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根据临界单元概念计算所含239Pu和131I的比能。

Calculation of specific energies of incorporated 239Pu and 131I in accordance with the concept of the critical cell.

作者信息

Tisljar-Lentulis G, Feinendegen L E, Walther H

出版信息

Radiat Environ Biophys. 1976 Oct 7;13(3):197-204. doi: 10.1007/BF01330764.

Abstract

A better understanding of the effects of energy deposited in cells by incorporated isotopes can be expected from an analysis of differential cell doses. With this thought in mind, the distributions of specific energies in tissue were calculated for 239Pu and 131I. A program written in Fortran IV makes use of a matrix of spherical cells and cell nuclei of 10 and 8 mum diameter, respectively. The cells are arranged in close-packed structure. The radioactivity is considered as being compiled to point sources of 1 dps activity. The sources are located in the common centers of cells and nuclei. The calculations yield discrete values of specific energy using the mass of the nuclei for mass of reference. The numbers of cell nuclei receiving given amounts of specific energy are functions of the specific activity of the isotopes in the tissue. The specific activity is varied by changing the number of sources per g of tissue. The program also allows to calculate the numbers of cell nuclei with zero energy deposition. From the 1 dps point sources an average specific energy of 831 rads/h results for plutonium for cell nuclei within the range of the 5.14 MeV alpha-particles. For iodine, the value is 35 mrads/h within the range of the beta-particles of 188 KeV mean energy. If the volumes irradiated by the sources begin to overlap these values begin to increase accordingly.

摘要

通过对微分细胞剂量进行分析,有望更好地理解掺入的同位素在细胞中沉积的能量所产生的影响。基于这一想法,计算了239Pu和131I在组织中的比能分布。用Fortran IV编写的一个程序利用了分别由直径为10微米和8微米的球形细胞和细胞核组成的矩阵。细胞按紧密堆积结构排列。放射性被视为由1 dps活度的点源组成。这些源位于细胞和细胞核的共同中心。计算使用核的质量作为参考质量得出比能的离散值。接收给定比能的细胞核数量是组织中同位素比活度的函数。通过改变每克组织中的源数量来改变比活度。该程序还可以计算能量沉积为零的细胞核数量。对于1 dps的点源,在5.14 MeVα粒子范围内,钚对细胞核的平均比能为831拉德/小时。对于碘,在平均能量为188 KeV的β粒子范围内,该值为35毫拉德/小时。如果源所照射的体积开始重叠,这些值会相应增加。

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