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首页> 外文期刊>Physics in medicine and biology. >Computational hybrid anthropometric paediatric phantom library for internal radiation dosimetry
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Computational hybrid anthropometric paediatric phantom library for internal radiation dosimetry

机译:用于内部辐射剂量测定的计算杂化人体测定小儿幻像文库

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摘要

Hybrid computational phantoms combine voxel-based and simplified equation-based modelling approaches to provide unique advantages and more realism for the construction of anthropomorphic models. In this work, a methodology and C++ code are developed to generate hybrid computational phantoms covering statistical distributions of body morphometry in the paediatric population. The paediatric phantoms of the Virtual Population Series (IT'IS Foundation, Switzerland) were modified to match target anthropometric parameters, including body mass, body length, standing height and sitting height/stature ratio, determined from reference databases of the National Centre for Health Statistics and the National Health and Nutrition Examination Survey. The phantoms were selected as representative anchor phantoms for the newborn, 1, 2, 5, 10 and 15 years-old children, and were subsequently remodelled to create 1100 female and male phantoms with 10th, 25th, 50th, 75th and 90th body morphometries. Evaluation was performed qualitatively using 3D visualization and quantitatively by analysing internal organ masses. Overall, the newly generated phantoms appear very reasonable and representative of the main characteristics of the paediatric population at various ages and for different genders, body sizes and sitting stature ratios. The mass of internal organs increases with height and body mass. The comparison of organ masses of the heart, kidney, liver, lung and spleen with published autopsy and ICRP reference data for children demonstrated that they follow the same trend when correlated with age. The constructed hybrid computational phantom library opens up the prospect of comprehensive radiation dosimetry calculations and risk assessment for the paediatric population of different age groups and diverse anthropometric parameters.
机译:混合计算幻影结合基于体素和简化基于方程的建模方法,以提供独特的优势和更逼真拟人模型的构建。在这项工作中,方法论和C ++代码的开发,以产生混合计算幻影覆盖身体形态的统计分布在儿科人口。虚拟人口系列(IT'IS基金会,瑞士)的儿科幻影修改,以符合目标人体测量参数,包括体重,体长,站在高处和坐高/身高的比例,从国家中心卫生参考数据库确定统计数据和全国健康和营养调查。幻影被选为代表锚幻影为新生儿,1,2,5,10和15岁的孩子,后来改造创造1100个女性和男性幻影用10次,25次,50次,第75和第90的身体morphometries。评价使用三维可视化和定量通过分析内部器官重量定性进行。总体来说,新产生的幻影显得非常合理和有代表性的不同年龄儿童人群的主要特点和不同性别,体型和身材坐比例。内脏器官的质量与身高和体重会增加。心脏,肾脏,肝脏,肺器官质量的比较和与证明,他们遵循的是同样的趋势时,与年龄的孩子发表尸检和ICRP参考数据脾。构建的混合计算幻象图书馆开辟了全面的辐射剂量计算和风险评估,针对不同年龄组和不同的人体测量参数的儿科人群的前景。

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