Kodama Seiji | Division Of Radiation Biology And Health Science Research Center For Radiation And Radioisotopes Res
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概要
- 同名の論文著者
- Division Of Radiation Biology And Health Science Research Center For Radiation And Radioisotopes Resの論文著者
関連著者
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Kodama Seiji
Division Of Radiation Biology And Health Science Research Center For Radiation And Radioisotopes Res
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Suzuki Keiji
大阪府立大学先端科学イノベーションセンター 放射線生命科学
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Suzuki Keiji
Course Of Life Sciences And Radiation Research Graduate School Of Biomedical Sciences Nagasaki Unive
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Kodama Seiji
Lab. Radiat. &life Sci. Schl. Pharm. Sci. Nagasaki Univ.
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SUZUKI Keiji
Div. Radiat. Biol. , Fac. Pharm. Sci. , Nagasaki Univ.
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Kodama Seiji
Div. Radial Biol. Dept. Health. Sci. Fac. Pani. Sci. Nagasaki Univ.
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Watanabe Masami
Particle Radiation Biology Research Reactor Institute Kyoto University
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Kodama Seiji
長崎大学 医歯薬学総合研究科放射線生物学
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Watanabe Masami
Div. Radiat. Biol. , Fac. Pharm. Sci. , Nagasaki Univ.
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Kodama Seiji
Div. Radiat. Biol. , Fac. Pharm. Sci. , Nagasaki Univ.
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Kodama S
Radiation Biology Laboratory Radiation Research Center Frontier Science Innovation Center Organizati
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安藤 興一
学振科技特
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Sasai Keisuke
Heavy-ion Radiobiology Research Group National Institute Of Radiological Sciences
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Sasai Keisuke
京都大学 放射腺腫瘍学・画像応用療学
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Kodama Seiji
京都大学原子炉実験所 粒子線生物学研究分野
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Watanabe Masami
Particle Radiation Biology Res. Reactor Inst. Kyoto Univ.
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Shibuya Keiko
Department Of Radiation Oncology And Image-applied Therapy Kyoto University Hospital
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安藤 興一
Natl. Instit. Rad. Sci. Med.
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Futami Yasuyuki
茨城県立医療大学 放射線技術科学科
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Futami Yasuyuki
Dvisin Of Accelerator Physics And Engineering National Institite Of Radiological Sciences Chiba Japa
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Koike Sachiko
Heavy-ion Radiobiology Res. Group National Inst. Of Radiological Sciences
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FURUSAWA Yoshiya
National Institute of Radiological Sciences
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Ando K
Division Of Health Sciences Graduate School Of Medicine Osaka University
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Futami Yasuyuki
The Institute Of Physics University Of Tsukuba
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Ando Koichi
Heavy-ion Radiobiology Research Group National Institute Of Radiological Sciences
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Takai Nobuhiko
Heavy-ion Radiobiology Research Group National Institute Of Radiological Sciences
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小池 幸子
北里大学 獣医学部
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KOIKE Sachiko
Heavy-Ion Radiobiology Research Group, Research Center for Charged Particle Therapy, National Instit
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Ando Koichi
Heavy-ion Radiobiology Res. Group National Inst. Of Radiological Sciences
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Uzawa Akiko
Heavy-ion Radiobiology Research Group Research Center For Charged Particle Therapy National Institut
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Suzuki Minoru
Particle Radiation Oncology Research Center Kyoto University
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FURUSAWA Yoshiya
Heavy-ion Radiobiology Research Group, Research Center for Charged Particle Therapy, National Instit
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Kodama Seiji
Radiation Biology Laboratory Radiation Research Center Frontier Science Innovation Center Organizati
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FUTAMI Yasuyuki
Shizuoka Cancer Center
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UZAWA Akiko
Heavy-Ion Radiobiology Research Group, Research Center for Charged Particle Therapy, National Instit
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TAKAI Nobuhiko
Heavy-ion Radiobio. Res. Grp., Natl Inst. Radiol. Sci.
