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Measurement of the secondary neutron dose distribution from the LET spectrum of recoils using the CR-39 plastic nuclear track detector in 10 MV X-ray medical radiation fields

机译:使用CR-39塑料核径迹探测器在10 MV X射线医学辐射场中根据反冲力的LET谱测量次级中子剂量分布

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摘要

We measured the recoil charged particles from secondary neutrons produced by the photonuclear reaction in a water phantom from a 10-MV photon beam from medical linacs. The absorbed dose and the dose equivalent were evaluated from the linear energy transfer (LET) spectrum of recoils using the CR-39 plastic nuclear track detector (PNTD) based on well-established methods in the field of space radiation dosimetry. The contributions and spatial distributions of these in the phantom on nominal photon exposures were verified as the secondary neutron dose and neutron dose equivalent. The neutron dose equivalent normalized to the photon-absorbed dose was 0.261 mSv/100 MU at source to chamber distance 90 cm. The dose equivalent at the surface gave the highest value, and was attenuated to less than 10% at 5 cm from the surface. The dose contribution of the high LET component of ≥100 keV/um increased with the depth in water, resulting in an increase of the quality factor. The CR-39 PNTD is a powerful tool that can be used to systematically measure secondary neutron dose distributions in a water phantom from an in-field to out-of-field high-intensity photon beam.
机译:我们测量了来自医用直线加速器的10-MV光子束的水体模中由光核反应产生的次级中子产生的反冲带电粒子。使用CR-39塑料核径迹检测器(PNTD),根据空间辐射剂量测定领域中公认的方法,从后坐力的线性能量转移(LET)光谱评估吸收的剂量和剂量当量。验证了这些在幻影上在标称光子辐照下的贡献和空间分布,作为次级中子剂量和等效中子剂量。归一化至光子吸收剂量的中子剂量当量在源到腔室的距离为90 cm时为0.261 mSv / 100 MU。表面处的等效剂量给出最高值,并且在距表面5 cm处衰减至小于10%。 ≥100 keV / um的高LET成分的剂量贡献随水深的增加而增加,从而导致品质因数增加。 CR-39 PNTD是一款功能强大的工具,可用于系统地测量水体模中从场内到场外高强度光子束的二次中子剂量分布。

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  • 作者单位

    Medical Quantum Science, Department of Health Sciences, Faculty of Medical Sciences, Kyushu University Graduate School of Medical Sciences, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan;

    Radiation Measurement Research Section, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage, Chiba, Japan;

    Department of Radiological Sciences, School of Health Sciences, Ibaraki Prefectural University of Health Sciences, Ami 4669-2, Ami-machi, Inashiki-gun, Ibaraki, Japan;

    Department of Radiological Sciences, School of Health Sciences, Ibaraki Prefectural University of Health Sciences, Ami 4669-2, Ami-machi, Inashiki-gun, Ibaraki, Japan;

    Department of Radiological Sciences, School of Health Sciences, Ibaraki Prefectural University of Health Sciences, Ami 4669-2, Ami-machi, Inashiki-gun, Ibaraki, Japan;

    Department of Radiological Sciences, School of Health Sciences, Ibaraki Prefectural University of Health Sciences, Ami 4669-2, Ami-machi, Inashiki-gun, Ibaraki, Japan;

    Radiation Measurement Research Section, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage, Chiba, Japan;

    Radiation Measurement Research Section, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage, Chiba, Japan;

    Radiation Measurement Research Section, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage, Chiba, Japan;

    Radiation Measurement Research Section, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage, Chiba, Japan;

    Research Institute of Nuclear Engineering, University of Fukui, 1-2-4 Kanawa-cho, Tsuruga, Fukui, Japan;

    Oarai Research Center, Chiyoda Technol Corporation, 3681 Narita-cho, Oarai-machi, Higashiibaraki-gun, Ibaraki, Japan;

    The Cancer Institute Hospital of Japanese Foundation for Cancer Research, 3-8-31 Ariake, Koto-ku, Tokyo, Japan;

    The Cancer Institute Hospital of Japanese Foundation for Cancer Research, 3-8-31 Ariake, Koto-ku, Tokyo, Japan;

    The Cancer Institute Hospital of Japanese Foundation for Cancer Research, 3-8-31 Ariake, Koto-ku, Tokyo, Japan;

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  • 正文语种 eng
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  • 关键词

    Neutron; Photonuclear reaction; Plastic nuclear track detector; Medical linacs;

    机译:中子;光核反应;塑料核径迹探测器;医疗直线加速器;

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