Study on the Effect of Adipose Tissue on Neutron Dose Evaluation for the Human Body Using Voxel Phantoms with Different Weight.

IF 1.4 4区 医学 Q4 ENVIRONMENTAL SCIENCES
Xu Xu, Yong Yuan, Xiao-Min Zhang
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引用次数: 0

Abstract

Abstract: When human body is irradiated by neutrons, the adipose content has a significant impact on the neutron dose and induced 24Na activity. To investigate the effect of human adipose content on the conversion coefficients from 24Na activity to neutron dose, five male adult reference computational phantoms with weights ranging from 73.5 kg to 136.5 kg were used. The Monte Carlo N-particle (MCNP) code was used to calculate the neutron absorbed dose and the yield of induced 24Na in the phantoms irradiated by 252Cf neutrons and monoenergetic neutrons. The results showed that the difference in the conversion coefficients from 24Na activity to neutron absorbed dose among the five phantoms irradiated by 252Cf neutrons with anterior posterior (AP) geometry was ≤23.30%, and this difference was attributed mainly to the neutron absorbed dose, which increases with increasing adipose content. Considering the self-absorption of gamma rays in the human body, the counts of 24Na characteristic gamma rays measured directly by the radiation detector outside of the body have no significant trend varying with adipose content, and the difference in the conversion coefficients from the measured counts to neutron dose among the five phantoms irradiated by 252Cf neutrons with AP geometry was ≤5.25%.

用不同重量体素模型研究脂肪组织对人体中子剂量评价的影响
摘要:人体受中子辐照时,脂肪含量对中子剂量和诱导24Na活性有显著影响。为了研究人体脂肪含量对24Na活度与中子剂量转换系数的影响,我们使用了5只体重在73.5 ~ 136.5 kg之间的成年男性参考计算模型。用蒙特卡罗n粒子(MCNP)程序计算了252Cf中子和单能中子辐照的幻影中中子吸收剂量和诱导24Na的产额。结果表明:经前后几何形状的252Cf中子辐照的5个幻影,其24Na活度与中子吸收剂量的转换系数差≤23.30%,这主要是由于中子吸收剂量随脂肪含量的增加而增大。考虑到伽马射线在人体内的自吸收,体外辐射探测器直接测得的24Na特征伽马射线计数随脂肪含量的变化无显著趋势,经AP几何形状的252Cf中子辐照的5个幻影中,测得的计数与中子剂量的换算系数差≤5.25%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Health physics
Health physics 医学-公共卫生、环境卫生与职业卫生
CiteScore
4.20
自引率
0.00%
发文量
324
审稿时长
3-8 weeks
期刊介绍: Health Physics, first published in 1958, provides the latest research to a wide variety of radiation safety professionals including health physicists, nuclear chemists, medical physicists, and radiation safety officers with interests in nuclear and radiation science. The Journal allows professionals in these and other disciplines in science and engineering to stay on the cutting edge of scientific and technological advances in the field of radiation safety. The Journal publishes original papers, technical notes, articles on advances in practical applications, editorials, and correspondence. Journal articles report on the latest findings in theoretical, practical, and applied disciplines of epidemiology and radiation effects, radiation biology and radiation science, radiation ecology, and related fields.
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