Cite
Gene Electrotransfer via Conductivity‐Clamped Electric Field Focusing Pivots Sensori‐Motor DNA Therapeutics: "A Spoonful of Sugar Helps the Medicine Go Down" (Adv. Sci. 30/2024).
MLA
Pinyon, Jeremy L., et al. “Gene Electrotransfer via Conductivity‐Clamped Electric Field Focusing Pivots Sensori‐Motor DNA Therapeutics: ‘A Spoonful of Sugar Helps the Medicine Go Down’ (Adv. Sci. 30/2024).” Advanced Science, vol. 11, no. 30, Aug. 2024, p. 1. EBSCOhost, https://doi.org/10.1002/advs.202470180.
APA
Pinyon, J. L., von Jonquieres, G., Crawford, E. N., Abed, A. A., Power, J. M., Klugmann, M., Browne, C. J., Housley, D. M., Wise, A. K., Fallon, J. B., Shepherd, R. K., Lin, J. Y., McMahon, C., McAlpine, D., Birman, C. S., Lai, W., Enke, Y. L., Carter, P. M., Patrick, J. F., & Gay, R. D. (2024). Gene Electrotransfer via Conductivity‐Clamped Electric Field Focusing Pivots Sensori‐Motor DNA Therapeutics: “A Spoonful of Sugar Helps the Medicine Go Down” (Adv. Sci. 30/2024). Advanced Science, 11(30), 1. https://doi.org/10.1002/advs.202470180
Chicago
Pinyon, Jeremy L., Georg von Jonquieres, Edward N. Crawford, Amr Al Abed, John M. Power, Matthias Klugmann, Cherylea J. Browne, et al. 2024. “Gene Electrotransfer via Conductivity‐Clamped Electric Field Focusing Pivots Sensori‐Motor DNA Therapeutics: ‘A Spoonful of Sugar Helps the Medicine Go Down’ (Adv. Sci. 30/2024).” Advanced Science 11 (30): 1. doi:10.1002/advs.202470180.