Hundshammer, C.; Düwel, S.; Ruseckas, D.; Topping, G.; Dzien, P.; Müller, C.; Feuerecker, B.; Hövener, J.B.; Haase, A.; Schwaiger, M.;
et al. Hyperpolarized Amino Acid Derivatives as Multivalent Magnetic Resonance pH Sensor Molecules. Sensors 2018, 18, 600.
https://doi.org/10.3390/s18020600
AMA Style
Hundshammer C, Düwel S, Ruseckas D, Topping G, Dzien P, Müller C, Feuerecker B, Hövener JB, Haase A, Schwaiger M,
et al. Hyperpolarized Amino Acid Derivatives as Multivalent Magnetic Resonance pH Sensor Molecules. Sensors. 2018; 18(2):600.
https://doi.org/10.3390/s18020600
Chicago/Turabian Style
Hundshammer, Christian, Stephan Düwel, David Ruseckas, Geoffrey Topping, Piotr Dzien, Christoph Müller, Benedikt Feuerecker, Jan B. Hövener, Axel Haase, Markus Schwaiger,
and et al. 2018. "Hyperpolarized Amino Acid Derivatives as Multivalent Magnetic Resonance pH Sensor Molecules" Sensors 18, no. 2: 600.
https://doi.org/10.3390/s18020600
APA Style
Hundshammer, C., Düwel, S., Ruseckas, D., Topping, G., Dzien, P., Müller, C., Feuerecker, B., Hövener, J. B., Haase, A., Schwaiger, M., Glaser, S. J., & Schilling, F.
(2018). Hyperpolarized Amino Acid Derivatives as Multivalent Magnetic Resonance pH Sensor Molecules. Sensors, 18(2), 600.
https://doi.org/10.3390/s18020600