首页> 外文期刊>Radiation and Environmental Biophysics >Dose coefficients of percentile-specific computational phantoms for photon external exposures
【24h】

Dose coefficients of percentile-specific computational phantoms for photon external exposures

机译:用于光子外部曝光的百分比特定计算幻像的剂量系数

获取原文
获取原文并翻译 | 示例
           

摘要

The use of dose coefficients (DCs) based on the reference phantoms recommended by the International Commission on Radiological Protection (ICRP) with a fixed body size may produce errors to the estimated organ/tissue doses to be used, for example, for epidemiologic studies depending on the body size of cohort members. A set of percentile-specific computational phantoms that represent 10th, 50th, and 90th percentile standing heights and body masses in adult male and female Caucasian populations were recently developed by modifying the mesh-type ICRP reference computational phantoms (MRCPs). In the present study, these percentile-specific phantoms were used to calculate a comprehensive dataset of body-size-dependent DCs for photon external exposures by performing Monte Carlo dose calculations with the Geant4 code. The dataset includes the DCs of absorbed doses for 29 individual organs/tissues from 0.01 to 10(4) MeV photon energy, in the antero-posterior, postero-anterior, right lateral, left lateral, rotational, and isotropic geometries. The body-size-dependent DCs were compared with the DCs of the MRCPs in the reference body size, showing that the DCs of the MRCPs are generally similar to those of the 50th percentile standing height and body mass phantoms over the entire photon energy region except for low energies (<= 0.03 MeV); the differences are mostly less than 10%. In contrast, there are significant differences in the DCs between the MRCPs and the 10th and 90th percentile standing height and body mass phantoms (i.e., H10M10 and H90M90). At energies of less than about 10 MeV, the MRCPs tended to under- and over-estimate the organ/tissue doses of the H10M10 and H90M90 phantoms, respectively. This tendency was revised at higher energies. The DCs of the percentile-specific phantoms were also compared with the previously published values of another phantom sets with similar body sizes, showing significant differences particularly at energies below about 0.1 MeV, which is mainly due to the different locations and depths of organs/tissues between the different phantom libraries. The DCs established in the present study should be useful to improve the dosimetric accuracy in the reconstructions of organ/tissue doses for individuals in risk assessment for epidemiologic investigations taking body sizes into account.
机译:基于国际放射保护(ICRP)推荐的参考幻像的剂量系数(DCS)的使用可能会产生估计的器官/组织剂量的误差,例如,根据流行病学研究关于队列成员的体型。最近通过修改网格型ICRP参考计算模拟(MRCPS)最近开发了一组百分位的特定于成年男性和女性白种人群体中的百分比高度和体积的体重座的体积和体积。在本研究中,通过使用GEANT4代码进行Monte Carlo剂量计算来使用这些百分位特异性幽灵来计算用于光子外部暴露的体型依赖DC的综合数据集。该数据集包括来自0.01至10(4)个MeV光子能量的29个单独器官/组织的吸收剂量的DC,在蒽酮,后右侧,右侧,左侧,旋转和各向同性几何形状中。将体型依赖性DC与参考体尺寸的MRCP的DCS进行比较,显示MRCP的DCS通常与整个光子能量区域的第50百分位高度和体重模子的DC相似。除外对于低能量(<= 0.03 meV);差异大多不到10%。相反,MRCPS与第10和第90百分位高度和体重素(即,H10M10和H90M90)之间的DC存在显着差异。在低于约10mev的能量下,MRCP分别倾向于和过度估计H10M10和H90M90幽灵的器官/组织剂量。这种趋势在更高的能量下进行了修订。还将百分子特异性素的DC与先前公布的具有相似体积相似的另一个幻像的值进行比较,尤其显示出低于约0.1meV的能量的显着差异,这主要是由于器官/组织的不同位置和深度在不同的幻影图书馆之间。在本研究中建立的DCS应该有助于提高器官/组织剂量的重建中的剂量准确性,用于对体型的流行病学调查中的风险评估中的个体进行空间调查。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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