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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Hybrid computational phantoms representing the reference adult male and adult female: Construction and applications for retrospective dosimetry
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Hybrid computational phantoms representing the reference adult male and adult female: Construction and applications for retrospective dosimetry

机译:代表参考成年男性和成年女性的混合计算体模:回顾性剂量学的构建和应用

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摘要

Currently, two classes of computational phantoms have been developed for dosimetry calculation: (1) stylized (or mathematical) and (2) voxel (or tomographic) phantoms describing human anatomy through mathematical surface equations and 3D voxel matrices, respectively. Mathematical surface equations in stylized phantoms are flexible, but the resulting anatomy is not as realistic. Voxel phantoms display far better anatomical realism, but they are limited in terms of their ability to alter organ shape, position, and depth, as well as body posture. A new class of computational phantoms called hybrid phantoms takes advantage of the best features of stylized and voxel phantoms-flexibility and anatomical realism, respectively. In the current study, hybrid computational phantoms representing the adult male and female reference anatomy and anthropometry are presented. These phantoms serve as the starting framework for creating patient or worker sculpted whole-body phantoms for retrospective dose reconstruction. Contours of major organs and tissues were converted or segmented from computed tomography images of a 36-y-old Korean volunteer and a 25-y-old U.S. female patient, respectively, with supplemental high-resolution CT images of the cranium. Polygon mesh models for the major organs and tissues were reconstructed and imported into Rhinoceros? for non-uniform rational B-spline (NURBS) surface modeling. The resulting NURBS/polygon mesh models representing body contour and internal anatomy were matched to anthropometric data and reference organ mass data provided by Centers for Disease Control and Prevention and International Commission on Radiation Protection, respectively. Finally, two hybrid adult male and female phantoms were completed where a total of eight anthropometric data categories were matched to standard values within 4% and organ volumes matched to ICRP data within 1% with the exception of total skin. The hybrid phantoms were voxelized from the NURBS phantoms at resolutions of 0.158 × 0.158 × 0.158 cm and 0.126 × 0.126 × 0.126 cm for the male and female, respectively. To highlight the flexibility of the hybrid phantoms, graphical displays are given of (1) underweight and overweight adult male phantoms, (2) a sitting position for the adult female phantom, and (3) extraction and higher-resolution voxelization of the small intestine for localized dosimetry of mucosal and stem cell layers. These phantoms are used to model radioactively contaminated individuals and to then assess time-dependent detector count rate thresholds corresponding to 50, 250, and 500 mSv effective dose, as might be needed during in-field radiological triage by first responders or first receivers.
机译:当前,已经开发出两类用于剂量学计算的计算体模:(1)程式化(或数学)体素(2)体素体素(分别通过数学表面方程和3D体素矩阵描述人体解剖结构)。程式化体模中的数学表面方程是灵活的,但由此产生的解剖结构并不现实。体素体模显示出更好的解剖现实性,但是在改变器官形状,位置和深度以及身体姿势的能力方面受到限制。一类称为混合体模的新型计算体模利用了程式化体素和体素体模的最佳功能,分别是柔韧性和解剖现实性。在当前的研究中,提出了代表成年男性和女性参考解剖学和人体测量学的混合计算体模。这些体模用作创建患者或工作人员雕刻的全身体模以进行回顾性剂量重建的起始框架。分别从36岁的韩国志愿者和25岁的美国女性患者的计算机断层扫描图像上转换或分割了主要器官和组织的轮廓,并附加了颅骨的高分辨率CT图像。重建了主要器官和组织的多边形网格模型,并将其导入到Rhinoceros?用于非均匀有理B样条(NURBS)曲面建模。生成的代表身体轮廓和内部解剖结构的NURBS /多边形网格模型分别与疾病控制和预防中心和国际辐射防护委员会提供的人体测量数据和参考器官质量数据匹配。最后,完成了两个混合的成年男性和女性幻影,其中总共8个人体测量数据类别与4%以内的标准值相匹配,而器官体积与ICRP数据与1%之内相匹配(皮肤除外)。从NURBS体模对混合体模进行体素化,男性和女性的分辨率分别为0.158×0.158×0.158 cm和0.126×0.126×0.126 cm。为了突出混合体模的灵活性,给出了以下图形显示:(1)体重过轻和超重的成年男性体模;(2)成年女性体模的坐姿;(3)小肠的提取和更高分辨率的体素化用于粘膜和干细胞层的局部剂量测定。这些模型用于对放射性污染的个体进行建模,然后评估与时间相关的探测器计数率阈值,该阈值对应于50、250和500毫希沃特有效剂量,这是急救人员或第一接收者在野外放射分诊过程中可能需要的。

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