Albors, C.; Lluch, È.; Gomez, J.F.; Cedilnik, N.; Mountris, K.A.; Mansi, T.; Khamzin, S.; Dokuchaev, A.; Solovyova, O.; Pueyo, E.;
et al. Meshless Electrophysiological Modeling of Cardiac Resynchronization Therapy—Benchmark Analysis with Finite-Element Methods in Experimental Data. Appl. Sci. 2022, 12, 6438.
https://doi.org/10.3390/app12136438
AMA Style
Albors C, Lluch È, Gomez JF, Cedilnik N, Mountris KA, Mansi T, Khamzin S, Dokuchaev A, Solovyova O, Pueyo E,
et al. Meshless Electrophysiological Modeling of Cardiac Resynchronization Therapy—Benchmark Analysis with Finite-Element Methods in Experimental Data. Applied Sciences. 2022; 12(13):6438.
https://doi.org/10.3390/app12136438
Chicago/Turabian Style
Albors, Carlos, Èric Lluch, Juan Francisco Gomez, Nicolas Cedilnik, Konstantinos A. Mountris, Tommaso Mansi, Svyatoslav Khamzin, Arsenii Dokuchaev, Olga Solovyova, Esther Pueyo,
and et al. 2022. "Meshless Electrophysiological Modeling of Cardiac Resynchronization Therapy—Benchmark Analysis with Finite-Element Methods in Experimental Data" Applied Sciences 12, no. 13: 6438.
https://doi.org/10.3390/app12136438
APA Style
Albors, C., Lluch, È., Gomez, J. F., Cedilnik, N., Mountris, K. A., Mansi, T., Khamzin, S., Dokuchaev, A., Solovyova, O., Pueyo, E., Sermesant, M., Sebastian, R., Morales, H. G., & Camara, O.
(2022). Meshless Electrophysiological Modeling of Cardiac Resynchronization Therapy—Benchmark Analysis with Finite-Element Methods in Experimental Data. Applied Sciences, 12(13), 6438.
https://doi.org/10.3390/app12136438