Aversa, R.; Petrescu, R.V.; Petrescu, F.I.T.; Perrotta, V.; Apicella, D.; Apicella, A.
Biomechanically Tunable Nano-Silica/P-HEMA Structural Hydrogels for Bone Scaffolding. Bioengineering 2021, 8, 45.
https://doi.org/10.3390/bioengineering8040045
AMA Style
Aversa R, Petrescu RV, Petrescu FIT, Perrotta V, Apicella D, Apicella A.
Biomechanically Tunable Nano-Silica/P-HEMA Structural Hydrogels for Bone Scaffolding. Bioengineering. 2021; 8(4):45.
https://doi.org/10.3390/bioengineering8040045
Chicago/Turabian Style
Aversa, Raffaella, Relly Victoria Petrescu, Florian Ion T. Petrescu, Valeria Perrotta, Davide Apicella, and Antonio Apicella.
2021. "Biomechanically Tunable Nano-Silica/P-HEMA Structural Hydrogels for Bone Scaffolding" Bioengineering 8, no. 4: 45.
https://doi.org/10.3390/bioengineering8040045
APA Style
Aversa, R., Petrescu, R. V., Petrescu, F. I. T., Perrotta, V., Apicella, D., & Apicella, A.
(2021). Biomechanically Tunable Nano-Silica/P-HEMA Structural Hydrogels for Bone Scaffolding. Bioengineering, 8(4), 45.
https://doi.org/10.3390/bioengineering8040045