Improvement of mechanical properties of 3D printed hydroxyapatite scaffolds by culture of osteoblast-like cells under perfusion flow

dc.accessRightsAnonymous
dc.audiencePraxis
dc.contributor.authorRimmer, Natalie
dc.contributor.authorBurgio, Floriana
dc.contributor.authorRohner, Adrian
dc.contributor.authorChavanne, Philippe
dc.contributor.authorZimmermann, Simon
dc.contributor.authorGruner, Philipp
dc.contributor.authorSchumacher, Ralf
dc.contributor.authorde Wild, Michael
dc.contributor.authorPapadimitropoulos, Adam
dc.contributor.authorMartin, Yvan
dc.contributor.authorHugot Beaufils, Marina
dc.contributor.authorPieles, Uwe
dc.date.accessioned2016-01-29T10:22:07Z
dc.date.available2016-01-29T10:22:07Z
dc.date.issued2015
dc.identifier.urihttp://hdl.handle.net/11654/17563
dc.language.isoenen_US
dc.relation.ispartofEuropean Cells and Materials Conference Meeting Abstracts
dc.spatialDavos
dc.titleImprovement of mechanical properties of 3D printed hydroxyapatite scaffolds by culture of osteoblast-like cells under perfusion flow
dc.type04B - Beitrag Konferenzschrift
dspace.entity.typePublication
fhnw.InventedHereYes
fhnw.IsStudentsWorkno
fhnw.PublishedSwitzerlandYes
fhnw.ReviewTypeNo peer review
fhnw.affiliation.hochschuleHochschule für Life Sciences FHNWde_CH
fhnw.affiliation.institutInstitut für Medizintechnik und Medizininformatikde_CH
fhnw.publicationStatePublished
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