Organ and Effective Dose Coefficients for Cranial and Caudal Irradiation Geometries: Neutrons

With the introduction of new recommendations by ICRP Publication 103, the methodology for determining the protection quantity, effective dose, has been modified. The modifications include changes to the defined organs and tissues, the associated tissue weighting factors, radiation weighting factors,...

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Main Authors: Veinot K.G., Eckerman K.F., Hertel N.E., Hiller M.M.
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:EPJ Web of Conferences
Online Access:https://doi.org/10.1051/epjconf/201715301009
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spelling doaj-7a042aa098984add8f2d5e69702099042021-08-02T08:40:58ZengEDP SciencesEPJ Web of Conferences2100-014X2017-01-011530100910.1051/epjconf/201715301009epjconf_icrs2017_01009Organ and Effective Dose Coefficients for Cranial and Caudal Irradiation Geometries: NeutronsVeinot K.G.Eckerman K.F.0Hertel N.E.Hiller M.M.1Center for Radiation Protection Knowledge Oak Ridge National LaboratoryCenter for Radiation Protection Knowledge Oak Ridge National LaboratoryWith the introduction of new recommendations by ICRP Publication 103, the methodology for determining the protection quantity, effective dose, has been modified. The modifications include changes to the defined organs and tissues, the associated tissue weighting factors, radiation weighting factors, and the introduction of reference sex-specific computational phantoms (ICRP Publication 110). Computations of equivalent doses in organs and tissues are now performed in both the male and female phantoms and the sex-averaged values used to determine the effective dose. Dose coefficients based on the ICRP 103 recommendations were reported in ICRP Publication 116, the revision of ICRP Publication 74 and ICRU Publication 57. The coefficients were determined for the following irradiation geometries: anterior-posterior (AP), posterior-anterior (PA), right and left lateral (RLAT and LLAT), rotational (ROT), and isotropic (ISO). In this work, the methodology of ICRP Publication 116 was used to compute dose coefficients for neutron irradiation of the body with parallel beams directed upward from below the feet (caudal) and directed downward from above the head (cranial). These geometries may be encountered in the workplace from personnel standing on contaminated surfaces or volumes and from overhead sources. Calculations of organ and tissue absorbed doses for caudal and cranial exposures to neutrons ranging in energy from 10-9 MeV to 10 GeV have been performed using the MCNP6 radiation transport code and the adult reference voxel phantoms of ICRP Publication 110. At lower energies the effective dose per particle fluence for cranial and caudal exposures is less than AP orientations while above about 30 MeV the cranial and caudal values are greater.https://doi.org/10.1051/epjconf/201715301009
collection DOAJ
language English
format Article
sources DOAJ
author Veinot K.G.
Eckerman K.F.
Hertel N.E.
Hiller M.M.
spellingShingle Veinot K.G.
Eckerman K.F.
Hertel N.E.
Hiller M.M.
Organ and Effective Dose Coefficients for Cranial and Caudal Irradiation Geometries: Neutrons
EPJ Web of Conferences
author_facet Veinot K.G.
Eckerman K.F.
Hertel N.E.
Hiller M.M.
author_sort Veinot K.G.
title Organ and Effective Dose Coefficients for Cranial and Caudal Irradiation Geometries: Neutrons
title_short Organ and Effective Dose Coefficients for Cranial and Caudal Irradiation Geometries: Neutrons
title_full Organ and Effective Dose Coefficients for Cranial and Caudal Irradiation Geometries: Neutrons
title_fullStr Organ and Effective Dose Coefficients for Cranial and Caudal Irradiation Geometries: Neutrons
title_full_unstemmed Organ and Effective Dose Coefficients for Cranial and Caudal Irradiation Geometries: Neutrons
title_sort organ and effective dose coefficients for cranial and caudal irradiation geometries: neutrons
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2017-01-01
description With the introduction of new recommendations by ICRP Publication 103, the methodology for determining the protection quantity, effective dose, has been modified. The modifications include changes to the defined organs and tissues, the associated tissue weighting factors, radiation weighting factors, and the introduction of reference sex-specific computational phantoms (ICRP Publication 110). Computations of equivalent doses in organs and tissues are now performed in both the male and female phantoms and the sex-averaged values used to determine the effective dose. Dose coefficients based on the ICRP 103 recommendations were reported in ICRP Publication 116, the revision of ICRP Publication 74 and ICRU Publication 57. The coefficients were determined for the following irradiation geometries: anterior-posterior (AP), posterior-anterior (PA), right and left lateral (RLAT and LLAT), rotational (ROT), and isotropic (ISO). In this work, the methodology of ICRP Publication 116 was used to compute dose coefficients for neutron irradiation of the body with parallel beams directed upward from below the feet (caudal) and directed downward from above the head (cranial). These geometries may be encountered in the workplace from personnel standing on contaminated surfaces or volumes and from overhead sources. Calculations of organ and tissue absorbed doses for caudal and cranial exposures to neutrons ranging in energy from 10-9 MeV to 10 GeV have been performed using the MCNP6 radiation transport code and the adult reference voxel phantoms of ICRP Publication 110. At lower energies the effective dose per particle fluence for cranial and caudal exposures is less than AP orientations while above about 30 MeV the cranial and caudal values are greater.
url https://doi.org/10.1051/epjconf/201715301009
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