D, P., T, S., F, L., T, M., H, G., R, K., & K, S. K. (2026). Support-Enabled 3D Printing of Complex Anisotropic Hydrogel Structures Using Cellulose-Based Inks: Pathways Toward Biomimetic Human Aorta Models. ACS biomaterials science & engineering, 12(7), 3319. https://doi.org/10.1021/acsbiomaterials.5c02127
Chicago Style (17th ed.) CitationD, Pint, Steindorfer T, Lackner F, Mohan T, Gruber-Woelfler H, Kargl R, and Stana Kleinschek K. "Support-Enabled 3D Printing of Complex Anisotropic Hydrogel Structures Using Cellulose-Based Inks: Pathways Toward Biomimetic Human Aorta Models." ACS Biomaterials Science & Engineering 12, no. 7 (2026): 3319. https://doi.org/10.1021/acsbiomaterials.5c02127.
MLA (9th ed.) CitationD, Pint, et al. "Support-Enabled 3D Printing of Complex Anisotropic Hydrogel Structures Using Cellulose-Based Inks: Pathways Toward Biomimetic Human Aorta Models." ACS Biomaterials Science & Engineering, vol. 12, no. 7, 2026, p. 3319, https://doi.org/10.1021/acsbiomaterials.5c02127.