Toinet, S.; Benwadih, M.; Szambolics, H.; Revenant, C.; Alincant, D.; Bordet, M.; Capsal, J.-F.; Della-Schiava, N.; Le, M.-Q.; Cottinet, P.-J.
Design Optimization of Printed Multi-Layered Electroactive Actuators Used for Steerable Guidewire in Micro-Invasive Surgery. Materials 2024, 17, 2135.
https://doi.org/10.3390/ma17092135
AMA Style
Toinet S, Benwadih M, Szambolics H, Revenant C, Alincant D, Bordet M, Capsal J-F, Della-Schiava N, Le M-Q, Cottinet P-J.
Design Optimization of Printed Multi-Layered Electroactive Actuators Used for Steerable Guidewire in Micro-Invasive Surgery. Materials. 2024; 17(9):2135.
https://doi.org/10.3390/ma17092135
Chicago/Turabian Style
Toinet, Simon, Mohammed Benwadih, Helga Szambolics, Christine Revenant, David Alincant, Marine Bordet, Jean-Fabien Capsal, Nellie Della-Schiava, Minh-Quyen Le, and Pierre-Jean Cottinet.
2024. "Design Optimization of Printed Multi-Layered Electroactive Actuators Used for Steerable Guidewire in Micro-Invasive Surgery" Materials 17, no. 9: 2135.
https://doi.org/10.3390/ma17092135
APA Style
Toinet, S., Benwadih, M., Szambolics, H., Revenant, C., Alincant, D., Bordet, M., Capsal, J.-F., Della-Schiava, N., Le, M.-Q., & Cottinet, P.-J.
(2024). Design Optimization of Printed Multi-Layered Electroactive Actuators Used for Steerable Guidewire in Micro-Invasive Surgery. Materials, 17(9), 2135.
https://doi.org/10.3390/ma17092135