Menhall, A.; Lahoud, P.; Yang, K.R.; Park, K.B.; Razukevicius, D.; Traini, T.; Makary, C.
The Mineral Apposition Rate on Implants with Either a Sandblasted Acid-Etched Implant Surface (SLA) or a Nanostructured Calcium-Incorporated Surface (XPEED®): A Histological Split-Mouth, Randomized Case/Control Human Study. Materials 2024, 17, 3341.
https://doi.org/10.3390/ma17133341
AMA Style
Menhall A, Lahoud P, Yang KR, Park KB, Razukevicius D, Traini T, Makary C.
The Mineral Apposition Rate on Implants with Either a Sandblasted Acid-Etched Implant Surface (SLA) or a Nanostructured Calcium-Incorporated Surface (XPEED®): A Histological Split-Mouth, Randomized Case/Control Human Study. Materials. 2024; 17(13):3341.
https://doi.org/10.3390/ma17133341
Chicago/Turabian Style
Menhall, Abdallah, Pierre Lahoud, Kyung Ran Yang, Kwang Bum Park, Dainius Razukevicius, Tonino Traini, and Christian Makary.
2024. "The Mineral Apposition Rate on Implants with Either a Sandblasted Acid-Etched Implant Surface (SLA) or a Nanostructured Calcium-Incorporated Surface (XPEED®): A Histological Split-Mouth, Randomized Case/Control Human Study" Materials 17, no. 13: 3341.
https://doi.org/10.3390/ma17133341
APA Style
Menhall, A., Lahoud, P., Yang, K. R., Park, K. B., Razukevicius, D., Traini, T., & Makary, C.
(2024). The Mineral Apposition Rate on Implants with Either a Sandblasted Acid-Etched Implant Surface (SLA) or a Nanostructured Calcium-Incorporated Surface (XPEED®): A Histological Split-Mouth, Randomized Case/Control Human Study. Materials, 17(13), 3341.
https://doi.org/10.3390/ma17133341