Chen, J.; Xing, Y.; Bai, X.; Xue, M.; Shi, Q.; Li, B.
Strong Bioactive Glass-Based Hybrid Implants with Good Biomineralization Activity Used to Reduce Formation Duration and Improve Biomechanics of Bone Regeneration. Polymers 2023, 15, 3497.
https://doi.org/10.3390/polym15173497
AMA Style
Chen J, Xing Y, Bai X, Xue M, Shi Q, Li B.
Strong Bioactive Glass-Based Hybrid Implants with Good Biomineralization Activity Used to Reduce Formation Duration and Improve Biomechanics of Bone Regeneration. Polymers. 2023; 15(17):3497.
https://doi.org/10.3390/polym15173497
Chicago/Turabian Style
Chen, Jing, Yonglei Xing, Xiaozhuan Bai, Min Xue, Qi Shi, and Beibei Li.
2023. "Strong Bioactive Glass-Based Hybrid Implants with Good Biomineralization Activity Used to Reduce Formation Duration and Improve Biomechanics of Bone Regeneration" Polymers 15, no. 17: 3497.
https://doi.org/10.3390/polym15173497
APA Style
Chen, J., Xing, Y., Bai, X., Xue, M., Shi, Q., & Li, B.
(2023). Strong Bioactive Glass-Based Hybrid Implants with Good Biomineralization Activity Used to Reduce Formation Duration and Improve Biomechanics of Bone Regeneration. Polymers, 15(17), 3497.
https://doi.org/10.3390/polym15173497