Valenzuela-Reyes, M.B.; Zuñiga-Aguilar, E.S.; Chapa-González, C.; Castro-Carmona, J.S.; Méndez-González, L.C.; Álvarez-López, R.; Monreal-Romero, H.; Martínez-Pérez, C.A.
Enhancing 3D Printing of Gelatin/Siloxane-Based Cellular Scaffolds Using a Computational Model. Polymers 2025, 17, 1838.
https://doi.org/10.3390/polym17131838
AMA Style
Valenzuela-Reyes MB, Zuñiga-Aguilar ES, Chapa-González C, Castro-Carmona JS, Méndez-González LC, Álvarez-López R, Monreal-Romero H, Martínez-Pérez CA.
Enhancing 3D Printing of Gelatin/Siloxane-Based Cellular Scaffolds Using a Computational Model. Polymers. 2025; 17(13):1838.
https://doi.org/10.3390/polym17131838
Chicago/Turabian Style
Valenzuela-Reyes, Marcos B., Esmeralda S. Zuñiga-Aguilar, Christian Chapa-González, Javier S. Castro-Carmona, Luis C. Méndez-González, R. Álvarez-López, Humberto Monreal-Romero, and Carlos A. Martínez-Pérez.
2025. "Enhancing 3D Printing of Gelatin/Siloxane-Based Cellular Scaffolds Using a Computational Model" Polymers 17, no. 13: 1838.
https://doi.org/10.3390/polym17131838
APA Style
Valenzuela-Reyes, M. B., Zuñiga-Aguilar, E. S., Chapa-González, C., Castro-Carmona, J. S., Méndez-González, L. C., Álvarez-López, R., Monreal-Romero, H., & Martínez-Pérez, C. A.
(2025). Enhancing 3D Printing of Gelatin/Siloxane-Based Cellular Scaffolds Using a Computational Model. Polymers, 17(13), 1838.
https://doi.org/10.3390/polym17131838