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首页> 外文期刊>Radiation Protection Dosimetry >MCNP SIMULATIONS WITH A PERSONALISED VOXEL PHANTOM TO VERIFY ~(131)I CONTENT IN THYROID ESTIMATED BASED ON MEASUREMENTS WITH AN NaI(TI) SPECTROMETER
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MCNP SIMULATIONS WITH A PERSONALISED VOXEL PHANTOM TO VERIFY ~(131)I CONTENT IN THYROID ESTIMATED BASED ON MEASUREMENTS WITH AN NaI(TI) SPECTROMETER

机译:MCNP模拟具有个性化Voxel Phantom,以验证〜(131)基于用Nai(Ti)光谱仪的测量估计的甲状腺中的含量

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摘要

One of the authors (O.K.) stayed in the area located ~110 km south from the Fukushima Daiichi Nuclear Power Plant during the arrival of radioactive plumes released into the environment due to the accident in March 2011 in Japan. A previous study determined his ~(131)I thyroid content using an NaI(TI) spectrometer. The one remaining issue was to investigate the measurement error due to inevitable differences in the configuration (e.g. the thyroid shape and volume) between the physical phantom employed for calibration of the spectrometer and the real subject. In the present study, Monte Carlo simulations for the thyroid measurements were performed using the Monte Carlo N-Particle (MNCP) code to investigate discrepancies in peak efficiencies of the spectrometer between the personalised voxel phantom created from O.K.'s magnetic resonance images and the several typical/reference phantoms that exist. As a result, the peak efficiencies for the Oak Ridge Institute of Nuclear Studies (ORINS) phantom were found to be comparable to those for the reference voxel phantoms reproducing realistic human anatomy (the Adult Male phantom and the Japanese Male phantom). The peak efficiency for the personalised phantom, on the other hand, was fairly close to that of the other physical phantom (the Transfer phantom) actually used for the calibration of the spectrometer, suggesting that the ~(131)I thyroid content determined for him in the previous study was sufficiently accurate. The discrepancies of peak efficiencies at the primal photon energy of ~(131)I(365ke V) among the different phantoms were improved by extending the distance between the neck and the spectrometer; however, the appropriate measurement geometry in an actual situation will depend on the primary purpose of the measurements and should be determined accordingly.
机译:其中一位作者(O.K.)住在距离福岛Daiichi核电站南部左右〜110公里的地区,由于事故于2011年3月在日本的事故进入环境。先前的研究确定了使用Nai(Ti)光谱仪的〜(131)甲状腺含量。一个剩余的问题是研究由于用于校准光谱仪和真实主题的物理模型之间的配置(例如甲状腺形状和体积)而导致的测量误差。在本研究中,使用蒙特卡罗n粒子(MNCP)代码进行甲状腺测量的Monte Carlo模拟,以研究从OK的磁共振图像创建的个性化体素幻像之间的光谱仪峰值效率的差异差异存在的典型/参考幻影。结果,发现橡树岭核研究研究所(ORINS)幽灵研究所的峰值效率与参考体素繁殖现实人解剖学(成年男性幻影和日本男性幻影)的参考体素相当。另一方面,个性化幻影的峰值效率相当接近实际用于校准光谱仪的其他物理幻影(转移幻像)的峰值,表明〜(131)I为他确定的甲状腺含量在以前的研究中足够准确。通过在颈部和光谱仪之间延伸距离来改善不同模谱之间的〜(131)I(365KeV)的原始光子能量的峰值效率的差异;然而,实际情况下的适当测量几何形状将取决于测量的主要目的,并且应该相应地确定。

著录项

  • 来源
    《Radiation Protection Dosimetry 》 |2019年第3期| 402 408| 共11页
  • 作者单位

    Department of Radiation Measurement and Dose Assessment National Institutes for Quantum and Radiological Sciences and Technology National Institute of Radiological Sciences 4-9-1 Anagawa Inage-ku Chiba-city Chiba 263-8555 Japan;

    Department of Radiation Measurement and Dose Assessment National Institutes for Quantum and Radiological Sciences and Technology National Institute of Radiological Sciences 4-9-1 Anagawa Inage-ku Chiba-city Chiba 263-8555 Japan Department of Radiology Self-Defense Forces Central Hospital 1-2-24 Ikejiri Setagaya-ku Tokyo 154-0001 Japan;

    Department of Environment Systems University of Tokyo 5-1-5 Kashiwanoha Kashiwa-City Chiba 277-8563 Japan;

    Department of Radiation Measurement and Dose Assessment National Institutes for Quantum and Radiological Sciences and Technology National Institute of Radiological Sciences 4-9-1 Anagawa Inage-ku Chiba-city Chiba 263-8555 Japan;

    Department of Environment Systems University of Tokyo 5-1-5 Kashiwanoha Kashiwa-City Chiba 277-8563 Japan;

    Department of Radiation Measurement and Dose Assessment National Institutes for Quantum and Radiological Sciences and Technology National Institute of Radiological Sciences 4-9-1 Anagawa Inage-ku Chiba-city Chiba 263-8555 Japan;

  • 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
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