若干医疗部门职业电离辐射暴露监测

IF 1.4 4区 医学 Q4 ENVIRONMENTAL SCIENCES
N. Alomairy
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引用次数: 0

摘要

测量和分析了沙特阿拉伯一家大型专科医院不同医疗部门的医疗辐射工作人员(mrw)的职业电离辐射剂量,以建立mrw年平均有效剂量(AMED)的基线。对以下科室355例mrw有效剂量进行剂量记录统计分析。本研究中报告的所有MRWs的总AMED为1.60 mSv。各科室平均辐射强度分别为诊断放射科1.17 mSv、介入放射科1.61 mSv、核医学2.72 mSv、放射治疗1.59 mSv、手术室1.32 mSv、牙科1.06 mSv、其他1.54 mSv。单因素方差分析显示各部门员工之间的差异有统计学意义(P = 0.001)。研究表明,核医学部门的工人在其他工人中获得最高的AMED。结果显示,没有任何一次职业剂量超过20毫西弗的年剂量限值。然而,为了避免不必要的辐射暴露,仍然需要控制工作场所和管理mrw,特别是对NM的工人,他们被发现比其他医疗部门的mrw获得更多的剂量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Occupational ionizing radiation exposure monitoring in several medical departments
Occupational ionizing radiation doses for medical radiation workers (MRWs) from different medical departments in a major specialized hospital in Saudi Arabia were measured and analyzed to establish a baseline for the annual mean effective dose (AMED) for MRWs. A statistical analysis of dose records was conducted on effective doses for 355 MRWs in the following medical departments. The overall AMED for all MRWs reported in this study was 1.60 mSv. The AMEDs in each medical department were 1.17 mSv in diagnostic radiology, 1.61 mSv in interventional radiology, 2.72 mSv in nuclear medicine, 1.59 mSv in radiation therapy, 1.32 mSv in operation room, 1.06 mSv in dentistry, and 1.54 mSv in others. A one-way ANOVA test indicated statistically significant differences between the departments’ workers (P = 0.001). The study reveals that the workers in the nuclear medicine department received the highest AMED among the other workers. The results reveal that no single occupational dose has exceeded the annual dose limit of 20 mSv. However, to avoid unwanted radiation exposures, it is still required to control the workplace and manage MRWs, particularly for workers in NM, who were found to get more dose than MRWs in other medical departments.
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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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