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Monte Carlo simulation of a whole-body counter using IGOR phantoms

机译:使用IGOR体模的全身计数器的Monte Carlo模拟

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摘要

Whole-body counting is a technique of choice for assessing the intake of gamma-emitting radionuclides. An appropriate calibration is necessary, which is done either by experimental measurement or by Monte Carlo (MC) calculation. The aim of this work was to validate a MC model for calibrating whole-body counters (WBCs) by comparing the results of computations with measurements performed on an anthropomorphic phantom and to investigate the effect of a change in phantom's position on the WBC counting sensitivity. GEANT MC code was used for the calculations, and an IGOR phantom loaded with several types of radionuclides was used for the experimental measurements. The results show a reasonable agreement between measurements and MC computation. A 1-cm error in phantom positioning changes the activity estimation by >2 %. Considering that a 5-cm deviation of the positioning of the phantom may occur in a realistic counting scenario, this implies that the uncertainty of the activity measured by a WBC is ∼10-20 %
机译:全身计数是评估发射伽马射线放射性核素摄入量的一种选择技术。适当的校准是必要的,可以通过实验测量或通过蒙特卡洛(MC)计算来完成。这项工作的目的是通过将计算结果与对拟人化体模的测量结果进行比较,从而验证用于校准全身计数器(WBC)的MC模型,并研究体模位置变化对WBC计数灵敏度的影响。 GEANT MC代码用于计算,而IGOR体模装有几种类型的放射性核素,用于实验测量。结果表明,测量值与MC计算之间存在合理的一致性。幻影定位中出现1厘米的误差会使活动估计值增加> 2%。考虑到在现实的计数情况下幻影的位置可能会发生5厘米的偏差,这意味着WBC测量的活动的不确定性约为10-20%

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