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Dosimetry study for a new in vivo X-ray fluorescence (XRF) bone lead measurement system

机译:新型体内X射线荧光(XRF)骨铅测量系统的剂量学研究

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A new ~(109)Cd γ-ray induced bone lead measurement system has been developed to reduce the minimum detectable limit (MDL) of the system. The system consists of four 16 mm diameter detectors. It requires a stronger source compared to the "conventional" system. A dosimetry study has been performed to estimate the dose delivered by this system. The study was carried out by using human-equivalent phantoms. Three sets of phantoms were made to estimate the dose delivered to three age groups: 5-year old, 10-year old and adults. Three approaches have been applied to evaluate the dose: calculations, Monte Carlo (MC) simulations, and experiments. Experimental results and analytical calculations were used to validate MC simulation. The experiments were performed by placing Panasonic UD-803AS TLDs at different places in phantoms that representing different organs. Due to the difficulty of obtaining the organ dose and the whole body dose solely by experiments and traditional calculations, the equivalent dose and effective dose were calculated by MC simulations. The result showed that the doses delivered to the organs other than the targeted lower leg are negligibly small. The total effective doses to the three age groups are 8.45/9.37 μSv (female/male), 4.20 μSv, and 0.26 μSv for 5-year old, 10-year old and adult, respectively. An approval to conduct human measurements on this system has been received from the Research Ethics Board based on this research.
机译:已经开发了一种新的〜(109)Cdγ射线诱导的骨铅测量系统,以降低系统的最小可检测极限(MDL)。该系统由四个直径为16 mm的探测器组成。与“常规”系统相比,它需要更强大的资源。剂量学研究已经完成,以估计该系统所递送的剂量。该研究是通过使用与人类等效的体模进行的。制作了三套幻影模型,以估计向三个年龄段:5岁,10岁和成人的剂量。三种方法已用于评估剂量:计算,蒙特卡洛(MC)模拟和实验。实验结果和分析计算用于验证MC仿真。通过将Panasonic UD-803AS TLD放置在代表不同器官的幻像中的不同位置来进行实验。由于仅通过实验和传统计算难以获得器官剂量和全身剂量,因此通过MC模拟计算等效剂量和有效剂量。结果表明,输送到目标小腿以外器官的剂量很小。三个年龄组的总有效剂量分别为5岁,10岁和成人的8.45 / 9.37μSv(男女),4.20μSv和0.26μSv。根据这项研究,研究道德委员会已获得在此系统上进行人体测量的批准。

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