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Applicability of near-field electrospinning for the development of TCP-based thin fibres and scaffold 3D printing

  • Source: M. García-Galán; F.J. Martínez-Vázquez; N. Rebollo-Muñoz; J.M. Montanero; P. Miranda. (2023). Applicability of near-field electrospinning for the development of TCP-based thin fibres and

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Prefabricated 3D-printed tissue-engineered bone for mandibular reconstruction: A preclinical translational study in primate

  • Source: Cao, S. S., Li, S. Y., Geng, Y. M., Kapat, K., Liu, S. B., Perera, F. H., Li, Q., Terheyden, H., Wu, G., Che, Y. J., Miranda, P., & Zhou, M. (2021). Prefabricated 3D-Printed Tissue-Engineered Bone for

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Periodical

Guided play: from instructions to creativity when constructing automata

  • Source: Bidarra, G. Vaz Rebelo, P. Thiel, O. Alferes, V. Silva, I. Barreira, C. Santos, A. Almeida, J. Machado, I. Conceição, A. Bartolleti, C. Ferrini, F. Josephson, J. Kostova, N. (2020). Guided

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Novel strategy for toughening robocast bioceramic scaffolds using polymeric cores

  • Source: Paredes Sánchez, C.I., Martínez Vázquez, F.J., Pajares Vicente, A. & Miranda González, P. (2019). Novel strategy for toughening robocast bioceramic scaffolds using polymeric cores. Ceramics

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