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WATANABE Masami
Laboratory of Radiation Biology, Division of Radiation Life Science, Department of Radiation Life Sc
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Monobe Manami
Department Of Radiation Biosciences Faculty Of Pharmaceutical Sciences Tokyo University Of Science
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Monobe M
Chiba Univ. Chiba Jpn
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Kashino Genro
Particle Radiation Oncology Research Center Kyoto University
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安藤 興一
放医研
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Nojima K
National Inst. Radiological Sci. Chiba Jpn
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Suzuki Keiji
Division Of Radiation Biology Department Of Radiology And Radiation Biology Graduate School Of Biome
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Matsuda Naoki
Division Of Radiation Biology And Protection Center For Frontier Life Sciences Nagasaki University
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Suzuki M
Particle Radiation Oncology Research Center Kyoto University
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ISHIZAKI Kanji
Central Laboratory and Radiation Biology, Aichi Cancer Center Research Institute
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石崎 寛治
Central Laboratory And Radiation Biology Aichi Cancer Center Research Institute
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Ishizaki Kanji
Central Laboratory And Radiation Biology Research Institute Aich Cancer Center
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Ishizaki K
Central Laboratory And Radiation Biology Aichi Cancer Center Research Institute
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Ishizaki Kanji
Laboratory Of Experimental Radiology Aichi Cancer Center
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Kinashi Yuko
Radiation Safety And Control Research Reactor Institute Kyoto University
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Masunaga Shin-ichiro
Particle Radiation Oncology Research Center Kyoto University
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Mori Sao
Lab. Radiat. Life Sci. Schi. Pharm. Sci. Nagasaki Univ.
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木梨 友子
京都大学原子炉実験所附属粒子線腫瘍学研究センター
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WATANABE Masami
Nagasaki Univ.
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Watanabe M
Laboratory Of Radiation Biology Research Reactor Institute Kyoto University
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Miyata Shiro
Dep. Of Neurosurgery Osaka Medical Coll.
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KODAMA SEIJI
Laboratory of Radiation and Life Science, Department of Health Sciences, School of Pharmaceutical Sc
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Mori Toshio
奈良県立医科大学 ラジオアイソトープ
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Kinashi Yuko
Radiation Oncology Research Laboratory Research Reactor Institute Kyoto University
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堀 均
Division Of Bioinformatics Engineering Department Of Life System Institute Of Technology And Science
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ONO Koji
Radiation Oncology Research Laboratory, Research Reactor Institute, Kyoto University
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KINASHI Yuko
Radiation Oncology Research Laboratory, Research Reactor Institute, Kyoto University
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NAGASAWA Hideko
Departmet of Biological Science and Technology, Faculty of Engineering, University of Tokushima
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UTO Yoshihiro
Departmet of Biological Science and Technology, Faculty of Engineering, University of Tokushima
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HORI Hitoshi
Departmet of Biological Science and Technology, Faculty of Engineering, University of Tokushima
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KASAI Soko
Department of Biological Science and Technology Faculty of Engineering, University of Tokushima
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Hosoi Hiroshi
Department Of Biological Science And Technology Faculty Of Engineering University Of Tokushima
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堀 均
徳島大学工学部
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NAGATA Kenji
Particle Radiation Oncology Research Centre, Research Reactor Institute, Kyoto University
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笹井 啓資
新潟大学医学部放射線医学講座
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NIKAIDO Osamu
Kanazawa Univ.
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YATAGAI Fumio
IPCR
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Nikaido O
Kanazawa Univ. Kanazawa Jpn
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Nikaido Osamu
Laboratory Of Molecular Human Genetics Faculty Of Pharmaceutical Sciences Kanazawa University
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Nikaido Osamu
Division Of Radiation Biology Faculty Of Pharmaceutical Science Kanazawa University
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Hamano Hiroki
Division Of Radiation Biology Department Of Radiology And Radiation Biology Course Of Life Sciences
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NOJIMA Kumie
International Space Radiation Laboratory
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YATAGAI Fumio
RIKEN Institute
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山田 滋
放医研・重粒子医科学センター
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Takagaki Masao
Department Of Radiology Osaka Medical College
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MASUNAGA Shin-ichiro
Radiation Oncology Research Laboratory, Research Reactor Institute, Kyoto University
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SUZUKI Minoru
Radiation Oncology Research Laboratory, Research Reactor Institute, Kyoto University
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Ono Koji
Particle Radiation Oncology Research Center Kyoto University
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Tano Keizo
Kyoto Univ.
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MORI Toshio
Nara Medical Univ.
