首页> 外文期刊>Radiation Protection Dosimetry >ACTUAL AND POTENTIAL RADIATION EXPOSURES IN DIGITAL RADIOLOGY: ANALYSIS OF CUMULATIVE DATA, IMPLICATIONS TO WORKER CLASSIFICATION AND OCCUPATIONAL EXPOSURE MONITORING
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ACTUAL AND POTENTIAL RADIATION EXPOSURES IN DIGITAL RADIOLOGY: ANALYSIS OF CUMULATIVE DATA, IMPLICATIONS TO WORKER CLASSIFICATION AND OCCUPATIONAL EXPOSURE MONITORING

机译:数字放射学中的实际和潜在的辐射暴露:累积数据分析,对工作人员分类的影响和职业暴露监测

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摘要

Radiation worker categorization and exposure monitoring are principal functions of occupational radiation safety. The aim of this study was to use the actual occupational exposure data in a large university hospital to estimate the frequency and magnitude of potential exposures in radiology. The additional aim was to propose a revised categorization and exposure monitoring practice based on the potential exposures. The cumulative probability distribution was calculated from the normalized integral of the probability density function fitted to the exposure data. Conformity of the probabilistic model was checked against 16 years of national monitoring data. The estimated probabilities to exceed annual effective dose limits of 1 mSv, 6 mSv and 20 mSv were 1:1000, 1:20000 and 1:200000, respectively. Thus, it is very unlikely that the class A categorization limit of 6 mSv could be exceeded, even in interventional procedures, with modern equipment and appropriate working methods. Therefore, all workers in diagnostic and interventional radiology could be systematically categorized into class B. Furthermore, current personal monitoring practice could be replaced by use of active personal dosemeters that offer more effective and flexible means to optimize working methods.
机译:放射工作人员的分类和暴露监测是职业放射安全的主要功能。这项研究的目的是使用一家大型大学医院的实际职业暴露数据来估计放射学中潜在暴露的频率和幅度。另一个目的是根据潜在的暴露量提出修订的分类和暴露量监测实践。累积概率分布是根据拟合到曝光数据的概率密度函数的归一化积分计算得出的。根据16年的国家监测数据检查了概率模型的符合性。超过年度有效剂量限值1 mSv,6 mSv和20 mSv的估计概率分别为1:1000、1:20000和1:200000。因此,即使采用现代设备和适当的工作方法,即使在介入手术中,也很难超过6 mSv的A级分类极限。因此,可以将诊断和介入放射学中的所有工人系统地分类为B类。此外,可以通过使用主动个人剂量仪来代替当前的个人监视实践,该主动个人剂量仪提供更有效和灵活的方式来优化工作方法。

著录项

  • 来源
    《Radiation Protection Dosimetry》 |2017年第1期|141-146|共6页
  • 作者单位

    HUS Medical Imaging Center, Radiology, University of Helsinki and Helsinki University Hospital, PO Box 340, Helsinki FI-00029 HUS, Finland , Department of Physics, University of Helsinki, PO Box 64, Helsinki FI-00014, Finland;

    STUK - Radiation and Nuclear Safety Authority of Finland, PO Box 14, Helsinki FI-00881, Finland;

    HUS Medical Imaging Center, Radiology, University of Helsinki and Helsinki University Hospital, PO Box 340, Helsinki FI-00029 HUS, Finland , Department of Physics, University of Helsinki, PO Box 64, Helsinki FI-00014, Finland;

    HUS Medical Imaging Center, Radiology, University of Helsinki and Helsinki University Hospital, PO Box 340, Helsinki FI-00029 HUS, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:43:29

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