Deutsch, R.J.; D’Agostino, V.W.; Sunassee, E.D.; Kwan, M.; Madonna, M.C.; Palmer, G.; Crouch, B.T.; Ramanujam, N.
A Spectroscopic Technique to Simultaneously Characterize Fatty Acid Uptake, Mitochondrial Activity, Vascularity, and Oxygen Saturation for Longitudinal Studies In Vivo. Metabolites 2022, 12, 369.
https://doi.org/10.3390/metabo12050369
AMA Style
Deutsch RJ, D’Agostino VW, Sunassee ED, Kwan M, Madonna MC, Palmer G, Crouch BT, Ramanujam N.
A Spectroscopic Technique to Simultaneously Characterize Fatty Acid Uptake, Mitochondrial Activity, Vascularity, and Oxygen Saturation for Longitudinal Studies In Vivo. Metabolites. 2022; 12(5):369.
https://doi.org/10.3390/metabo12050369
Chicago/Turabian Style
Deutsch, Riley J., Victoria W. D’Agostino, Enakshi D. Sunassee, Michelle Kwan, Megan C. Madonna, Gregory Palmer, Brian T. Crouch, and Nimmi Ramanujam.
2022. "A Spectroscopic Technique to Simultaneously Characterize Fatty Acid Uptake, Mitochondrial Activity, Vascularity, and Oxygen Saturation for Longitudinal Studies In Vivo" Metabolites 12, no. 5: 369.
https://doi.org/10.3390/metabo12050369
APA Style
Deutsch, R. J., D’Agostino, V. W., Sunassee, E. D., Kwan, M., Madonna, M. C., Palmer, G., Crouch, B. T., & Ramanujam, N.
(2022). A Spectroscopic Technique to Simultaneously Characterize Fatty Acid Uptake, Mitochondrial Activity, Vascularity, and Oxygen Saturation for Longitudinal Studies In Vivo. Metabolites, 12(5), 369.
https://doi.org/10.3390/metabo12050369