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MIYAKE Mieko
Div. Radiat. Biol. , Fac. Pharm. Sci. , Nagasaki Univ.
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Sato Shinichiro
Information Network System Development Section Nati Inst Radiolo Sci
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Matsubara Sho
Particle Radiation Oncology Research Center Research Reactor Institute Kyoto University
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Matsuura Shinya
Particle Radiation Oncology Research Center Research Reactor Institute Kyoto University
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Matsuura Shinya
京都大学放射線生物研究センター
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Matsuura Shinya
Department Of Radiation Biology Research Institute For Radiation Biology And Medicine Hiroshima Univ
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ONO Koji
Particle Radiation Oncology Research Center, Research Reactor Institute, Kyoto University
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TAKAGAKI Masao
Radiat. Oncol. Res. Lab. Res. Reactor Inst. Kyoto Univ.
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Shinya Matsuura
Res. Inst. Rad. Biol. Med. Hiroshima Univ.
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YAMADA Shigeru
Research Center Hospital for Charged Particle Therapy, National Institute of Radiological Sciences
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SASAKI Hitoshi
Department of Hospital Pharmacy, Nagasaki University Hospital of Medicine and Dentistry
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TACHIBANA Akira
Radiat. Biol. Cent., Kyoto Univ.
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Ikeda Hiroshi
Department Of Radiation Oncology National Cancer Center Hospital East
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Sasaki H
Dep. Of Hospital Pharmacy Nagasaki Univ. Hospital
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MASUNAGA Shin-Ichiro
Particle Radiation Oncology Research Centre, Research Reactor Institute, Kyoto University
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永沢 秀子
岐阜薬科大学創薬化学大薬化学
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永沢 秀子
徳島大学工学部
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Hashimoto Mitsumasa
Kyoto Univ.
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SUZUKI Keiji
Nagasaki Univ.
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OHIRA CHISA
Frontier Research Center, National Institute of Radiological Sciences
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HIRAYAMA Ryoichi
Heavy-Ion Radiobiology Research Group, Research Center for Charged Particle Therapy, National Instit
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Ghosh Jagadish
Laboratory Of Radiation And Life Science Department Of Health Science School Of Pharmaceutical Scien
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Kodama Seiji
Nagasaki Univ. Fac. Of Pharm. Sd.
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Kodama Seiji
Fac. Pham. Sci. Nagasaki Univ.
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Oguri T
Hiroshima Univ. Fac. Medicine Hiroshima
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Oguri Tetsuya
Second Department Of Internal Medicine Hiroshima University Faculty Of Medicine
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Shibuya K
Kyoto Univ. Graduate School Of Medicine Kyoto Jpn
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Nikaido Osamu
Div. Radiation Biol. Kanazawa Univ.
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Sasaki Hitoshi
長崎大学 医歯学部病院薬剤部
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Sasaki Hitoshi
Department Of Basic Pharmaceutics Faculty Of Pharmaceutical Sciences Kyoto University
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Shiota H
Nagasaki Univ. Nagasaki Jpn
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Ishizaki Kanji
Aichi Cancer Center Research Institute
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Ishizaki Kanji
Aichi Cancer Center
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OSHIMURA Mitsuo
Division of Molecular Genetics and Biofunction, Department of Biomedical Science, Graduate School of
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MORI Toshio
RI Center, Nara Medical University
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IKEDA Hiroshi
Department of Neurosurgery, Japanese Red Cross Nagoya Daiichi Hospital
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ISHIKAWA Hitoshi
Department of Radiation Oncology, Gunma University Graduate school of Medicine
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中島 幹夫
佐賀大学医学部附属病院 手術部
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中島 幹夫
佐賀医科大学手術部
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小野 公二
京都大学原子炉実験所 粒子線腫瘍学研究センター
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増永 慎一郎
京都大学大学院医学研究科放射線医学講座腫瘍放射線科学
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Furusawa Yoshiya
Research Center For Charged Particle Therapy National Institute Of Radiological Sciences
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SUZUKI Minoru
Department of Radiology, Kinki University School of Medicine
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TAKAGAGI Masao
Radiation Oncology Research Laboratory, Research Reactor Institute, Kyoto University
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AKABOSHI Mitsuhiko
Division of Radiation Life Science
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FURUSAWA Yoshiya
NIRS
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ANDO Koichi
NIRS
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TSUJII Hirohiko
Research Center for Charged Particle Therapy, National Institute of Radiological Sciences
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OGINO Takashi
Department of Radiology, National Cancer Center Hospital Ease
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ANDO Koichi
NATIONAL INSTITUTE OF RADIOLOGICAL SCIENCES
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KANAI Tatsuaki
Research Center of Charged Particle Therapy, National Institute of Radiological Sciences
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Futami Yasuyuki
Division Of Accelerator Physics And Engineering National Institute Of Radiological
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KUBOTA Nobuo
Dept. of Urology Kochi Medical College.
