Navickaite, D.; Ruzgys, P.; Novickij, V.; Jakutaviciute, M.; Maciulevicius, M.; Sinceviciute, R.; Satkauskas, S.
Extracellular-Ca2+-Induced Decrease in Small Molecule Electrotransfer Efficiency: Comparison between Microsecond and Nanosecond Electric Pulses. Pharmaceutics 2020, 12, 422.
https://doi.org/10.3390/pharmaceutics12050422
AMA Style
Navickaite D, Ruzgys P, Novickij V, Jakutaviciute M, Maciulevicius M, Sinceviciute R, Satkauskas S.
Extracellular-Ca2+-Induced Decrease in Small Molecule Electrotransfer Efficiency: Comparison between Microsecond and Nanosecond Electric Pulses. Pharmaceutics. 2020; 12(5):422.
https://doi.org/10.3390/pharmaceutics12050422
Chicago/Turabian Style
Navickaite, Diana, Paulius Ruzgys, Vitalij Novickij, Milda Jakutaviciute, Martynas Maciulevicius, Ruta Sinceviciute, and Saulius Satkauskas.
2020. "Extracellular-Ca2+-Induced Decrease in Small Molecule Electrotransfer Efficiency: Comparison between Microsecond and Nanosecond Electric Pulses" Pharmaceutics 12, no. 5: 422.
https://doi.org/10.3390/pharmaceutics12050422
APA Style
Navickaite, D., Ruzgys, P., Novickij, V., Jakutaviciute, M., Maciulevicius, M., Sinceviciute, R., & Satkauskas, S.
(2020). Extracellular-Ca2+-Induced Decrease in Small Molecule Electrotransfer Efficiency: Comparison between Microsecond and Nanosecond Electric Pulses. Pharmaceutics, 12(5), 422.
https://doi.org/10.3390/pharmaceutics12050422