Semenov, A.N.; Yakimov, B.P.; Rubekina, A.A.; Gorin, D.A.; Drachev, V.P.; Zarubin, M.P.; Velikanov, A.N.; Lademann, J.; Fadeev, V.V.; Priezzhev, A.V.;
et al. The Oxidation-Induced Autofluorescence Hypothesis: Red Edge Excitation and Implications for Metabolic Imaging. Molecules 2020, 25, 1863.
https://doi.org/10.3390/molecules25081863
AMA Style
Semenov AN, Yakimov BP, Rubekina AA, Gorin DA, Drachev VP, Zarubin MP, Velikanov AN, Lademann J, Fadeev VV, Priezzhev AV,
et al. The Oxidation-Induced Autofluorescence Hypothesis: Red Edge Excitation and Implications for Metabolic Imaging. Molecules. 2020; 25(8):1863.
https://doi.org/10.3390/molecules25081863
Chicago/Turabian Style
Semenov, Alexey N., Boris P. Yakimov, Anna A. Rubekina, Dmitry A. Gorin, Vladimir P. Drachev, Mikhail P. Zarubin, Alexander N. Velikanov, Juergen Lademann, Victor V. Fadeev, Alexander V. Priezzhev,
and et al. 2020. "The Oxidation-Induced Autofluorescence Hypothesis: Red Edge Excitation and Implications for Metabolic Imaging" Molecules 25, no. 8: 1863.
https://doi.org/10.3390/molecules25081863
APA Style
Semenov, A. N., Yakimov, B. P., Rubekina, A. A., Gorin, D. A., Drachev, V. P., Zarubin, M. P., Velikanov, A. N., Lademann, J., Fadeev, V. V., Priezzhev, A. V., Darvin, M. E., & Shirshin, E. A.
(2020). The Oxidation-Induced Autofluorescence Hypothesis: Red Edge Excitation and Implications for Metabolic Imaging. Molecules, 25(8), 1863.
https://doi.org/10.3390/molecules25081863