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SAF values for internal photon emitters calculated for the RPI-P pregnant-female models using Monte Carlo methods

机译:使用Monte Carlo方法为RPI-P孕-雌模型计算的内部光子发射器的SAF值

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摘要

Estimates of radiation absorbed doses from radionuclides internally deposited in a pregnant woman and her fetus are very important due to elevated fetal radiosensitivity. This paper reports a set of specific absorbed fractions (SAFs) for use with the dosimetry schema developed by the Society of Nuclear Medicine’s Medical Internal Radiation Dose (MIRD) Committee. The calculations were based on three newly constructed pregnant female anatomic models, called RPI-P3, RPI-P6, and RPI-P9, that represent adult females at 3-, 6-, and 9-month gestational periods, respectively. Advanced Boundary REPresentation (BREP) surface-geometry modeling methods were used to create anatomically realistic geometries and organ volumes that were carefully adjusted to agree with the latest ICRP reference values. A Monte Carlo user code, EGS4-VLSI, was used to simulate internal photon emitters ranging from 10 keV to 4 MeV. SAF values were calculated and compared with previous data derived from stylized models of simplified geometries and with a model of a 7.5-month pregnant female developed previously from partial-body CT images. The results show considerable differences between these models for low energy photons, but generally good agreement at higher energies. These differences are caused mainly by different organ shapes and positions. Other factors, such as the organ mass, the source-to-target-organ centroid distance, and the Monte Carlo code used in each study, played lesser roles in the observed differences in these. Since the SAF values reported in this study are based on models that are anatomically more realistic than previous models, these data are recommended for future applications as standard reference values in internal dosimetry involving pregnant females.
机译:由于胎儿放射敏感性升高,因此估算孕妇及其胎儿内部沉积的放射性核素吸收的辐射剂量非常重要。本文报告了一组特定的吸收级分(SAF),用于由核医学协会的医学内部辐射剂量(MIRD)委员会开发的剂量学方案。该计算基于三个新构建的怀孕女性解剖模型,分别称为RPI-P3,RPI-P6和RPI-P9,分别代表妊娠3、6和9个月的成年女性。使用高级边界再表达(BREP)表面几何建模方法来创建解剖学逼真的几何形状和器官体积,并对其进行仔细调整以符合最新的ICRP参考值。使用蒙特卡洛用户代码EGS4-VLSI来模拟范围从10 keV到4 MeV的内部光子发射器。计算了SAF值,并将其与简化几何图形的程式化模型中的先前数据以及先前从局部身体CT图像中开发的7.5个月怀孕女性模型进行了比较。结果表明,低能量光子的这些模型之间存在相当大的差异,但在高能量下通常具有良好的一致性。这些差异主要是由不同的器官形状和位置引起的。其他因素,例如器官质量,源到目标器官的质心距离以及每个研究中使用的蒙特卡洛代码,在观察到的这些差异中所起的作用较小。由于本研究报告的SAF值基于比以前的模型在解剖学上更实际的模型,因此建议将这些数据作为涉及孕妇的内部剂量测定中的标准参考值以备将来使用。

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