Exposure dose estimation considering a molybdenum generator fall accident

IF 1.4 4区 医学 Q4 ENVIRONMENTAL SCIENCES
Y. Sagisaka, T. Tsujiguchi, K. Narumi, I. Shikata, K. Shirakawa, S. Hosokawa, K. Ito, Y. Takahashi
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引用次数: 0

Abstract

Radiopharmaceuticals with high radioactivity are used in the field of nuclear medicine. Moreover, understanding the exposure dose of radiation workers and the air dose in radioisotope preparation rooms is essential. In particular, evaluating exposure dose assuming an accident to reduce radiation exposure as much as possible and respond to the accident is paramount. Thus, we evaluated a case study where 1.34 GBq 99Mo-99mTc generator used in our hospital fell, and evaluated exposure doses. The results of the considered drop accident of a commercially available generator indicated a possibility of radiation exposure equivalent to several months of normal work exposure, even though the possibility of radiation exposure to the extent that deterministic biological effects appear is low. Therefore, more attention must be paid to managing radiopharmaceuticals with high radioactivity, such as generators, to reduce the anxiety of radiation workers in the hospital and respond rapidly to accidents. Furthermore, the study findings should be used for staff training during normal times to avoid unnecessary radiation exposure.
考虑钼发生器坠落事故的暴露剂量估算
高放射性的放射性药物用于核医学领域。此外,了解辐射工作人员的暴露剂量和放射性同位素制备室的空气剂量至关重要。特别是,在发生事故的情况下评估暴露剂量,以尽可能减少辐射暴露并对事故作出反应是至关重要的。因此,我们评估了我院使用的1.34 GBq 99Mo-99mTc发电机的案例研究,并评估了暴露剂量。所考虑的市售发电机掉落事故的结果表明,辐射照射的可能性相当于几个月的正常工作照射,尽管出现确定性生物效应的辐射照射的可能性很低。因此,必须更加重视对发电机等高放射性放射性药品的管理,以减少医院辐射工作人员的焦虑,迅速应对事故。此外,研究结果应用于工作人员在正常时间的培训,以避免不必要的辐射照射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Radioprotection
Radioprotection ENVIRONMENTAL SCIENCES-PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
CiteScore
3.30
自引率
54.50%
发文量
35
审稿时长
>12 weeks
期刊介绍: Radioprotection publishes articles on all aspects of radiological protection, including non-ionising as well as ionising radiations. Fields of interest range from research, development and theory to operational matters, education and training. The very wide spectrum of its topics includes (theoretical and practical aspects): dosimetry, instrument development, specialized measuring techniques, epidemiology, biological effects (in vivo and in vitro) and risk and environmental impact assessments.
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