Grygorcewicz, B.; Rakoczy, R.; Roszak, M.; Konopacki, M.; Kordas, M.; Piegat, A.; Serwin, N.; Cecerska-Heryć, E.; El Fray, M.; Dołęgowska, B.
Rotating Magnetic Field-Assisted Reactor Enhances Mechanisms of Phage Adsorption on Bacterial Cell Surface. Curr. Issues Mol. Biol. 2022, 44, 1316-1325.
https://doi.org/10.3390/cimb44030088
AMA Style
Grygorcewicz B, Rakoczy R, Roszak M, Konopacki M, Kordas M, Piegat A, Serwin N, Cecerska-Heryć E, El Fray M, Dołęgowska B.
Rotating Magnetic Field-Assisted Reactor Enhances Mechanisms of Phage Adsorption on Bacterial Cell Surface. Current Issues in Molecular Biology. 2022; 44(3):1316-1325.
https://doi.org/10.3390/cimb44030088
Chicago/Turabian Style
Grygorcewicz, Bartłomiej, Rafał Rakoczy, Marta Roszak, Maciej Konopacki, Marian Kordas, Agnieszka Piegat, Natalia Serwin, Elżbieta Cecerska-Heryć, Miroslawa El Fray, and Barbara Dołęgowska.
2022. "Rotating Magnetic Field-Assisted Reactor Enhances Mechanisms of Phage Adsorption on Bacterial Cell Surface" Current Issues in Molecular Biology 44, no. 3: 1316-1325.
https://doi.org/10.3390/cimb44030088
APA Style
Grygorcewicz, B., Rakoczy, R., Roszak, M., Konopacki, M., Kordas, M., Piegat, A., Serwin, N., Cecerska-Heryć, E., El Fray, M., & Dołęgowska, B.
(2022). Rotating Magnetic Field-Assisted Reactor Enhances Mechanisms of Phage Adsorption on Bacterial Cell Surface. Current Issues in Molecular Biology, 44(3), 1316-1325.
https://doi.org/10.3390/cimb44030088