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000821621 150__ $$aA Centre of Excellence in Computational Biomedicine$$y2016-10-01 - 2019-09-30
000821621 371__ $$aUniversity of Sheffield$$bUniversity of Sheffield$$dUnited Kingdom$$ehttp://www.sheffield.ac.uk/$$vCORDIS
000821621 371__ $$aLIFETEC GROUP BV$$bLIFETEC GROUP$$dNetherlands$$vCORDIS
000821621 371__ $$aTHE CHANCELLOR, MASTERS AND SCHOLARS OF THE UNIVERSITY OF OXFORD$$bUOXF$$dUnited Kingdom$$ehttp://www.ox.ac.uk$$vCORDIS
000821621 371__ $$aEdinburgh Napier University$$bEdinburgh Napier University$$dUnited Kingdom$$ehttp://www.napier.ac.uk/alumni/Pages/home.aspx$$vCORDIS
000821621 371__ $$aCBK SCI CON LIMITED$$dUnited Kingdom$$ehttp://www.cbkscicon.com$$vCORDIS
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000821621 371__ $$aEVOTEC AG*$$dGermany$$vCORDIS
000821621 371__ $$aUniversity of London - University College London$$bUCL$$dUnited Kingdom$$ehttp://www.ucl.ac.uk/$$vCORDIS
000821621 371__ $$aJANSSEN PHARMACEUTICA NV$$dBelgium$$ehttp://www.janssen.com/$$vCORDIS
000821621 371__ $$aReprotec UK Limited$$dUnited Kingdom$$vCORDIS
000821621 371__ $$aBULL SAS$$bBULL$$dFrance$$ehttp://www.bull.com$$vCORDIS
000821621 371__ $$aSURFSARA BV$$dNetherlands$$ehttp://www.sara.nl$$vCORDIS
000821621 371__ $$aUniversity of Geneva$$bUNIGE$$dSwitzerland$$ehttps://www.unige.ch/$$vCORDIS
000821621 371__ $$aPompeu Fabra University$$bUPF$$dSpain$$ehttp://www.upf.edu/en/$$vCORDIS
000821621 371__ $$aBARCELONA SUPERCOMPUTING CENTER - CENTRO NACIONAL DE SUPERCOMPUTACION$$bBSC$$dSpain$$ehttp://www.bsc.es$$vCORDIS
000821621 371__ $$aVU University Amsterdam$$bVU$$dNetherlands$$ehttp://www.vu.nl/en/$$vCORDIS
000821621 372__ $$aH2020-EINFRA-2015-1$$s2016-10-01$$t2019-09-30
000821621 450__ $$aCompBioMed$$wd$$y2016-10-01 - 2019-09-30
000821621 5101_ $$0I:(DE-588b)5098525-5$$2CORDIS$$aEuropean Union
000821621 680__ $$aThis Centre of Excellence will advance the role of computationally based modelling and simulation within biomedicine. Three related user communities lie at the heart of the CoE: academic, industrial and clinical researchers who all wish to build, develop and extend such capabilities in line with the increasing power of high performance computers. Three distinct exemplar research areas will be pursued: cardiovascular, molecularly-based and neuro-musculoskeletal medicine.
Predictive computational biomedicine involves applications that are comprised of multiple components, arranged as far as possible into automated workflows in which data is taken, from an individual patient, processed, and combined into a model which produces predicted health outcomes. Many of the models are multiscale, requiring the coupling of two or more high performance codes. Computational biomedicine holds out the prospect of predicting the effect of personalised medical treatments and interventions ahead of carrying them out, with all the ensuing benefits. Indeed, in some cases, it is already doing so today.
The CoE presents a powerful consortium of partners and has an outward facing nature and will actively train, disseminate and engage with these user communities across Europe and beyond. Because this field is new and growing rapidly, it offers numerous innovative opportunities. There are three SMEs and three enterprises within the project, as well as eight associate partners drawn from across the biomedical sector, who are fully aware of the vast potential of HPC in this domain. We shall work with them to advance the exploitation of HPC and will engage closely with medical professionals through our partner hospitals in order to establish modeling and simulation as an integral part of clinical decision making. Our CoE is thus user-driven, integrated, multidisciplinary, and distributed; presenting a vision that is in line with the Work Programme.
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