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Dose coefficients of mesh-type ICRP reference computational phantoms for external exposures of neutrons, protons, and helium ionsopen access

Authors
Yeom, Yeon SooChoi, ChansooHan, HaeginShin, BanghoNguyen, Thang TatHan, Min CheolKim, Chan HyeongLee, Choonsik
Issue Date
Jul-2020
Publisher
KOREAN NUCLEAR SOC
Keywords
ICRP reference phantom; Mesh; Dose coefficient; Neutrons; Protons; Helium ions
Citation
NUCLEAR ENGINEERING AND TECHNOLOGY, v.52, no.7, pp.1545 - 1556
Indexed
SCIE
SCOPUS
KCI
Journal Title
NUCLEAR ENGINEERING AND TECHNOLOGY
Volume
52
Number
7
Start Page
1545
End Page
1556
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/9700
DOI
10.1016/j.net.2019.12.020
ISSN
1738-5733
Abstract
Recently, the International Commission on Radiological Protection (ICRP) has developed the Mesh-type Reference Computational Phantoms (MRCPs) for adult male and female to overcome the limitations of the current Voxel-type Reference Computational Phantoms (VRCPs) described in ICRP Publication 110 due to the limited voxel resolutions and the nature of voxel geometry. In our previous study, the MRCPs were used to calculate the dose coefficients (DCs) for idealized external exposures of photons and electrons. The present study is an extension of the previous study to include three additional particles (i.e., neutrons, protons, and helium ions) into the DC library by conducting Monte Carlo radiation transport simulations with the Geant4 code. The calculated MRCP DCs were compared with the reference DCs of ICRP Publication 116 which are based on the VRCPs, to appreciate the impact of the new reference phantoms on the DC values. We found that the MRCP DCs of organ/tissue doses and effective doses were generally similar to the ICRP-116 DCs for neutrons, whereas there were significant DC differences up to several orders of magnitude for protons and helium ions due mainly to the improved representation of the detailed anatomical structures in the MRCPs over the VRCPs.
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