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MATSUBARA Sho
Dept. of Radiological Sciences Ibaraki Prefectural University of Health Sciences.
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Tanada Shuji
Department of Medical Imaging, National Institute of Radiological Sciences
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NAKASHIMA Mikiro
Department of Hospital Pharmacy, Nagasaki University Hospital of Medicine and Dentistry
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SONODA Eiichiro
Dept. Radiat. Gen. Kyoto Univ.
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Nakashima M
Dep. Of Clinical Pharmacy Graduate School Of Biomedical Sciences Nagasaki Univ.
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Nakashima M
Department Of Hospital Pharmacy Nagasaki University Hospital Of Medicine And Dentistry
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Nakashima Mikiro
Department Of Hospital Pharmacy Nagasaki University School Of Medicine
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Hachiya Misao
Division Of Radiation Health Natl. Inst. Radial. Sci.
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KASHINO Genro
Particle Radiation Oncology Research Centre, Research Reactor Institute, Kyoto University
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HASHIMOTO W.
Kanazawa Univ.
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HASHIMOTO Mitsumasa
Kanazawa Univ.
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SUZUKI Keiji
Yokohama City Univ.
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MASUNAGA Shin-ichikro
Radiation Oncology Research Laboratary, Research Reactor Instutute, Kyoto University
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KAWAI Ken-ichi
Division of Radiation Life Science, Research Reactor Instutute, Kyoto University
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SUZUK Masao
Natl. Inst. Radiol. Sci.
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KASE Youko
Natl. Inst. Radiol. Sci.
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SUGAHARA Tsutomu
Health Res. Fond.
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OKAICHI Kumio
Nara Med. Univ.
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FURUSAWA Yoshiya
Space and Prticle Radiation Science Research Group, national Institute of Radiological Science (NIRS
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Inada T
Department Of Radiological Sciences Ibaraki Prefectural University Of Health Sciences
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Inada Tetsuo
Ibaraki Prefectural Univ. Of Health Sci.
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Inada Tetsuo
Institute Of Basic Medical Sciences University Of Tsukuba
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OHMURA Motoko
Dept. of Radiol. Yokohama Guy Univ.
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SUZUKI Masao
NIRS
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KOIKE Sachiko
NIRS
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INADA Tetsuo
Tsukuba Univ.
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TSUJII Hirohiko
National Institute ol Radiological Sciences
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ICHIKAWA Masataka
Department of Respiratory Medicine, Graduate School of Medicine, Kyoto University
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Nakano M
Department Of Laboratory Medicine Nagasaki University School Of Medicine
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OOHIRA Chisa
RadGenomics Project, Frontier Research Center, National Institute of Radiological Sciences
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OGIU Toshiaki
Low Dose Radiat. Eff. Res. Proj., NIRS
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LEE RYONFA
Frontier Research Center, National Institute of Radiological Sciences
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PRISE Kevin
Gray Cancer Institute, Mount Vernon Hospital
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KINASHI Yuko
Particle Radiation Oncology Research Center, Research Reactor Institute, Kyoto University
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ANDO Koichi
Natl. Inst. Radiol. Sci.
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KOIKE Sachiko
Natl. Inst. Radiol. Sci.
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KANAI Tatsuaki
Natl. Inst. Radiol. Sci.
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Suzuki Masao
National Institute of Radiological Science
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FUKUTSU Kumiko
Natl. Inst. Radiol. Sci.
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FURUSAWA Yoshiya
Natl. Inst. Radiol. Sci.
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YATAGAI Fumio
Inst. Phy. Che. Res.
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Nagata Kenji
Particle Radiation Oncology Research Centre Research Reactor Institute Kyoto University
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Aratono Yasuyuki
Jpn. Atomic Energy Research Inst.
