Dahon, C.; Aguida, B.; Lebon, Y.; Le Guen, P.; Dangremont, A.; Meyer, O.; Citerne, J.-M.; Pooam, M.; Raad, H.; Thoradit, T.;
et al. A Novel Method for Achieving Precision and Reproducibility in a 1.8 GHz Radiofrequency Exposure System That Modulates Intracellular ROS as a Function of Signal Amplitude in Human Cell Cultures. Bioengineering 2025, 12, 257.
https://doi.org/10.3390/bioengineering12030257
AMA Style
Dahon C, Aguida B, Lebon Y, Le Guen P, Dangremont A, Meyer O, Citerne J-M, Pooam M, Raad H, Thoradit T,
et al. A Novel Method for Achieving Precision and Reproducibility in a 1.8 GHz Radiofrequency Exposure System That Modulates Intracellular ROS as a Function of Signal Amplitude in Human Cell Cultures. Bioengineering. 2025; 12(3):257.
https://doi.org/10.3390/bioengineering12030257
Chicago/Turabian Style
Dahon, Cyril, Blanche Aguida, Yoann Lebon, Pierre Le Guen, Art Dangremont, Olivier Meyer, Jean-Marie Citerne, Marootpong Pooam, Haider Raad, Thawatchai Thoradit,
and et al. 2025. "A Novel Method for Achieving Precision and Reproducibility in a 1.8 GHz Radiofrequency Exposure System That Modulates Intracellular ROS as a Function of Signal Amplitude in Human Cell Cultures" Bioengineering 12, no. 3: 257.
https://doi.org/10.3390/bioengineering12030257
APA Style
Dahon, C., Aguida, B., Lebon, Y., Le Guen, P., Dangremont, A., Meyer, O., Citerne, J.-M., Pooam, M., Raad, H., Thoradit, T., Jourdan, N., Bertagna, F., & Ahmad, M.
(2025). A Novel Method for Achieving Precision and Reproducibility in a 1.8 GHz Radiofrequency Exposure System That Modulates Intracellular ROS as a Function of Signal Amplitude in Human Cell Cultures. Bioengineering, 12(3), 257.
https://doi.org/10.3390/bioengineering12030257