Santarelli, M.F.; Joubbi, S.; Meloni, A.; Pistoia, L.; Casini, T.; Massei, F.; Bitti, P.P.; Allò, M.; Cademartiri, F.; Positano, V.
Fat-Corrected Pancreatic R2* Relaxometry from Multi-Echo Gradient-Recalled Echo Sequence Using Convolutional Neural Network. Electronics 2022, 11, 2829.
https://doi.org/10.3390/electronics11182829
AMA Style
Santarelli MF, Joubbi S, Meloni A, Pistoia L, Casini T, Massei F, Bitti PP, Allò M, Cademartiri F, Positano V.
Fat-Corrected Pancreatic R2* Relaxometry from Multi-Echo Gradient-Recalled Echo Sequence Using Convolutional Neural Network. Electronics. 2022; 11(18):2829.
https://doi.org/10.3390/electronics11182829
Chicago/Turabian Style
Santarelli, Maria Filomena, Sara Joubbi, Antonella Meloni, Laura Pistoia, Tommaso Casini, Francesco Massei, Pier Paolo Bitti, Massimo Allò, Filippo Cademartiri, and Vincenzo Positano.
2022. "Fat-Corrected Pancreatic R2* Relaxometry from Multi-Echo Gradient-Recalled Echo Sequence Using Convolutional Neural Network" Electronics 11, no. 18: 2829.
https://doi.org/10.3390/electronics11182829
APA Style
Santarelli, M. F., Joubbi, S., Meloni, A., Pistoia, L., Casini, T., Massei, F., Bitti, P. P., Allò, M., Cademartiri, F., & Positano, V.
(2022). Fat-Corrected Pancreatic R2* Relaxometry from Multi-Echo Gradient-Recalled Echo Sequence Using Convolutional Neural Network. Electronics, 11(18), 2829.
https://doi.org/10.3390/electronics11182829