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Mori Isao
Radiat. Life Sci. Pharm. Sci. Nagasaki Univ.
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Inoue O
Division Of Health Sciences Graduate School Of Medicine Osaka University
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Inoue O
Central Research Laboratory Matsushita Electric Industrial Co. Ltd.
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Kawai Kumi
Department Of Pathology Aichi Medical University School Of Medicine
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Kubata Nobuo
Ibaraki Prefectural Univ. Of Health Sci.
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Tanada Shuji
Department Of Medical Imaging National Institute Of Radiological Sciences
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Kubota N
Department Of Radiological Sciences Ibaraki Prefectural University Of Health Sciences
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Ogino Takashi
Department Of Radiation Oncology National Cancer Center Hospital East
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Oguri Tetsuya
Department Of Internal Medicine And Molecular Science Nagoya City University Graduate School Of Medi
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Ohmura Motoko
Yokohama City Univ. School Of Med. Dep. Of Radiol. Tokyo Med. &dent. Univ. School Of Dent. Dep.
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Kawai K
Nagoya Univ. School Of Medicine Nagoya
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Monobe Manami
Grad. Sch. Scie. Tech. Chiba Univ.
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Omori Katsunori
Institute Of Space And Astronautical Science Japan Aerospace Exploration Agency (jaxa)
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Nikaido Osamu
Facul. Pharm. Sci. Kanazawa Univ.
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Obata Takayuki
Department Of Medical Imaging National Institute Of Radiological Sciences
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Ishizaki Kanji
Lab. Exp. Radiol. Aichi Cancer Center Research Institute
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Tsujii Hirohiko
Research Center For Charged Particle Therapy National Institute Of Radiological Sciences
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Kobayashi Hirosuke
Department of Medicine, Kitasato University
著作論文
- Changes in the Sensitivity of Intratumor Cells during Fractionated Tirapazamine Administration
- Usefulness of Tirapazamine as a Combined Agent in Chemoradiation and Thermo-chemoradiation Therapy at Mild Temperatures: Reference to the Effect on Intratumor Quiescent Cells
- The Mechanism of Increase in Drug Resistance in Polyploid Hamster Cells Induced by Cell Cycle-Perturbing Agents
- Transient DNA inhibition produces proliferative tetraploid W9 cells which have both increased drug resistance and genomic instability with a propensity for gene amplification
- Genetic Instability Induced by Cell Cycle Arrest at S Phase in V79 Cells
- Potentially Lethal Damage Repair by Total and Quiescent Tumor Cells Following Various DNA-damaging Treatments
- Enhancement of Cisplatin Sensitivity of Quiescent Cells in Solid Tumors by Combined Treatment with Tirapazamine and Low-Temperature Hyperthermia
- Genetical instability induced by low doses of radiations
- A Comparison of Biological Responses of Human Tumor Cells After Irradiation with Heavy Ions and Neutrons
- Effective Suppression of Bystander Effects by DMSO Treatment of Irradiated CHO Cells
- Responses of total and quiescent cell populations in solid tumors to carbon ion beam irradiation (290 MeV/u) in vivo
- Absence of G1 arrest after X-ray irradiation in cancer cells with wild-type p53
- Biological effect of radiation-induced long life radicals
- The induction and the fate of chromosome aberrations by ionizing radiation in human fibroblast cells
- Analysis of X-ray-induced chromosome aberrations in human embryonic fibroblasts used by FISH
- Changes in the Pharmacokinetics of Gd-DTPA in Experimental Tumors after Charged Particle Radiation : Comparison with γ-Ray Radiation
- Repair of Skin Damage During Fractionated Irradiation with Gamma Rays and Low-LET Carbon Ions
- Biological Gain of Carbon-ion Radiotherapy for the Early Response of Tumor Growth Delay and against Early Response of Skin Reaction in Mice
- 269 Significance of beta term in carbon-ion radiotherapy(Bases of radiotherapy, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- 265 Relationship between RBE values of Carbon Ion and Tumor Growth Rate(Bases of radiotherapy, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- Radioprotective Effects of Beer on Radiation-Induced Acute Toxicity in Mice
- Dependence of Gut-crypt Sensitivity on the Time Interval between Two Fractions of Carbon Ion Radiation
- Tumor Growth Rate and RBE values of high LET Carbon Ions
- Dependence of Carbon-Ion RBE on Dose Size -Difference between Skin and Tumors
- RBE of Carbon Ions for Tumor Growth Delay
- Fractionated irradiation with carbon ions induced resistance in mouse gut crypt cells
- Relative Biological Effectiveness of the 235 MeV Proton Beams at the National Cancer Center Hospital East
- Effects of sequentially mixed LET on tumor growth delay
- Fractionated irradiation with carbon ions to gut intestinal crypt cells
- Tumor Induction in Mice Locally Irradiated with Carbon Ions : A Retrospective Analysis
- Extension of In vitro Life-span of γ-irradiated Human Embryo Cells Accompanied by Chromosome Instability
- Response of Crypt Cell Survivals of Mouse Intestine after Fractionated Doses of Accelerated Carbon-Ion with Spread-Out Bragg Peak.
