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首页> 外文期刊>Radiation Protection Dosimetry >ESTIMATION OF SPECIFIC ABSORBED FRACTIONS FOR SELECTED ORGANS DUE TO PHOTONS EMITTED BY ACTIVITY DEPOSITED IN THE HUMAN RESPIRATORY TRACT USING ICRP/ICRU MALE VOXEL PHANTOM IN FLUKA
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ESTIMATION OF SPECIFIC ABSORBED FRACTIONS FOR SELECTED ORGANS DUE TO PHOTONS EMITTED BY ACTIVITY DEPOSITED IN THE HUMAN RESPIRATORY TRACT USING ICRP/ICRU MALE VOXEL PHANTOM IN FLUKA

机译:使用FLRPA的ICRP / ICRU男性体素估计在人类呼吸道中沉积的活动所产生的光子所致的特定有机物的特定吸收分数

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摘要

The ICRP/ICRU adult male reference voxel phantom incorporated in Monte Carlo code FLUKA is used for estimating specific absorbed fractions (SAFs) for photons due to the presence of internal radioactive contamination in the human respiratory tract (RT). The compartments of the RT, i.e. extrathoracic (ET1 and ET2) and thoracic (bronchi, bronchioles, alveolar interstitial) regions, lymph nodes of both regions and lungs are considered as the source organs. The nine organs having high tissue weighting factors such as colon, lungs, stomach wall, breast, testis, urinary bladder, oesophagus, liver and thyroid and the compartments of the RT are considered as target organs. Eleven photon energies in the range of IS keV to 4 MeV are considered for each source organ and the computed SAF values are presented in the form of tables. For the target organs in the proximity of the source organ including the source organ itself, the SAF values are relatively higher and decrease with increase in energy. As the distance between source and target organ increases, SAF values increase with energy and reach maxima depending on the position of the target organ with respect to the source organ. The SAF values are relatively higher for the target organs with smaller masses. Large deviations are seen in computed SAF values from the existing MIRD phantom data for most of the organs. These estimated SAF values play an important role in the estimation of equivalent dose to various target organs of a worker due to intake by inhalation pathway.
机译:蒙特卡洛代码FLUKA中并入的ICRP / ICRU成年男性参考体素体模用于估计由于人类呼吸道(RT)中存在内部放射性污染而导致的光子比吸收分数(SAF)。 RT的隔室,即胸外(ET1和ET2)和胸腔(支气管,细支气管,肺泡间质)区域,两个区域和肺部的淋巴结均被视为源器官。具有较高组织权重因子的九个器官(例如结肠,肺,胃壁,乳房,睾丸,膀胱,食道,肝和甲状腺)和RT隔室被视为目标器官。对于每个源器官,应考虑在IS keV到4 MeV范围内的11个光子能量,并且所计算的SAF值以表格的形式显示。对于包括源器官本身在内的源器官附近的靶器官,SAF值相对较高,并且随着能量的增加而降低。随着源器官和目标器官之间距离的增加,SAF值会随着能量的增加而增加,并达到最大值,这取决于目标器官相对于源器官的位置。质量较小的目标器官的SAF值相对较高。从大多数器官的现有MIRD体模数据得出的SAF值中,可以看到较大的偏差。这些估计的SAF值在估计通过吸入途径摄入的工人各种靶器官的等效剂量中起着重要作用。

著录项

  • 来源
    《Radiation Protection Dosimetry》 |2013年第1期|32-46|共15页
  • 作者单位

    Internal Dosimetry Section, Health Physics Division, Bhabha Atomic Research Centre, Mumbai 400085,India;

    Internal Dosimetry Section, Health Physics Division, Bhabha Atomic Research Centre, Mumbai 400085,India;

    Internal Dosimetry Section, Health Physics Division, Bhabha Atomic Research Centre, Mumbai 400085,India;

    Internal Dosimetry Section, Health Physics Division, Bhabha Atomic Research Centre, Mumbai 400085,India;

    Internal Dosimetry Section, Health Physics Division, Bhabha Atomic Research Centre, Mumbai 400085,India;

    Internal Dosimetry Section, Health Physics Division, Bhabha Atomic Research Centre, Mumbai 400085,India;

  • 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
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