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DataTítuloAutor(es)TipoAcesso
2022Chitosan/β-TCP composites scaffolds coated with silk fibroin: a bone tissue engineering approachPiaia, Lya; Silva, Simone S.; Gomes, Joana M., et al.ArtigoAcesso aberto
2023Collagen membrane from bovine pericardium for treatment of long bone defectYamanaka, J. S.; Oliveira, A. C.; Bastos, Ana Raquel Fernandes, et al.ArtigoAcesso aberto
2010Cork based composites using polyolefin’s as matrix : morphology and mechanical performanceFernandes, E. M.; Correlo, V. M.; Chagas, José A. M., et al.ArtigoAcesso aberto
Jun-2017Cork biomass biocomposites: lightweight and sustainable materialsFernandes, E. M.; Pires, R. A.; Reis, R. L.Capítulo de livroAcesso aberto
Mar-2015Cork extractives exhibit thermo-oxidative protection properties in polypropylene-cork composites and as direct additives for polypropyleneAroso, Ivo Manuel Ascensão; Fernandes, E. M.; Pires, R. A., et al.ArtigoAcesso aberto
2005Cork: properties, capabilities and applicationsSilva, S. P.; Sabino, M. A.; Fernandes, E. M., et al.ArtigoAcesso aberto
2015Cork–polymer biocomposites: mechanical, structural and thermal propertiesFernandes, E. M.; Correlo, V. M.; Mano, J. F., et al.ArtigoAcesso aberto
Nov-2018Design and characterization of synthetic biodegradable films for musculoskeletal tissue engineeringRibeiro, S.; Novacek, V.; Fernandes, Emanuel Mouta, et al.Resumo em ata de conferência Acesso aberto
Fev-2021Development and characterisation of cytocompatible polyester substrates with tunable mechanical properties and degradation rateRibeiro, Sofia; Carvalho, Ana M.; Fernandes, Emanuel Mouta, et al.ArtigoAcesso aberto
Abr-2023Development of bilayered porous silk scaffolds for thymus bioengineeringSilva, Catarina S.; Kundu, Banani; Gomes, Joana M., et al.ArtigoAcesso restrito UMinho
18-Jan-2023Development of cork biocomposites enriched with chitosan targeting antibacterial and antifouling propertiesFernandes, Emanuel Mouta; Lobo, Flávia Cristina Marques; Faria, Sara I., et al.ArtigoAcesso aberto
Set-2012Development of macro/micro porous silk fibroin scaffolds with nano-sized calcium phosphate particles for bone tissue engineeringYan, Leping; Correia, Cristina; Silva-Correia, Joana, et al.Resumo em ata de conferência Acesso aberto
Mar-2021Engineering 3D printed bioactive composite scaffolds based on the combination of aliphatic polyester and calcium phosphates for bone tissue regenerationBackes, Eduardo H.; Fernandes, Emanuel Mouta; Diogo, Gabriela S., et al.ArtigoAcesso aberto
Nov-2013Erratum to: New biotextiles for tissue engineering : development, characterization and in vitro cellular viabilityAlmeida, L. R.; Martins, A. R.; Fernandes, E. M., et al.CorrigendaAcesso aberto
Jul-2018Fish sarcoplasmic proteins as a high value marine material for wound dressing applicationsVieira, S. F.; Franco, A. R.; Fernandes, E. M., et al.ArtigoAcesso aberto
Nov-2014Functionalized cork-polymer composites (CPC) by reactive extrusion using suberin and lignin from cork as coupling agentsFernandes, E. M.; Aroso, Ivo Manuel Ascensão; Mano, J. F., et al.ArtigoAcesso aberto
Jun-2020Fundamentals on biopolymers and global demandSilva, SS; Rodrigues L. C.; Fernandes, Emanuel Mouta, et al.Capítulo de livroAcesso restrito UMinho
Fev-2012Gradual pore formation in natural origin scaffolds throughout subcutaneous implantationMartins, Ana M.; Kretlow, J. D.; Pinto, A. R., et al.ArtigoAcesso aberto
Nov-2013Hybrid cork-polymer composites containing sisal fibre : morphology, effect of the fibre treatment on the mechanical properties and tensile failure predictionFernandes, E. M.; Mano, J. F.; Reis, R. L.ArtigoAcesso aberto
21-Dez-2011Improvement on the mechanical properties of cork composites using suberin as coupling agent through a reactive extrusion processFernandes, E. M.; Aroso, Ivo Manuel Ascensão; Pires, R. A., et al.Artigo em ata de conferênciaAcesso aberto