- Introduction of a Normal Human Chromosome 8 Corrects Abnormal Phenotypes of Werner Syndrome Cells Immortalized by Expressing an hTERT Gene
- Delayed Induction of Telomere Instability in Normal Human Fibroblast Cells by Ionizing Radiation
- 226 Radiation-induced delayed chromosomal instability caused by large deletion(Genetic instability, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- 223 Radiation-Induced Delayed Chromosomal Instability(Genetic instability, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- 221 A Role of DNA Double Strand Break Repair in the Induction of Genetic Instability(Genetic instability, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- 214 The complementation of abnormal phenotypes of Werner syndrome cells by expressing WRN gene(Physics, chemistry and DNA damage, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- S-2-3 Radiation-Induced Delayed Chromosome Aberrations(Radiation Induced Genetical Instability : What Is the Mechanism That a Cell Memorizes Being Irradiated?, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- Instability of a Human Chromosome Exposed to Radiation in Unirradiated Mouse Cells
- The Role of DNA-PKcs Function on Induction of Genetic Instability by Radiation
- Radiation-induced genomic instability caused by large deletion (position)
- Thermosensitization by Inhibition of Gap Junctional Intercellular Communication
- Phenotypic Reversion of an X-Ray-Induced Transformant of Mouse m5S by Introduction of a Human Chromosome 11
- The Effect of DNA Repair Defects on the Induction of Delayed Chromosome Aberrations by Radiation
- Involvement of Telonomic Instability in the Formation of Delayed Chromosome Aberrations Induced by Radiation
- Tumor Vasculature and PO2 Distributions Depend on Implantation Site
- Effects of fractionated irradiation with carbon ions on the NFSa fibrosarcoma in mice
- Evidence for Induction of DNA Double Strand Breaks in the Bystander Response to Targeted Soft X-Rays in Repair Deficient CHO Cells
- Apoptosis Induction in the NFSa tumor after irradiation with carbon ions
- Increased Chromosome Instability and Accumulation of DNA Double-strand Breaks in Werner Syndrome Cells
- Biochemical Markers for in Situ Detection of DNA Double Strand Breaks in Cultured Mammalian Cells
- Exogenous Expression of Exonuclease Domain-deleted WRN Interferes with the Repair of Radiation-induced DNA Damages
- Differences in Effects of Oncogenes on Sensitivity to Anticancer Drugs
- Involvement of Reactive Oxygen Species (ROS) in the Induction of Genetic Instability by Radiation
- 225 Influence of Reactive Oxygen Species in the Induction of Genetic Instability by Radiation(Genetic instability, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- 222 X-ray-induced genomic instability in Atm knock-out mouse cells(Genetic instability, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- 220 Mechanism of radiation-induced delayed mutagenesis(Genetic instability, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- 217 Localization of Phosphorylated H2AX and Phosphorylated p53 in Cells Inducing X-ray-induced Senescence-like Growth Arrest(Physics, chemistry and DNA damage, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- 168 Mechanism of cell cycle-dependent cell death by heat shock(Radio-protection and sensitization, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- 141 The role of site-specific phosphorylation on X-ray-induced p53 accumulation(Redox regulation, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- Response of Mouse Intestine to Carbon-12 Beams in Relation to Dose Fraction and Effects of Steroids on Radiation-Induced Intestinal Damages
- Expression of VEGF mRNA by irradiation with X-ray and heavy-ion beam
