Bifarin, O.O.; Gaul, D.A.; Sah, S.; Arnold, R.S.; Ogan, K.; Master, V.A.; Roberts, D.L.; Bergquist, S.H.; Petros, J.A.; Edison, A.S.;
et al. Urine-Based Metabolomics and Machine Learning Reveals Metabolites Associated with Renal Cell Carcinoma Stage. Cancers 2021, 13, 6253.
https://doi.org/10.3390/cancers13246253
AMA Style
Bifarin OO, Gaul DA, Sah S, Arnold RS, Ogan K, Master VA, Roberts DL, Bergquist SH, Petros JA, Edison AS,
et al. Urine-Based Metabolomics and Machine Learning Reveals Metabolites Associated with Renal Cell Carcinoma Stage. Cancers. 2021; 13(24):6253.
https://doi.org/10.3390/cancers13246253
Chicago/Turabian Style
Bifarin, Olatomiwa O., David A. Gaul, Samyukta Sah, Rebecca S. Arnold, Kenneth Ogan, Viraj A. Master, David L. Roberts, Sharon H. Bergquist, John A. Petros, Arthur S. Edison,
and et al. 2021. "Urine-Based Metabolomics and Machine Learning Reveals Metabolites Associated with Renal Cell Carcinoma Stage" Cancers 13, no. 24: 6253.
https://doi.org/10.3390/cancers13246253
APA Style
Bifarin, O. O., Gaul, D. A., Sah, S., Arnold, R. S., Ogan, K., Master, V. A., Roberts, D. L., Bergquist, S. H., Petros, J. A., Edison, A. S., & Fernández, F. M.
(2021). Urine-Based Metabolomics and Machine Learning Reveals Metabolites Associated with Renal Cell Carcinoma Stage. Cancers, 13(24), 6253.
https://doi.org/10.3390/cancers13246253