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首页> 外文期刊>Physics in medicine and biology. >Percentile-specific computational phantoms constructed from ICRP mesh-type reference computational phantoms (MRCPs)
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Percentile-specific computational phantoms constructed from ICRP mesh-type reference computational phantoms (MRCPs)

机译:由ICRP网格型参考计算幻像(MRCPS)构建的百分位特定计算幻像

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摘要

Recently, the Task Group 103 of the International Commission on Radiological Protection (ICRP) has developed new mesh-type reference computational phantoms (MRCPs) for adult male and female. When compared to the current voxel-type reference computational phantoms in ICRP Publication 110, the MRCPs have several advantages, including deformability which makes it possible to create phantoms in different body sizes or postures. In the present study, the MRCPs were deformed to produce a set of percentile-specific phantoms representing the 10th, 50th and 90th percentiles of standing height and body weight in Caucasian population. For this, anthropometric parameters for the percentile-specific phantoms were first derived from the anthropometric software and survey data. Then, the MRCPs were modified to match the derived anthropometric parameters. For this, first, the MRCPs were scaled in the axial direction to match the head height, torso length, and leg length. Then, the head, torso, and legs were scaled in the transversal directions to match the lean body mass for the percentile-specific phantoms. Finally, the scaled phantoms were manually adjusted to match the body weight and the remaining anthropometric parameters (upper arm, waist, buttock, thigh, and calf circumferences and sagittal abdominal diameter). The constructed percentile-specific phantoms and the MRCPs were implemented into the Geant4 Monte Carlo code to calculate organ doses for a cesium-137 contaminated floor. The results showed that organ doses of the 50th percentile (both standing height and body weight) phantoms are very dose to those of the MRCPs. There were noticeable differences in organ doses, however, for the 10th and 90th percentile phantoms when compared with those of the MRCPs. The results of the present study confirm the general intuition that a small person receives higher doses than a large person when exposed to a static radiation field, and organs closer to the source receive higher doses.
机译:近日,国际放射防护委员会的任务103组(ICRP)制定了成年男性和女性新的网格式参考的计算幻影(MRCPs)。当相比于ICRP公开110当前体素类型的参考计算幻影,所述MRCPs具有几个优点,其中包括可变形性使得能够创建在不同的身体尺寸或姿势幻像。在本研究中,进行了MRCPs变形以产生表示10日,第50和在高加索人群站立高度和体重的第90百分位数的一组特定百分-幻影。为此,为百分特异性幻影人体参数为首次从人体测量软件和调查数据得出。然后,MRCPs进行了修改,以匹配所导出的人体测量参数。为此,首先,将被MRCPs在轴向方向上调整来匹配头高度,躯干长度,和腿部的长度。然后,头部,躯干和腿在横向方向进行了调整来匹配瘦体重的百分比专用幻影。最后,经缩放的幻影手动调节以匹配体重和剩余的人体测量参数(上臂,腰部,臀部,大腿,小腿和周长和矢状腹部直径)。将构建的百分特异性幻影和MRCPs被实施到GEANT4蒙特卡洛代码来计算器官剂量为铯-137污染地板。结果表明,器官剂量的第50百分位数(两者立起高度和体重)幻影非常剂量的那些MRCPs的。当与那些MRCPs相比有器官剂量明显的差异,但是,第10和第90百分位幻影。本研究的结果证实了一般直觉,一个小的人当暴露于一个静态辐射场不是一个大的人接收更高的剂量,和器官更接近源接收更高的剂量。

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