Campbell, A.; Gutierrez, D.A.; Knight, C.; Vines, C.M.; Heydarian, R.; Philipovskiy, A.; Varela-Ramirez, A.; Boland, T.
Novel Combinatorial Strategy Using Thermal Inkjet Bioprinting, Chemotherapy, and Radiation on Human Breast Cancer Cells; an In-Vitro Cell Viability Assessment. Materials 2021, 14, 7864.
https://doi.org/10.3390/ma14247864
AMA Style
Campbell A, Gutierrez DA, Knight C, Vines CM, Heydarian R, Philipovskiy A, Varela-Ramirez A, Boland T.
Novel Combinatorial Strategy Using Thermal Inkjet Bioprinting, Chemotherapy, and Radiation on Human Breast Cancer Cells; an In-Vitro Cell Viability Assessment. Materials. 2021; 14(24):7864.
https://doi.org/10.3390/ma14247864
Chicago/Turabian Style
Campbell, Aleli, Denisse A. Gutierrez, Colin Knight, Charlotte M. Vines, Rosalinda Heydarian, Alexander Philipovskiy, Armando Varela-Ramirez, and Thomas Boland.
2021. "Novel Combinatorial Strategy Using Thermal Inkjet Bioprinting, Chemotherapy, and Radiation on Human Breast Cancer Cells; an In-Vitro Cell Viability Assessment" Materials 14, no. 24: 7864.
https://doi.org/10.3390/ma14247864
APA Style
Campbell, A., Gutierrez, D. A., Knight, C., Vines, C. M., Heydarian, R., Philipovskiy, A., Varela-Ramirez, A., & Boland, T.
(2021). Novel Combinatorial Strategy Using Thermal Inkjet Bioprinting, Chemotherapy, and Radiation on Human Breast Cancer Cells; an In-Vitro Cell Viability Assessment. Materials, 14(24), 7864.
https://doi.org/10.3390/ma14247864