Neutron Generator (HIRRAC) and Dosimetry Study
スポンサーリンク
概要
- 論文の詳細を見る
Dosimetry studies have been made for neutrons from a neutron generator at Hiroshima University (HIRRAC) which is designed for radiobiological research. Neutrons in an energy range from 0.07 to 2.7 MeV are available for biological irradiations. The produced neutron energies were measured and evaluated by a ^3He-gas proportional counter. Energy spread was made certain to be small enough for radiobiological studies. Dose evaluations were performed by two different methods, namely use of tissue equivalent paired ionization chambers and activation of method with indium foils. Moreover, energy deposition spectra in small targets of tissue equivalent materials, so-called lineal energy spectrum, were also measured and are discussed. Specifications for biological irradiation are presented in terms of monoenergetic beam conditions, dose rates and deposited energy spectra.
- 日本放射線影響学会の論文
著者
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豊田 新
岡山理大
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Matsuura Shinya
Particle Radiation Oncology Research Center Research Reactor Institute Kyoto University
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Komatsu Kenshi
Department Of Genome Repair Dynamics Radiation Biology Center Kyoto University
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Matsuura Shinya
Res. Inst. Rad. Biol. Med. Hiroshima Univ.
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Matsuura Shinya
Department Of Radiation Biology Research Institute For Radiation Biology And Medicine (rirbm) Hirosh
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Matsuura Shinya
Department Of Radiation Biology Research Institute For Radiation Biology And Medicine Hiroshima Univ
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Kamiya K
Department Of Genome Repair Dynamics Radiation Biology Center Kyoto University
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TAUCHI Hiroshi
Department of Biological Science, Faculty of Science, Ibaraki University
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高田 純
Department Of Physics School Of Medicine Sapporo Medical University
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HOSHI Masaharu
International Radiation Information Center, Research Institute for Radiation Biology and Medicine, H
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Shinya Matsuura
Res. Inst. Rad. Biol. Med. Hiroshima Univ.
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豊田 新
岡山理科大学 理学部応用物理学科
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遠藤 暁
Mechanical System Engineering Graduate School Of Engineering Hiroshima University
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Endo Satoru
Department Of Biochemistry Cancer Institute Okayama University Medical School
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Tauchi Hiroshi
Department Of Biological Science Faculty Of Science Ibaraki University
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Komatsu Kenshi
Dep. Of Genome Repair Dynamics Radiation Biology Center Kyoto Univ.
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SUGA SHINJI
Research Institute for Radiation Biology and Medicine, Hiroshima University
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Suga Shinji
Research Institute For Radiation Biology And Medicine Hiroshima University
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Takada J
Okayama Univ. Okayama Jpn
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Tauchi Hiroshi
Dep. Of Biological Sci. Fac. Of Sci. Ibaraki Univ.
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TAKADA JUN
International Radiation Information Center, Research Institute for Radiation Biology and Medicine, H
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TAKEOKA SEIJI
Department of Radiation Biology
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KITAGAWA KAZUHIDE
Department of Radiation Biology
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SUGA SHINJI
Department of Radiation Biology
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Endo Satoru
Div. Environ. Biol. Res. Inst. Rad. Biol. And Med. Hiroshima University
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Masunaga Shin-ichiro
Particle Radiation Oncology Research Center Research Reactor Institute Kyoto University
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Hoshi Masaharu
International Radiation Information Center Hiroshima University
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Shoji Syuneki
Department Of Environment And Mutation Research Institute For Radiation Biology And Medicine
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Sawada S
Department Of Electronic Engineering College Of Science And Engineering Iwaki Meisei University
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Sawada S
Iwaki Meisei Univ. Fukushima‐ken
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Sawada Shozo
Department Of Applied Physics Chubu Institute Of Technology
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Sawada Shozo
Department Of Physics College Of Science Tokyo Institute Of Technology
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Sawada S
Research Institute For Radiation Biology And Medicine Hiroshima University
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Kitagawa Kazuhide
Research Institute For Radiation Biology And Medicine Hiroshima University
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Takada Jun
International Radiation Information Center Research Institute For Radiation Biology And Medicine Hir
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Tauchi Hiroshi
Tokyo Institute Of Technology Research Laboratory For Nuclear Reactors
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