Flégeau, K.; Jing, J.; Brusini, R.; Gallet, M.; Moreno, C.; Walker, L.; Bourdon, F.; Faivre, J.
Multidose Hyaluronidase Administration as an Optimal Procedure to Degrade Resilient Hyaluronic Acid Soft Tissue Fillers. Molecules 2023, 28, 1003.
https://doi.org/10.3390/molecules28031003
AMA Style
Flégeau K, Jing J, Brusini R, Gallet M, Moreno C, Walker L, Bourdon F, Faivre J.
Multidose Hyaluronidase Administration as an Optimal Procedure to Degrade Resilient Hyaluronic Acid Soft Tissue Fillers. Molecules. 2023; 28(3):1003.
https://doi.org/10.3390/molecules28031003
Chicago/Turabian Style
Flégeau, Killian, Jing Jing, Romain Brusini, Mélanie Gallet, Capucine Moreno, Lee Walker, François Bourdon, and Jimmy Faivre.
2023. "Multidose Hyaluronidase Administration as an Optimal Procedure to Degrade Resilient Hyaluronic Acid Soft Tissue Fillers" Molecules 28, no. 3: 1003.
https://doi.org/10.3390/molecules28031003
APA Style
Flégeau, K., Jing, J., Brusini, R., Gallet, M., Moreno, C., Walker, L., Bourdon, F., & Faivre, J.
(2023). Multidose Hyaluronidase Administration as an Optimal Procedure to Degrade Resilient Hyaluronic Acid Soft Tissue Fillers. Molecules, 28(3), 1003.
https://doi.org/10.3390/molecules28031003