376
Physique appliquée à l’exposition externe : dosimétrie et radioprotection
[18] Klein O, Nishina, Y (1929) Die Streuung von Strahlung durch freie Elektronen
nach der neuen relativistischen Quantendynamik von Dirac. Z F Phys 52 (11–12): 853–
869.
[19] Lelache H (2002) Démarche ALARA. Contribution à la diminution de l’exposition
radiologique. Les journées de la propreté radiologique, CEA Saclay.
[20] Microshield (2009) Grove Software Inc. www.radiationsoftware.com
[21] NCRP (1976) Structural shielding design and evaluation for medical use of X Rays
and Gamma rays of energies up to 10 MeV. NCRP report n° 49.
[22] NCRP (1977) Radiation protection design guidelines for 0.1 – 100 MeV particle
accelerator facilities. NCRP report n° 51.
[23] NCRP (2003) Radiation Protection for Particle Accelerator Facilities. NCRP report 144.
[24] NCRP (2008) Structural shielding and evaluation for megavoltage X and gamma
rays radiotherapy facilities. NCRP report n° 151.
[25] NF C 15–160 (2011) Installations pour la production et l’utilisation de rayonnement X – exigences de radioprotection.
[26] Pages L, Bertel E, Joffre H, Sklavenitis L (1972) Energy loss, range and
bremsstralhung yield for 10 keV to 100 MeV electrons. Atomic data Vol. 4, N° 1.
[27] PMDS (1968) Catalogue des centres d’études nucléaires – Chapitre I. Éléments
constitutifs d’enceintes blindées, CEA.
[28] PMDS (1969) Catalogue des centres d’études nucléaires – Chapitre III. Manipulation, première partie, CEA.
[29] Shultis JK, Faw RE (2000) Radiation Shielding. American Nuclear Society, Inc.
[30] NCRP (2004) Structural shielding design for medical X–ray imaging facilities.
NCRP Report 147.
[31] Sullivan AH (1992) A guide to radiation and radioactivity levels near high energy
particle accelerators. Nuclear Technology Publishing.
[32] Suteau C, Chiron M, Luneville L, Berger L, Huver M (2003) MERCURE : un code
3D industriel de propagation des gammas par la méthode d’atténuation en ligne droite.
Applications en radioprotection. Codes de calcul en dosimétrie radiophysique et radioprotection. Congrès de la SFRP Sochaux.
[33] Suteau C, Chiron M, Arnaud G (2004) Improvement of the MERCURE–6’s General Formalism for Calculating γ–Ray Build-up Factors in Multilayer Shields. Nuclear
Science and Engineering, 147, 43–55.
[34] Tanaka et al. (1988) Annotated bibliography and discussion of gamma–ray buildup factors. Appl Radiat Isot Vol. 39, N°3, 241–252.
[35] White GR (1950) the penetration of Co60 Gamma–Rays in water Using Spherical
geometry. Phys Rev Vol. 80, N°1.
Physique appliquée à l’exposition externe : dosimétrie et radioprotection
[18] Klein O, Nishina, Y (1929) Die Streuung von Strahlung durch freie Elektronen
nach der neuen relativistischen Quantendynamik von Dirac. Z F Phys 52 (11–12): 853–
869.
[19] Lelache H (2002) Démarche ALARA. Contribution à la diminution de l’exposition
radiologique. Les journées de la propreté radiologique, CEA Saclay.
[20] Microshield (2009) Grove Software Inc. www.radiationsoftware.com
[21] NCRP (1976) Structural shielding design and evaluation for medical use of X Rays
and Gamma rays of energies up to 10 MeV. NCRP report n° 49.
[22] NCRP (1977) Radiation protection design guidelines for 0.1 – 100 MeV particle
accelerator facilities. NCRP report n° 51.
[23] NCRP (2003) Radiation Protection for Particle Accelerator Facilities. NCRP report 144.
[24] NCRP (2008) Structural shielding and evaluation for megavoltage X and gamma
rays radiotherapy facilities. NCRP report n° 151.
[25] NF C 15–160 (2011) Installations pour la production et l’utilisation de rayonnement X – exigences de radioprotection.
[26] Pages L, Bertel E, Joffre H, Sklavenitis L (1972) Energy loss, range and
bremsstralhung yield for 10 keV to 100 MeV electrons. Atomic data Vol. 4, N° 1.
[27] PMDS (1968) Catalogue des centres d’études nucléaires – Chapitre I. Éléments
constitutifs d’enceintes blindées, CEA.
[28] PMDS (1969) Catalogue des centres d’études nucléaires – Chapitre III. Manipulation, première partie, CEA.
[29] Shultis JK, Faw RE (2000) Radiation Shielding. American Nuclear Society, Inc.
[30] NCRP (2004) Structural shielding design for medical X–ray imaging facilities.
NCRP Report 147.
[31] Sullivan AH (1992) A guide to radiation and radioactivity levels near high energy
particle accelerators. Nuclear Technology Publishing.
[32] Suteau C, Chiron M, Luneville L, Berger L, Huver M (2003) MERCURE : un code
3D industriel de propagation des gammas par la méthode d’atténuation en ligne droite.
Applications en radioprotection. Codes de calcul en dosimétrie radiophysique et radioprotection. Congrès de la SFRP Sochaux.
[33] Suteau C, Chiron M, Arnaud G (2004) Improvement of the MERCURE–6’s General Formalism for Calculating γ–Ray Build-up Factors in Multilayer Shields. Nuclear
Science and Engineering, 147, 43–55.
[34] Tanaka et al. (1988) Annotated bibliography and discussion of gamma–ray buildup factors. Appl Radiat Isot Vol. 39, N°3, 241–252.
[35] White GR (1950) the penetration of Co60 Gamma–Rays in water Using Spherical
geometry. Phys Rev Vol. 80, N°1.
