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首页> 外文期刊>Journal of radiation research >Internal exposure rate conversion coefficients and absorbed fractions of mouse for 137Cs, 134Cs and 90Sr contamination in body
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Internal exposure rate conversion coefficients and absorbed fractions of mouse for 137Cs, 134Cs and 90Sr contamination in body

机译:内部曝光速率转化系数和小鼠的吸收分数为137℃,134℃和90sr污染体内

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The aim of this study was to determine parameters for estimating the internal exposure of all organs in mouse experiments from the radioactivity concentration in organs. The estimation of internal exposure rate conversion coefficients and absorbed fractions for 137Cs, 134Cs and 90Sr by the Particle and Heavy Ion Transport code System (PHITS) with a voxel-based mouse phantom is presented. The geometry of the voxel phantom is constructed from computer tomography images of a mouse 9?cm in length weighing 23.9?g. The voxel-based mouse phantom has the following organs: brain, skull, heart, lungs, liver, stomach, spleen, kidneys, bladder, testis and tissue (tissue and other organs). Gamma- and beta-rays from 137Cs, 134Cs and 90Sr sources in each source organ are generated and scored for every target organ. The internal exposure rate conversion coefficients and absorbed fractions are calculated from deposition energies in each target organ from each source organ and are used to generate an internal exposure rate conversion coefficient matrix and an absorbed fraction matrix. The absorbed fractions of beta-rays in the source organs are roughly 0.5–0.8 for 137Cs and 134Cs, and the absorbed fractions of gamma-rays are 0.04 for 137Cs and 0.03 for 134Cs. The internal exposure rate conversion coefficient matrix is defined using the absorbed fractions. The calculated internal exposure rate coefficient matrix is tested under a uniform radioactivity concentration of 1?Bq/kg for 137Cs, 134Cs and 90Sr. The estimated internal exposure rates in the mouse whole body for 137Cs, 134Cs and 90Sr are 3.28?×?10?3, 2.55?×?10?3 and 1.20?×?10?2 μGy/d, respectively. These values are very similar to those for an ellipsoid frog (31.4?g) and an ellipsoid crab egg mass (12.6?g) reported in ICRP Publication 108.
机译:本研究的目的是确定估计小鼠实验中所有器官内部暴露的参数,从器官中的放射性浓度估计。提出了通过颗粒和重离子传输代码系统(PHITS)与基于体素的小鼠幻影的137℃,134℃和90SR的内部曝光速率转化系数和吸收级分的估计。体素幻像的几何形状由鼠标9Ωmm的计算机断层扫描图像构成,其长度为23.9μm≤j。基于体素的小鼠幻影具有以下器官:脑,头骨,心脏,肺,肝,胃,脾,肾,膀胱,睾丸和组织(组织和其他器官)。为每个源器官中的137℃,134CS和90SR源的γ-和β射线产生并为每个目标器官进行评分。内部曝光速率转化系数和吸收的级分由来自每个源器官的每个靶器官中的沉积能量计算,并用于产生内部曝光率转换系数矩阵和吸收的分数矩阵。对于137Cs和134Cs,源器官中的β射线的吸收级分数大约为0.5-0.8,并且137℃的γ射线的吸收级分<0.04,13 4℃。使用吸收的级分定义内部曝光率转换系数基质。计算出的内部曝光速率系数矩阵在1〜Bq / kg的均匀放射性浓度下测试137℃,134℃和90sr。鼠标全身的估计内部暴露率为137C,134C和90SR是3.28?×10?3,2.55?×10?3和1.20?×10?2μg/ d。这些值与ICRP出版物108中报告的椭圆体青蛙(31.4〜G)和椭球蟹蛋质量(12.6μl)的值非常相似。

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