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Development of a Library of Adult Computational Phantoms Based on Anthropometric Indexes

机译:基于人体测量指标的成人计算体模型库的开发

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Computational phantom libraries have been developed over the years to enhance the accuracy of Monte Carlo-based radiation dose calculations from radiological procedures. In this paper, we report on the development of an adult computational anthropomorphic phantom library covering different body morphometries among the 20-80 years old population. The anatomical diversities of different populations are modeled based on anthropometric parameters extracted from the National Health and Nutrition Examination Survey database, including standing height, total weight, and body mass index. Organ masses were modified to match the corresponding data. The ICRP reference male and female models were selected as anchor phantoms. A computer code was developed for adjusting standing height and percentage of fat free mass of anchor phantoms by 3-D scaling. The waist circumference and total body mass were further adjusted. The diversity of organ masses due to anthropometric differences deviates from the mean values by about 3%-21%, while this deviation exceeds 50% for genital organs. Thereafter, organ-level absorbed doses from both internal and external radiation exposure conditions were estimated. A total of 479 phantoms corresponding to seven age groups were constructed for both genders, thus fulfilling the criteria for representing a diverse adult population with different anthropomorphic and anatomical characteristics.
机译:多年来,已经开发了计算体模库,以提高通过放射程序进行基于蒙特卡洛的辐射剂量计算的准确性。在本文中,我们报告了涵盖20-80岁人口中不同身体形态的成人计算拟人化体模库的发展。基于从国家健康和营养检查调查数据库中提取的人体测量学参数,对不同人群的解剖学多样性进行建模,包括站立身高,总体重和体重指数。器官质量进行了修改,以匹配相应的数据。选择了ICRP参考男性和女性模型作为锚体模型。开发了计算机代码,用于通过3-D缩放调整站立模型的高度和锚模型的无脂肪质量百分比。进一步调整腰围和总体重。由于人体测量学差异,器官质量的多样性偏离平均值约3 %-21 %,而生殖器官的这一偏差超过50%。此后,从内部和外部辐射暴露条件估计器官水平的吸收剂量。总共为七个性别构造了对应于七个年龄组的479个幻像,从而满足了代表具有不同拟人和解剖特征的不同成年人口的标准。

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