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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Adult female voxel models of different stature and photon conversion coefficients for radiation protection.
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Adult female voxel models of different stature and photon conversion coefficients for radiation protection.

机译:具有不同身高和光子转换系数的成年女性体素模型,用于辐射防护。

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摘要

This paper describes the construction of three adult female voxel models, two whole-body and one from head to thighs, from computed tomographic data of 3 women of different stature. Voxel models (also called phantoms) are human models based on computed tomographic or magnetic resonance images obtained from high resolution continuous scans of a single individual. The gray-scale data or information content of the medical images are interpreted into tissues (i.e., organs), a process known as segmentation. The phantoms, consisting of millions of volume elements, called voxels, provide a three-dimensional representation of the human body and the spatial form of its constituent organs and structures. They were initially developed for radiation protection purposes to estimate the organ and effective doses and hence the risk to a person or population due to an irradiation. This paper also presents conversion coefficients for idealized geometries of external photon exposures of energies 10 keV-1 MeV for the three female models, calculated with a Monte Carlo code. Until now there were not any published data on conversion coefficients for explicit female voxel models. Such sets of conversion coefficients exist for voxel adult males or for MIRD-type male, female, and hermaphrodite models. Numerical differences of the calculated conversion coefficients for the voxel female models and MIRD-type models can amount up to 60% or more for external exposures and are due to the improved anatomical realism of the voxel models. The size of the model also has an effect on the conversion coefficients, particularly for deeper lying organs and energies below 200 keV. The three separate sets of conversion coefficients allow one to choose the most suitable model according to the size of the individual as well as to study the dosimetric variations due to the size of the model.
机译:本文根据3名不同身高女性的X线断层扫描数据,描述了3种成年女性体素模型的构建,其中2种是全身,一种是从头到大腿。体素模型(也称为人体模型)是基于从单个人的高分辨率连续扫描获得的计算机断层扫描或磁共振图像得出的人体模型。医学图像的灰度数据或信息内容被解释为组织(即器官),该过程称为分割。由数以百万计的体素(称为体素)组成的体模提供了人体的三维表示及其组成器官和结构的空间形式。它们最初是出于辐射防护目的而开发的,以估计器官和有效剂量,从而估算由于辐射对人或人群的风险。本文还介绍了三种女性模型的10 keV-1 MeV能量的外部光子曝光理想化几何构型的转换系数,并使用蒙特卡洛代码进行了计算。到目前为止,还没有公开的关于女性体素模型转换系数的数据。对于成人体素男性或MIRD型男性,女性和雌雄同体模型,存在这样的转换系数集。对于外部暴露,体素女性模型和MIRD型模型的计算转换系数的数值差异可高达60%或更多,这是由于体素模型的解剖结构改善了。模型的大小也会影响转换系数,特别是对于更深层的器官和低于200 keV的能量。通过三组独立的转换系数,可以根据个人的大小选择最合适的模型,还可以研究由于模型大小而引起的剂量变化。

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