首页> 外文期刊>Journal of Environmental Radioactivity >Dosimetric modeling of Tc-99, Cs-137, Np-237, and U-238 in the grass species Andropogon Virginicus: Development and comparison of stylized, voxel, and hybrid phantom geometry
【24h】

Dosimetric modeling of Tc-99, Cs-137, Np-237, and U-238 in the grass species Andropogon Virginicus: Development and comparison of stylized, voxel, and hybrid phantom geometry

机译:草样物种Andropogon Virginicus中Tc-99,Cs-137,Np-237和U-238的剂量学建模:程式化,体素和混合体模几何的开发和比较

获取原文
获取原文并翻译 | 示例
       

摘要

This paper discusses the development, comparison, and application of three anatomically representative computational phantoms for the grass species Andropogon virginicus, an indigenous grass species in the Southeastern United States. Specifically, the phantoms developed in this work are: (1) a stylized phantom where plant organs (roots or shoots) are represented by simple geometric shapes, (2) a voxel phantom developed from micro-CT imagery of a plant specimen, and (3) a hybrid phantom resulting from the refinement of (2) by use of nonuniform rational basis spline (NURBS) surfaces. For each computational phantom, Monte Carlo dosimetric modeling was utilized to determine whole-organism and organ specific dose coefficients (DC) associated with external and internal exposure to Tc-99, (CS)-C-137, Np-237, and U-238 for A. virginicus. Model DCs were compared to each other and to current values for the ICRP reference wild grass in order to determine if noteworthy differences resulted from the utilization of more anatomically realistic phantom geometry. Modeled internal DCs were comparable with ICRP values. However, modeled external DCs were more variable with respect to ICRP values; this is proposed to be primarily due to differences in organism and source geometry definitions. Overall, the three anatomical phantoms were reasonably consistent. Some noticeable differences in internal DCs were observed between the stylized model and the voxel or hybrid models for external DCs for shoots and for cases of crossfire between plant organs. Additionally, uptake data from previous hydroponic (HP) experiments was applied in conjunction with hybrid model DCs to determine dose rates to the plant from individual radionuclides as an example of practical application. Although the models within are applied to a small-scale, hypothetical scenario as proof-of-principle, the potential, real-world utility of such complex dosimetric models for non-human biota is discussed, and a fit-for purpose approach for application of these models is proposed.
机译:本文讨论了三种解剖学上具有代表性的计算体模在美国东南部本土草种安德罗贡·维吉尼古斯的发展,比较和应用。具体来说,在这项工作中开发的体模是:(1)风格化的体模,其中植物器官(根或芽)由简单的几何形状表示;(2)从植物标本的微CT图像开发的体素体模,以及( 3)通过使用非均匀有理基础样条(NURBS)曲面对(2)进行细化而得到的混合体模。对于每个计算模型,都采用了蒙特卡洛剂量学模型来确定与Tc-99,(CS)-C-137,Np-237和U-弗吉尼亚州238。将模型DC相互比较,并与ICRP参考野草的当前值进行比较,以确定是否由于使用更符合解剖学要求的幻像几何体而引起显着差异。建模的内部DC与ICRP值相当。但是,相对于ICRP值,建模的外部DC更具可变性。提出这主要是由于生物和来源几何定义的差异。总体而言,三个解剖体模是合理一致的。对于枝条和植物器官之间的交火情况,在程式化模型与体素模型或混合模型之间,对于外部DC,在内部DC中观察到一些显着差异。此外,将以前的水培(HP)实验的吸收数据与混合模型DC结合使用,以确定实际放射性核素对植物的剂量率,作为实际应用的一个例子。尽管将其中的模型应用于原则假设的小规模假设场景,但仍讨论了此类复杂剂量模型对非人类生物区系的潜在现实应用,并讨论了适合其应用的方法建议使用这些模型。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号