Lin, C.-W.; Chiang, E.-R.; Chen, S.-H.; Chen, P.; Liu, H.-J.; Chiu, J.C.-H.
Global Compressive Loading from an Ultra-Thin PEEK Button Augment Enhances Fibrocartilage Regeneration of Rotator Cuff Enthesis. Bioengineering 2023, 10, 565.
https://doi.org/10.3390/bioengineering10050565
AMA Style
Lin C-W, Chiang E-R, Chen S-H, Chen P, Liu H-J, Chiu JC-H.
Global Compressive Loading from an Ultra-Thin PEEK Button Augment Enhances Fibrocartilage Regeneration of Rotator Cuff Enthesis. Bioengineering. 2023; 10(5):565.
https://doi.org/10.3390/bioengineering10050565
Chicago/Turabian Style
Lin, Chia-Wei, En-Rung Chiang, Shih-Hao Chen, Poyu Chen, Heng-Jui Liu, and Joe Chih-Hao Chiu.
2023. "Global Compressive Loading from an Ultra-Thin PEEK Button Augment Enhances Fibrocartilage Regeneration of Rotator Cuff Enthesis" Bioengineering 10, no. 5: 565.
https://doi.org/10.3390/bioengineering10050565
APA Style
Lin, C.-W., Chiang, E.-R., Chen, S.-H., Chen, P., Liu, H.-J., & Chiu, J. C.-H.
(2023). Global Compressive Loading from an Ultra-Thin PEEK Button Augment Enhances Fibrocartilage Regeneration of Rotator Cuff Enthesis. Bioengineering, 10(5), 565.
https://doi.org/10.3390/bioengineering10050565