Scuderi, M.; Dermol-Černe, J.; Batista Napotnik, T.; Chaigne, S.; Bernus, O.; Benoist, D.; Sigg, D.C.; Rems, L.; Miklavčič, D.
Characterization of Experimentally Observed Complex Interplay between Pulse Duration, Electrical Field Strength, and Cell Orientation on Electroporation Outcome Using a Time-Dependent Nonlinear Numerical Model. Biomolecules 2023, 13, 727.
https://doi.org/10.3390/biom13050727
AMA Style
Scuderi M, Dermol-Černe J, Batista Napotnik T, Chaigne S, Bernus O, Benoist D, Sigg DC, Rems L, Miklavčič D.
Characterization of Experimentally Observed Complex Interplay between Pulse Duration, Electrical Field Strength, and Cell Orientation on Electroporation Outcome Using a Time-Dependent Nonlinear Numerical Model. Biomolecules. 2023; 13(5):727.
https://doi.org/10.3390/biom13050727
Chicago/Turabian Style
Scuderi, Maria, Janja Dermol-Černe, Tina Batista Napotnik, Sebastien Chaigne, Olivier Bernus, David Benoist, Daniel C. Sigg, Lea Rems, and Damijan Miklavčič.
2023. "Characterization of Experimentally Observed Complex Interplay between Pulse Duration, Electrical Field Strength, and Cell Orientation on Electroporation Outcome Using a Time-Dependent Nonlinear Numerical Model" Biomolecules 13, no. 5: 727.
https://doi.org/10.3390/biom13050727
APA Style
Scuderi, M., Dermol-Černe, J., Batista Napotnik, T., Chaigne, S., Bernus, O., Benoist, D., Sigg, D. C., Rems, L., & Miklavčič, D.
(2023). Characterization of Experimentally Observed Complex Interplay between Pulse Duration, Electrical Field Strength, and Cell Orientation on Electroporation Outcome Using a Time-Dependent Nonlinear Numerical Model. Biomolecules, 13(5), 727.
https://doi.org/10.3390/biom13050727