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Evaluation and optimization of occupational eye lens dosimetry during positron emission tomography (PET) procedures

机译:在正电子发射断层扫描(PET)程序中评估和优化职业性眼镜片剂量法

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摘要

The last recommendations of the International Commission on Radiological Protection for eye lens dose suggest an important reduction on the radiation limits associated with early and late tissue reactions. The aim of this work is to quantify and optimize the eye lens dose associated to nurse staff during positron emission tomography (PET) procedures. PET is one of the most important diagnostic methods of oncological and neurological cancer disease involving an important number of workers exposed to the high energy isotope F-18. We characterize the relevant stages as preparation and administration of monodose syringes in terms of occupational dose. A direct reading silicon dosimeter was used to measure the lens dose to staff. The highest dose of radiation was observed during preparation of the fluorodesoxyglucose (FDG) syringes. By optimizing a suitable vials' distribution of FDG we find an important reduction in occupational doses. Extrapolation of our data to other clinical scenarios indicates that, depending on the work load and/or syringes activity, safety limits of the dose might be exceeded.
机译:国际放射防护委员会关于晶状体剂量的最新建议表明,与早期和晚期组织反应有关的辐射限值已大大降低。这项工作的目的是量化和优化正电子发射断层扫描(PET)程序中与护理人员相关的眼镜片剂量。 PET是肿瘤和神经系统癌症疾病最重要的诊断方法之一,涉及大量暴露于高能同位素F-18的工人。我们根据职业剂量将相关阶段描述为单剂量注射器的准备和给药。使用直读式硅剂量计来测量工作人员的晶状体剂量。在准备氟脱氧葡萄糖(FDG)注射器时观察到最高剂量的辐射。通过优化合适的FDG小瓶分布,我们发现职业剂量大大减少。将我们的数据外推到其他临床情况表明,根据工作量和/或注射器活动情况,可能会超出剂量的安全极限。

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