Patsilinakos, A.; Artini, M.; Papa, R.; Sabatino, M.; Božović, M.; Garzoli, S.; Vrenna, G.; Buzzi, R.; Manfredini, S.; Selan, L.;
et al. Machine Learning Analyses on Data including Essential Oil Chemical Composition and In Vitro Experimental Antibiofilm Activities against Staphylococcus Species. Molecules 2019, 24, 890.
https://doi.org/10.3390/molecules24050890
AMA Style
Patsilinakos A, Artini M, Papa R, Sabatino M, Božović M, Garzoli S, Vrenna G, Buzzi R, Manfredini S, Selan L,
et al. Machine Learning Analyses on Data including Essential Oil Chemical Composition and In Vitro Experimental Antibiofilm Activities against Staphylococcus Species. Molecules. 2019; 24(5):890.
https://doi.org/10.3390/molecules24050890
Chicago/Turabian Style
Patsilinakos, Alexandros, Marco Artini, Rosanna Papa, Manuela Sabatino, Mijat Božović, Stefania Garzoli, Gianluca Vrenna, Raissa Buzzi, Stefano Manfredini, Laura Selan,
and et al. 2019. "Machine Learning Analyses on Data including Essential Oil Chemical Composition and In Vitro Experimental Antibiofilm Activities against Staphylococcus Species" Molecules 24, no. 5: 890.
https://doi.org/10.3390/molecules24050890
APA Style
Patsilinakos, A., Artini, M., Papa, R., Sabatino, M., Božović, M., Garzoli, S., Vrenna, G., Buzzi, R., Manfredini, S., Selan, L., & Ragno, R.
(2019). Machine Learning Analyses on Data including Essential Oil Chemical Composition and In Vitro Experimental Antibiofilm Activities against Staphylococcus Species. Molecules, 24(5), 890.
https://doi.org/10.3390/molecules24050890