University of BonnDahlmannstrasse 2, 53113 Bonn, Germany

2. Fraunhofer Institute for Algorithms and Scientific Computing (SCAI), Institutszentrum Birlinghoven53754 Sankt Augustin, Germany

3. Institut Municipal D'Investigació Mèdica (IMIM), Universitat Pompeu FabraC/Doctor Aiguader 88, Barcelona 08003, Catalonia, Spain

4. Universitätsklinikum FreiburgHugstetter Straße 49, 79095 Freiburg, Germany

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.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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