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Issue DateTitleAuthor(s)TypeAccess
Sep-2016Basics of the MeniscusCengiz, I. F.; Silva-Correia, Joana; Pereira, H., et al.Book partRestricted access (UMinho)
2015Bilayered silk/silk-nanoCaP scaffolds for osteochondral tissue engineering : in vitro and In vivo assessment of biological performanceYan, Leping; Silva-Correia, Joana; Oliveira, Mariana B., et al.ArticleOpen access
2013Bioactive macro/micro porous silk fibroin/Nano-sized calcium phosphate scaffolds with potential for bone tissue engineering applicationsYan, Leping; Silva-Correia, Joana; Correia, C., et al.ArticleOpen access
2013Biocompatibility evaluation of ionic- and photo-crosslinked methacrylated gellan gum hydrogels: in vitro and In vivo studySilva-Correia, Joana; Zavan, B.; Vindigni, V., et al.ArticleOpen access
Sep-2013Biological characterization of rabbit nucleus pulposus cells on a biphasic scaffold made of polycaprolactone and methacrylated gellan gum hydrogelvan Uden, Sebastião; Silva-Correia, Joana; Correlo, V. M., et al.AbstractOpen access
2015Biological evaluation of intervertebral disc cells in different formulations of gellan gum-based hydrogelsKhang, G.; Lee, S. K.; Kim, H. N., et al.ArticleOpen access
2017Biological performance of cell encapsulated methacrylated gellan gum-based hydrogels for nucleus pulposus regenerationTsaryk, R.; Silva-Correia, Joana; Oliveira, Joaquim M., et al.ArticleRestricted access (UMinho)
Dec-2018Biomaterials developments for brain tissue engineeringOliveira, Maria Eduarda Moreira Pinheiro Santos; Silva-Correia, Joana; Reis, R. L., et al.Book partRestricted access (UMinho)
2014Biomechanical and cellular segmental characterization of human meniscos: building the basis for Tissue Engineering therapiesPereira, H.; Caridade, S. G.; Frias, A. M., et al.ArticleRestricted access (UMinho)
Sep-2018Biopolymers and polymers in the search of alternative treatments for meniscal regeneration: State of the art and future trendsMurphy, C. A.; Costa, João Pedro Bebiano; Silva-Correia, Joana, et al.ArticleRestricted access (UMinho)
Sep-2012Cell-loaded gellan gum-based hydrogels for nucleus pulposus regenerationTsaryk, R.; Silva-Correia, Joana; Oliveira, Joaquim M., et al.AbstractOpen access
Oct-2013Chitosan nanofibers as scaffolds for peripheral nerve regenerationCarvalho, C. R.; Silva-Correia, Joana; Martins, A., et al.AbstractOpen access
Jun-2018Current advances in solid free-form techniques for osteochondral tissue engineeringCosta, João Bebiano; Silva-Correia, Joana; Reis, R. L., et al.ArticleRestricted access (UMinho)
2014Current concepts: tissue engineering and regenerative medicine applications in the ankle jointCorreia, Sandra I.; Pereira, H.; Silva-Correia, Joana, et al.ArticleOpen access
Oct-2017Current strategies for treatment of intervertebral disc degeneration: substitution and regeneration possibilitiesvan Uden, Sebastião; Silva-Correia, Joana; Oliveira, J. M., et al.ArticleOpen access
Jan-2015Custom-tailored tissue engineered polycaprolactone scaffolds for total disc replacementUden, S. van; Silva-Correia, Joana; Correlo, V. M., et al.ArticleRestricted access (UMinho)
28-Sep-2011Development of gellan gum-based microparticles/hydrogel matrices for application in the intervertebral disc regenerationPereira, D. R.; Silva-Correia, Joana; Caridade, S. G., et al.ArticleOpen access
Sep-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.AbstractOpen access
Apr-2013Development of nanofiber-reinforced hydrogel scaffolds for nucleus pulposus regeneration by a combination of electrospinning and spraying techniqueThorvaldsson, A.; Silva-Correia, Joana; Oliveira, Joaquim M., et al.ArticleOpen access
2018Emerging tumor spheroids technologies for 3D in vitro cancer modelingRodrigues, Tânia; Kundu, Banani; Silva-Correia, Joana, et al.ArticleOpen access