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Photon fluence-to-effective dose conversion coefficients calculated from a Saudi population-based phantom

机译:从基于沙特人群的幻像计算出的光子通量至有效剂量转换系数

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In this work we will present a new set of photon fluence-to-effective dose conversion coefficients using the Saudi population-based voxel phantom developed recently by our group. The phantom corresponds to an average Saudi male of 173 cm tall weighing 77 kg. There are over 125 million voxels in the phantom each of which is 1.37 x 1.37 x 1.00 mm~3. Of the 27 organs and tissues of radiological interest specified in the recommendations of ICRP Publication 103, all but the oral mucosa, extrathoracic tissue and the lymph nodes were identified in the current version of the phantom. The bone surface (endosteum) is too thin to be identifiable; it is about 10 urn thick. The dose to the endosteum was therefore approximated by the dose to the bones. Irradiation geometries included anterior-posterior (AP), left (LLAT) and rotational (ROT). The simulations were carried out with the MCNPX code version 2.5.0. The fluence in free air and the energy depositions in each organ were calculated for monoenergetic photon beams from 10 keV to 10 MeV to obtain the conversion coefficients. The radiation and tissue weighting factors were taken from ICRP Publication 60 and 103. The results from this study will also be compared with the conversion coefficients in ICRP Publication 116.
机译:在这项工作中,我们将使用我们小组最近开发的基于沙特人口的​​体素体模,提出一套新的光子通量到有效剂量转换系数。人体模型相当于平均身高173厘米,体重77公斤的沙特阿拉伯男性。体模中有超过1.25亿个体素,每个体素为1.37 x 1.37 x 1.00 mm〜3。在ICRP出版物103的建议中指定的27个具有放射学意义的器官和组织中,除口腔粘膜,胸腔外组织和淋巴结以外的所有器官均在幻象的当前版本中识别。骨表面(内膜)太薄而无法识别;它的厚度约为10。因此,骨内膜的剂量近似于骨骼的剂量。辐射的几何形状包括前后(AP),左侧(LLAT)和旋转(ROT)。使用MCNPX代码2.5.0版进行了仿真。对于10 keV到10 MeV的单能光子束,计算了自由空气中的注量和每个器官中的能量沉积,以获得转换系数。辐射和组织加权因子取自ICRP出版物60和103。这项研究的结果还将与ICRP出版物116中的转换系数进行比较。

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