Kitajima, H.; Hirota, M.; Osawa, K.; Iwai, T.; Mitsudo, K.; Saruta, J.; Ogawa, T.
The Effects of a Biomimetic Hybrid Meso- and Nano-Scale Surface Topography on Blood and Protein Recruitment in a Computational Fluid Dynamics Implant Model. Biomimetics 2023, 8, 376.
https://doi.org/10.3390/biomimetics8040376
AMA Style
Kitajima H, Hirota M, Osawa K, Iwai T, Mitsudo K, Saruta J, Ogawa T.
The Effects of a Biomimetic Hybrid Meso- and Nano-Scale Surface Topography on Blood and Protein Recruitment in a Computational Fluid Dynamics Implant Model. Biomimetics. 2023; 8(4):376.
https://doi.org/10.3390/biomimetics8040376
Chicago/Turabian Style
Kitajima, Hiroaki, Makoto Hirota, Kohei Osawa, Toshinori Iwai, Kenji Mitsudo, Juri Saruta, and Takahiro Ogawa.
2023. "The Effects of a Biomimetic Hybrid Meso- and Nano-Scale Surface Topography on Blood and Protein Recruitment in a Computational Fluid Dynamics Implant Model" Biomimetics 8, no. 4: 376.
https://doi.org/10.3390/biomimetics8040376
APA Style
Kitajima, H., Hirota, M., Osawa, K., Iwai, T., Mitsudo, K., Saruta, J., & Ogawa, T.
(2023). The Effects of a Biomimetic Hybrid Meso- and Nano-Scale Surface Topography on Blood and Protein Recruitment in a Computational Fluid Dynamics Implant Model. Biomimetics, 8(4), 376.
https://doi.org/10.3390/biomimetics8040376