- 104 DNA Damage-Induced Phosphorylation of Histone H2AX and Alteration of Chromatin Structure(Repair of radiation damage, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- 97 A Role of WRN Protein in the Recovery from DNA Replication Arrest(Repair of radiation damage, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- Induction of Micronuclei in CHO Cells by Bleomycin but not by X-irradiation is Decreased by Treatment with HMG-CoA Reductase Inhibitors
- Involvement of reactive oxygen species (ROS) in the induction of genetic instability by radiation
- Relationship between dysfunction of WRN protein and radiosensitivity
- Role of WRN exonuclease in repair of DNA double strand breaks
- Characterization of X-ray-induced Mutation in Werner Syndrome Cells
- Analysis of X-Ray-Induced Mutation in Werner Syndrome Cells
- Effect of introduction of a normal chromosome 8 on Werner syndrome cells
- Molecular analysis of mutations at the hprt locus in Werner syndrome cells by multiplex PCR
- Effects of Beer Administration in Mice on Acute Toxicities Induced by X Rays and Carbon Ions
- Differences in pO_2 Peaks of a Murine Fibrosarcoma between Carbon-ion and X-ray Irradiation
- 267 Early Change of ^C-Thymidine Uptake after Carbon-beam Irradiation in Experimental Tumors(Bases of radiotherapy, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- Tumor induction in mouse legs after irradiation with heavy ions
- Phosphorylated ATM Foci as a Biochemical Marker for DNA Double Strand Breaks
- Mechanism of radiation-induced delayed mutagenesis
- Delayed Induction of DNA Damage and Activation of p53 in X-ray Surviving Cells
- Participation of ATM function in X-ray-induced delayed chromosomal instability
- Biological Action of Curcumin on Transformed Mouse Cells
- Biological Action of Curcumin on Transformed Mouse Cells
- Role of Ser15, Thr18, and Ser20 phosphorylation in p53 stabilization after X-irradiation
- X-rays-induced phosphorylation of H2AX in mitotic cells
- The role of telomerase activity in the radiation carcinogenesis processes of normal human cells
- Suppressive Effect of p53 on Heat-induced Multiple Centrosomes
- In vitro transformation system using hTERT-transfected normal human diploid cells
- Radiation-induced long life-time radical which causes genetical effects
- Large Isotope Effect on Reaction of Vitamin C and Long-lived Radicals in γ-Irradiated Protein Solution (a Model of Cells). Tunneling Reaction in Biological System.
- Radiation-induced delayed damage in scid mouse cells
- NEOPLASTIC TRANSFORMATION AND CHROMOSOME ABERRATION INDUCED BY TRITIATED WATER IN GOLDEN HAMSTER EMBRYO CELLS
- Introduction of human gadd45 gene to human immortal cell lines using the inducible expression vector
- Mechanism of p53 Accumulation and Activation by Ionizing Radiation and Telomere Shortening
- Phosphorylation of p53 caused by radiation and telomere-shortening
- Recovery of clonogenic tumor cells after irradiation with carbon ions
- 211 Effect of RibCys on scavenging long-lived radicals and reducing gene mutation in mammalian cells by adding AFTER irradiation(Physics, chemistry and DNA damage, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- Mechanisms of cell death by heat
- Molecular analysis of p53 protein expression through signal transduction pathway in normal human cells following X-irradiation.
- Inhibitory Effect of Curcumin on the Growth of Transformed Mouse Cells
- Mechanism of Interaction of c-Abl with ATM Protein and DNA-PK.
- Involvement of Long-Lived Radicals Induced by Radiation in the Induction of Mutation
- Suppression of Radiation-Induced Mutation by an Anti-Oxidant Material
- Repression of DNA synthesis in UV-inadiated xeroderma pigmentosum variant cells is more severe than normal cells
- Emission from Golden Hamster Embryo Cells Irradiated by High-Energy-Electrons
- X ray-induced Mutation Frequency was reduced by post-treatments with L-ascorbic acid
- Induction of Gene Mutation and Cancer by Extra-DNA Bystander Effect of Long-lived Protein Radicals inGamma Ray Irradiated Mammalian Cells.
