Pál-Jakab, Á.; Kiss, B.; Nagy, B.; Boldizsár, I.; Osztheimer, I.; Dévényiné, E.R.; Kékesi, V.; Lóránt, Z.; Merkely, B.; Zima, E.
Predicting the Higher Energy Need for Effective Defibrillation Using Machine Learning Based on an Animal Model. J. Clin. Med. 2025, 14, 3879.
https://doi.org/10.3390/jcm14113879
AMA Style
Pál-Jakab Á, Kiss B, Nagy B, Boldizsár I, Osztheimer I, Dévényiné ER, Kékesi V, Lóránt Z, Merkely B, Zima E.
Predicting the Higher Energy Need for Effective Defibrillation Using Machine Learning Based on an Animal Model. Journal of Clinical Medicine. 2025; 14(11):3879.
https://doi.org/10.3390/jcm14113879
Chicago/Turabian Style
Pál-Jakab, Ádám, Boldizsár Kiss, Bettina Nagy, Ivetta Boldizsár, István Osztheimer, Erika Rózsa Dévényiné, Violetta Kékesi, Zsolt Lóránt, Béla Merkely, and Endre Zima.
2025. "Predicting the Higher Energy Need for Effective Defibrillation Using Machine Learning Based on an Animal Model" Journal of Clinical Medicine 14, no. 11: 3879.
https://doi.org/10.3390/jcm14113879
APA Style
Pál-Jakab, Á., Kiss, B., Nagy, B., Boldizsár, I., Osztheimer, I., Dévényiné, E. R., Kékesi, V., Lóránt, Z., Merkely, B., & Zima, E.
(2025). Predicting the Higher Energy Need for Effective Defibrillation Using Machine Learning Based on an Animal Model. Journal of Clinical Medicine, 14(11), 3879.
https://doi.org/10.3390/jcm14113879