Systems biology and the virtual physiological human
File(s)Systems biology and the virtual physiological human.pdf (910.2 KB)
Published version
Author(s)
Kohl, P
Noble, D
Type
Journal Article
Abstract
The virtual physiological human (VPH) initiative is intended to support the development of patient‐specific computer models and their application in personalised and predictive healthcare. The VPH, a core target of the European Commission's 7th Framework Programme, will serve as a ‘methodological and technological framework that, once established, will enable collaborative investigation of the human body as a single complex system’ (http://www.europhysiome.org/roadmap/). As such, the VPH initiative constitutes an integral part of the international Physiome Project (http://www.physiome.org.nz/), a worldwide public domain effort to develop a computational framework for the quantitative description of biological processes in living systems across all relevant levels of structural and functional integration, from molecule to organism, including the human (Kohl et al, 2000; Bassingthwaighte et al, 2009).
So, what is the connection between this grand challenge and systems biology? To explore this, we must first agree on what we take systems biology to mean.
So, what is the connection between this grand challenge and systems biology? To explore this, we must first agree on what we take systems biology to mean.
Date Issued
2009-07-28
Date Acceptance
2009-07-01
Citation
Molecular Systems Biology, 2009, 10
ISSN
1744-4292
Publisher
European Molecular Biology Organization
Journal / Book Title
Molecular Systems Biology
Volume
10
Copyright Statement
© 2009 EMBO and Macmillan Publishers Limited. Molecular Systems Biology is an open-access journal
published by European Molecular Biology Organization and Nature Publishing Group.
This article is licensed under a Creative Commons AttributionNoncommercial-Share Alike 3.0 Licence.
published by European Molecular Biology Organization and Nature Publishing Group.
This article is licensed under a Creative Commons AttributionNoncommercial-Share Alike 3.0 Licence.
Identifier
https://www.embopress.org/doi/full/10.1038/msb.2009.51
Subjects
Science & Technology
Life Sciences & Biomedicine
Biochemistry & Molecular Biology
SPONTANEOUS PACEMAKER ACTIVITY
SCALE RELATIVITY THEORY
OPEN RESOURCE COR
AXIAL STRETCH
ION CHANNELS
MODELS
HEART
TOOLS
ELECTROPHYSIOLOGY
GENERATION
Science & Technology
Life Sciences & Biomedicine
Biochemistry & Molecular Biology
Cell Biology
SPONTANEOUS PACEMAKER ACTIVITY
SCALE RELATIVITY THEORY
SINOATRIAL NODE CELLS
OPEN RESOURCE COR
EXCITATION-CONTRACTION
AXIAL STRETCH
ION CHANNELS
MODELS
HEART
TOOLS
Humans
Models, Biological
Systems Biology
Humans
Systems Biology
Models, Biological
0601 Biochemistry and Cell Biology
0699 Other Biological Sciences
Bioinformatics
Notes
Kohl, Peter Noble, Denis
Publication Status
Published
Article Number
292
Date Publish Online
2009-07-28