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DataTítuloAutor(es)TipoAcesso
Mai-2014Biofabrication of customized bone grafts by combination of additive manufacturing and bioreactor knowhowCosta, P. F.; Vaquette, C.; Baldwin, Jeremy, et al.ArtigoAcesso aberto
Jul-2016Bioplotting of a bioactive alginate dialdehyde-gelatin composite hydrogel containing bioactive glass nanoparticlesLeite, Álvaro J.; Sarker, Bapi; Zehnder, Tobias, et al.ArtigoAcesso restrito UMinho
Jan-2015Custom-tailored tissue engineered polycaprolactone scaffolds for total disc replacementUden, S. van; Silva-Correia, Joana; Correlo, V. M., et al.ArtigoAcesso restrito UMinho
Mar-2021Engineering bioinks for Bio 3D printingDecante, G.; Costa, João B.; Silva-Correia, Joana, et al.ArtigoAcesso restrito UMinho
2020Entrapped in cage (EiC) scaffolds of 3D-printed polycaprolactone and porous silk fibroin for meniscus tissue engineeringCengiz, I. F.; Maia, F. Raquel; da Silva Morais, Alain, et al.ArtigoAcesso aberto
Set-2023Gastrointestinal organs and organoids-on-a-chip: advances and translation into the clinicsCarvalho, Mariana R.; Yan, Le-Ping; Li, Bo, et al.ArtigoAcesso restrito autor
Set-2015Hierarchical scaffolds enhance osteogenic differentiation of human Wharton’s jelly derived stem cellsCanha-Gouveia, A.; Costa-Pinto, A. R.; Martins, Albino, et al.ArtigoAcesso restrito UMinho
2020Human platelet lysate-based nanocomposite bioink for bioprinting hierarchical fibrillar structuresMendes, Bárbara B.; Gómez-Florit, M.; Hamilton, Alex G., et al.ArtigoAcesso aberto
2017Structural monitoring and modeling of the mechanical deformation of three-dimensional printed poly(ε-caprolactone) scaffoldsRibeiro, João F. M.; Oliveira, Sara M.; Alves, J. L., et al.ArtigoAcesso aberto
Set-2022Xeno-free bioengineered human skeletal muscle tissue using human platelet lysate-based hydrogelsFernández-Garibay, X.; Gomez-Florit, Manuel; Domingues, Rui Miguel Andrade, et al.ArtigoAcesso aberto