Decomposition of a Tissue Into Its Constituent Elements for Specifying the Values of Doses

Seyed Alireza Mousavi Shirazi
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Abstract

In this research, a real tissue has been decomposed to its constituent materials and elements applying its volumetric density and initial mass. This study has been carried out to obtain the exact amounts of constituent elements existing in liver tissue as well as specify the absorbed dose because of the tissue getting exposed to radiation in radiotherapy and radiography. In order, a medical model has been defined in a way that its compositions are just like the materials existing in the tissue of a human. Then, the accurate mass, density, and volume of every element in it are specified. In the next stage, the related tissue is exposed to a neutron beam, and then the values of doses absorbed in the main constituent material namely water, and also the total absorbed dose is obtained by the MCNP nuclear code. This study can be used to study the radiotherapy and radiography scopes for obtaining the absorbed dose as a result of interaction between radiation beam and biological cells. In this research, the values of absorbed doses have been obtained for a wide range of neutron energies in a way that the absorbed doses can accurately be obtained.
为确定剂量值而将组织分解为其组成元素
在本研究中,利用真实组织的体积密度和初始质量将其分解为其组成材料和元素。本研究的目的是获得肝组织中存在的组成元素的确切量,并规定肝组织在放射治疗和放射照相中受到辐射的吸收剂量。因此,医学模型被定义为其组成就像存在于人体组织中的材料一样。然后,确定其中每个元素的精确质量、密度和体积。在下一阶段,将相关组织暴露于中子束中,然后通过MCNP核代码获得主要成分物质即水的吸收剂量值以及总吸收剂量。本研究可用于研究放射治疗和放射照相范围,以获得放射束与生物细胞相互作用所产生的吸收剂量。本研究在较宽的中子能量范围内得到了吸收剂量的值,从而可以准确地得到吸收剂量。
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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