- Scavenging of long-lived radicals by (?)-epigallocatechin-3-O-gallate and simultaneous suppression of mutationin irradiated mammalian cells
- Direct Observation of Long-lived Radicals in Irradiated Mammalian Cells which Cause Mutation
- Telomerase Activity, Telomere Length, and Chromosome Aberrations in the Extension of Life Span of Human Embryo Cells Induced by Low-dose X-rays
- Early skin reactions after fractionated irradiation of 290MeV/u Carbon- 12
- S-6-2 Long-Lived Radicals (LLR) Causes Genotoxic Effects(Biological Effects of Long-lived Radicals Induced by Radiation, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- Mechanism of delayed mutagenesis by radiation-induced genomic instability
- Enhanced Cell Proliferation by X-Irradiated Conditioned Medium
- Expression of p53 and p21 proteins after ionizing irradiation in tumor cells express wild-type p53
- Accumulation and activation of p53 protein through its phosphorylation and acetylation after heat shock
- Cellular response and p53 accumulation following heat shock in normal human cells
- Hypermutability of xeroderma pigmentosum variant cells is caused by deficiency in induction of p21 after UV irtradiation
- Effects of Protein Kinase Inhibitors on the Accumulation Kinetics of p53 Protein in Normal Human Embryo Cells following X-irradiation
- Dose-dependent bi-phasic accumulation of p53 protein in normal human embryo cells following X-irradiation
- The effect of adaptive response on radiation-induced genetic instability
- Radiation-induced genetic instability in mouse m5S cells
- Role of heat-shock protein 72 on expression of malignant phenotypes in cancer cells.
- Effect of low dose of X-rays on chromosome constitution in human embryo cells during long term culture
- Effect of low dose radiation on in vitro life span of human embryo cells
- Role of Gadd45 gene in X-ray-induced G_1 arrest in human cells
- Function of the introduced gadd45 gene in ataxia telangiectasia cells
- Radioprotective effects of L-ascorbic acid
- Radiation-Induced Genetic Instability in Scid Mouse Cells
- Radiation-Induced Delayed Chromosome Instability Studied by a Microcell-Mediated Chromosome Transfer
- Determination of Transforming Sequence in Human Bronchial Epitbelial Cells Malignantly Ttansformed by Radon-Simulated a-Particles
- The Role of Phosphorylation in IR-induced p53 Stabilization and Activation
- Defective Accumulation of p53 Protein In X-irradiated Human Tumor Cells With Low Proteasome Activity
- Radiation-induced p53 phosphorylation and stabilization
- Abnormal Radiosensitivity at G2 Phase in Werner Syndrome Cells and Its Complementation by Introduction of a Normal Human Chromosome 8
- X-ray-induced delayed damage in normal human embryo cells
- Activation of p53 suppresses mitotic catastrophe in response to ionizing radiation
- Increase of heat sensitivity by the induction of HSP72 with deletion of its ATP-binding domain
- The Role of WRN Mutation in Werner Syndrome Cells Which Are Hypersensitive to 4-nitroquinoline-1-0xide
- Involvement of Oxidative Stress in X-ray Induced Delayed Damage
- Delayed Cell Death, Giant Cell Formation and Chromosome Instability Induced by X-irradiation in Human Embryo Cells
- Activation of Mitogen Activated Protein Kinases by Heat Shock
- Cellular Senescence That Does Not Require Telomerase Repression in Rodent Cells
- Role of phosphorylation of p53 protein at serine 15 in normal human embryonic cells irradiated with X-rays
- Werner Syndrome-Associated Abnormal Phenotypes in Relation to WRN Mutation
- Overexpression of HSP72 related to malignantey of human cancer cells
- Why do rodent cells frequently immortalize? : study on telomere dynamics
- Heat treatment induces condensation and disintegration of nuclei but not apoptosis
- The Meaning of Heat Induced Cell Rounding in the Cell Death
- Phosphorylation and ubiquitination of p53 protein in normal human embryonic cells irradiated with X-rays
- Involvement of DSB repair proteins in phosphorylation of p53 in response to ionizing radiation
- Sensors and signal transduction pathways involving p53 protein accumulation in normal human embryonic cells irradiated with X-rays
- p53 function and PLDR
- Activation of signal transduction pathways and p53-dependent pathway by X-rays in normal human embryonic cells
- Effect of overexpression of human hsp72 protein on cell growth and mutation induction in mammalian cells