Percoco, G.; Uva, A.E.; Fiorentino, M.; Gattullo, M.; Manghisi, V.M.; Boccaccio, A.
Mechanobiological Approach to Design and Optimize Bone Tissue Scaffolds 3D Printed with Fused Deposition Modeling: A Feasibility Study. Materials 2020, 13, 648.
https://doi.org/10.3390/ma13030648
AMA Style
Percoco G, Uva AE, Fiorentino M, Gattullo M, Manghisi VM, Boccaccio A.
Mechanobiological Approach to Design and Optimize Bone Tissue Scaffolds 3D Printed with Fused Deposition Modeling: A Feasibility Study. Materials. 2020; 13(3):648.
https://doi.org/10.3390/ma13030648
Chicago/Turabian Style
Percoco, Gianluca, Antonio Emmanuele Uva, Michele Fiorentino, Michele Gattullo, Vito Modesto Manghisi, and Antonio Boccaccio.
2020. "Mechanobiological Approach to Design and Optimize Bone Tissue Scaffolds 3D Printed with Fused Deposition Modeling: A Feasibility Study" Materials 13, no. 3: 648.
https://doi.org/10.3390/ma13030648
APA Style
Percoco, G., Uva, A. E., Fiorentino, M., Gattullo, M., Manghisi, V. M., & Boccaccio, A.
(2020). Mechanobiological Approach to Design and Optimize Bone Tissue Scaffolds 3D Printed with Fused Deposition Modeling: A Feasibility Study. Materials, 13(3), 648.
https://doi.org/10.3390/ma13030648