Hoque, S.M.H.; Pirrone, G.; Matrone, F.; Donofrio, A.; Fanetti, G.; Caroli, A.; Rista, R.S.; Bortolus, R.; Avanzo, M.; Drigo, A.;
et al. Clinical Use of a Commercial Artificial Intelligence-Based Software for Autocontouring in Radiation Therapy: Geometric Performance and Dosimetric Impact. Cancers 2023, 15, 5735.
https://doi.org/10.3390/cancers15245735
AMA Style
Hoque SMH, Pirrone G, Matrone F, Donofrio A, Fanetti G, Caroli A, Rista RS, Bortolus R, Avanzo M, Drigo A,
et al. Clinical Use of a Commercial Artificial Intelligence-Based Software for Autocontouring in Radiation Therapy: Geometric Performance and Dosimetric Impact. Cancers. 2023; 15(24):5735.
https://doi.org/10.3390/cancers15245735
Chicago/Turabian Style
Hoque, S M Hasibul, Giovanni Pirrone, Fabio Matrone, Alessandra Donofrio, Giuseppe Fanetti, Angela Caroli, Rahnuma Shahrin Rista, Roberto Bortolus, Michele Avanzo, Annalisa Drigo,
and et al. 2023. "Clinical Use of a Commercial Artificial Intelligence-Based Software for Autocontouring in Radiation Therapy: Geometric Performance and Dosimetric Impact" Cancers 15, no. 24: 5735.
https://doi.org/10.3390/cancers15245735
APA Style
Hoque, S. M. H., Pirrone, G., Matrone, F., Donofrio, A., Fanetti, G., Caroli, A., Rista, R. S., Bortolus, R., Avanzo, M., Drigo, A., & Chiovati, P.
(2023). Clinical Use of a Commercial Artificial Intelligence-Based Software for Autocontouring in Radiation Therapy: Geometric Performance and Dosimetric Impact. Cancers, 15(24), 5735.
https://doi.org/10.3390/cancers15245735