Oliveira, P.G.F.P.; Coelho, P.G.; Bergamo, E.T.P.; Witek, L.; Borges, C.A.; Bezerra, F.B.; Novaes, A.B., Jr.; Souza, S.L.S.
Histological and Nanomechanical Properties of a New Nanometric Hydroxiapatite Implant Surface. An In Vivo Study in Diabetic Rats. Materials 2020, 13, 5693.
https://doi.org/10.3390/ma13245693
AMA Style
Oliveira PGFP, Coelho PG, Bergamo ETP, Witek L, Borges CA, Bezerra FB, Novaes AB Jr., Souza SLS.
Histological and Nanomechanical Properties of a New Nanometric Hydroxiapatite Implant Surface. An In Vivo Study in Diabetic Rats. Materials. 2020; 13(24):5693.
https://doi.org/10.3390/ma13245693
Chicago/Turabian Style
Oliveira, Paula G. F. P., Paulo G. Coelho, Edmara T. P. Bergamo, Lukasz Witek, Cristine A. Borges, Fábio B. Bezerra, Arthur B. Novaes, Jr., and Sergio L. S. Souza.
2020. "Histological and Nanomechanical Properties of a New Nanometric Hydroxiapatite Implant Surface. An In Vivo Study in Diabetic Rats" Materials 13, no. 24: 5693.
https://doi.org/10.3390/ma13245693
APA Style
Oliveira, P. G. F. P., Coelho, P. G., Bergamo, E. T. P., Witek, L., Borges, C. A., Bezerra, F. B., Novaes, A. B., Jr., & Souza, S. L. S.
(2020). Histological and Nanomechanical Properties of a New Nanometric Hydroxiapatite Implant Surface. An In Vivo Study in Diabetic Rats. Materials, 13(24), 5693.
https://doi.org/10.3390/ma13245693