Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Alexandre Huat"'
Autor:
Thibaud Brochet, Jérôme Lapuyade-Lahorgue, Alexandre Huat, Sébastien Thureau, David Pasquier, Isabelle Gardin, Romain Modzelewski, David Gibon, Juliette Thariat, Vincent Grégoire, Pierre Vera, Su Ruan
Publikováno v:
Entropy, Vol 24, Iss 5, p 685 (2022)
Alexandre Huat, Sébastien Thureau, David Pasquier, Isabelle Gardin, Romain Modzelewski, David Gibon, Juliette Thariat and Vincent Grégoire were not included as authors in the original publication [...]
Externí odkaz:
https://doaj.org/article/0bfb40bab67a4fbf807e6f40ac0e9eb2
Autor:
Thibaud Brochet, Jérôme Lapuyade-Lahorgue, Alexandre Huat, Sébastien Thureau, David Pasquier, Isabelle Gardin, Romain Modzelewski, David Gibon, Juliette Thariat, Vincent Grégoire, Pierre Vera, Su Ruan
Publikováno v:
Entropy, Vol 24, Iss 4, p 436 (2022)
In this paper, we propose to quantitatively compare loss functions based on parameterized Tsallis–Havrda–Charvat entropy and classical Shannon entropy for the training of a deep network in the case of small datasets which are usually encountered
Externí odkaz:
https://doaj.org/article/f22e645df8374da18d4dfbd3213c313b
Autor:
Brochet, Thibaud1 (AUTHOR) thibaud.brochet@univ-rouen.fr, Lapuyade-Lahorgue, Jérôme1 (AUTHOR) jerome.lapuyade-lahorgue@univ-rouen.fr, Huat, Alexandre1,2,3 (AUTHOR) alexandre.huat@univ-rouen.fr, Thureau, Sébastien1,2 (AUTHOR) sebastien.thureau@chb.unicancer.fr, Pasquier, David4 (AUTHOR) d-pasquier@o-lambret.fr, Gardin, Isabelle1,2 (AUTHOR) isabelle.gardin@chb.unicancer.fr, Modzelewski, Romain1,2 (AUTHOR) romain.modzelewski@chb.unicancer.fr, Gibon, David3 (AUTHOR), Thariat, Juliette5 (AUTHOR) juliette.thariat@cfb.unicancer.fr, Grégoire, Vincent6 (AUTHOR) vincent.gregoire@crcl.fr, Vera, Pierre1,2 (AUTHOR) pierre.vera@chb.unicancer.fr, Ruan, Su1 (AUTHOR) su.ruan@univ-rouen.fr
Publikováno v:
Entropy. May2022, Vol. 24 Issue 5, pN.PAG-N.PAG. 1p.
Publikováno v:
Machine Learning; Nov2022, Vol. 111 Issue 11, p4249-4293, 45p
This book covers virtually all aspects of image formation in medical imaging, including systems based on ionizing radiation (x-rays, gamma rays) and non-ionizing techniques (ultrasound, optical, thermal, magnetic resonance, and magnetic particle imag