Principes généraux de protection contre l’exposition externe
375
Références
[1] Alcouffe RE, Brinkley FW, Marr DR, O’Dell RD (1990) User’s Guide for TWODANT: A Code Package for Two-Dimensional, Diffusion-Accelerated, Neutral-Particle,
Transport, LA–10049–M Revised.
[2] ANSI/ANS–6.4.3 (1991) American National Standard Gamma ray attenuation Coefficients and build-up factors for engineering materials, American Nuclear Society.
[3] Bourgois L (1999) Cours régional AIEA sur la notification l’enregistrement et le
contrôle des sources de rayonnements. Travaux Dirigés Évaluation de la sûreté d’un
irradiateur.
[4] Bourgois L, Comte N (2001) Calcul des facteurs de transmission pour les neutrons
en équivalent de dose (CIPR 60) par une méthode de Monte-Carlo. Congrès SFRP
Tours.
[5] Cember H (1983) Introduction to health Physics. 2
nd edition, Pergamon Press.
[6] Delacroix D, Guerre JP, Leblanc P (2004) Radionucléides & radioprotection. EDP
Sciences ISBN 2–86883–704–2.
[7] Jaeger, ed (1968) Engineering Compendium on Radiation Shielding. Volume I.
Shielding Fundamentals and Methods, Springer.
[8] Hubbell JH, Seltzer SM (1996) Tables of X–Ray Mass Attenuation Coefficients and
Mass Energy–Absorption Coefficients from 1 keV to 20 MeV for Elements Z = 1 to 92
and 48 Additional Substances of Dosimetric Interest Ionizing Radiation Division, Physics Laboratory, NIST.
Disponible sur le site http://physics.nist.gov/PhysRefData/XrayMassCoef/tab3.html et
http://physics.nist.gov/PhysRefData/XrayMassCoef/tab4.html
[9] IAEA (1979) Radiological Safety Aspects of the operation of electron Linear Accelerators. IAEA Technical reports series n° 188.
[10] IAEA (1992) Practical radiation safety manual. Manual on shielded enclosures.
Incorporing applications guide procedures guide basics guide. IEA–PRSM–2.
[11] IAEA (1988) Radiological Safety Aspects of the operation of Proton Accelerators.
IAEA Technical reports series n°283.
[12] IAEA (2000) Handbook on photonuclear data for applications. IAEA TecDoc 1178.
[13] ICRP (1971) Protection against Ionizing Radiation from External Sources and
Data for Protection against Ionizing Radiation from External Sources, publication 15
and 21.
[14] INRS (1997) Ozone. Fiche toxicologique n°43.
[15] International Electrotechnical Commission. (1981) Safety of Medical Electrical
Equipment Part. 2: Particular Requirements for Medical Electron Accelerators in the
Range 1 MeV to 50 MeV. (Bureau Central de la Commission Electrotechnique Internationale Geneve, Suisse) Publication 601–2–1.
[16] ISO (2002) Écrans de protection neutroniques – Principes de conception et éléments pour le choix de matériaux appropriés. Norme NF ISO 14152.
[17] Katz L, Penfold AS (1952) Range energy relations for electrons and the determination on beta–ray end point energies by absorption. Reviews of Modern Physics Vol. 24,
n°1, 28–44.
375
Références
[1] Alcouffe RE, Brinkley FW, Marr DR, O’Dell RD (1990) User’s Guide for TWODANT: A Code Package for Two-Dimensional, Diffusion-Accelerated, Neutral-Particle,
Transport, LA–10049–M Revised.
[2] ANSI/ANS–6.4.3 (1991) American National Standard Gamma ray attenuation Coefficients and build-up factors for engineering materials, American Nuclear Society.
[3] Bourgois L (1999) Cours régional AIEA sur la notification l’enregistrement et le
contrôle des sources de rayonnements. Travaux Dirigés Évaluation de la sûreté d’un
irradiateur.
[4] Bourgois L, Comte N (2001) Calcul des facteurs de transmission pour les neutrons
en équivalent de dose (CIPR 60) par une méthode de Monte-Carlo. Congrès SFRP
Tours.
[5] Cember H (1983) Introduction to health Physics. 2
nd edition, Pergamon Press.
[6] Delacroix D, Guerre JP, Leblanc P (2004) Radionucléides & radioprotection. EDP
Sciences ISBN 2–86883–704–2.
[7] Jaeger, ed (1968) Engineering Compendium on Radiation Shielding. Volume I.
Shielding Fundamentals and Methods, Springer.
[8] Hubbell JH, Seltzer SM (1996) Tables of X–Ray Mass Attenuation Coefficients and
Mass Energy–Absorption Coefficients from 1 keV to 20 MeV for Elements Z = 1 to 92
and 48 Additional Substances of Dosimetric Interest Ionizing Radiation Division, Physics Laboratory, NIST.
Disponible sur le site http://physics.nist.gov/PhysRefData/XrayMassCoef/tab3.html et
http://physics.nist.gov/PhysRefData/XrayMassCoef/tab4.html
[9] IAEA (1979) Radiological Safety Aspects of the operation of electron Linear Accelerators. IAEA Technical reports series n° 188.
[10] IAEA (1992) Practical radiation safety manual. Manual on shielded enclosures.
Incorporing applications guide procedures guide basics guide. IEA–PRSM–2.
[11] IAEA (1988) Radiological Safety Aspects of the operation of Proton Accelerators.
IAEA Technical reports series n°283.
[12] IAEA (2000) Handbook on photonuclear data for applications. IAEA TecDoc 1178.
[13] ICRP (1971) Protection against Ionizing Radiation from External Sources and
Data for Protection against Ionizing Radiation from External Sources, publication 15
and 21.
[14] INRS (1997) Ozone. Fiche toxicologique n°43.
[15] International Electrotechnical Commission. (1981) Safety of Medical Electrical
Equipment Part. 2: Particular Requirements for Medical Electron Accelerators in the
Range 1 MeV to 50 MeV. (Bureau Central de la Commission Electrotechnique Internationale Geneve, Suisse) Publication 601–2–1.
[16] ISO (2002) Écrans de protection neutroniques – Principes de conception et éléments pour le choix de matériaux appropriés. Norme NF ISO 14152.
[17] Katz L, Penfold AS (1952) Range energy relations for electrons and the determination on beta–ray end point energies by absorption. Reviews of Modern Physics Vol. 24,
n°1, 28–44.
