Biological data for heavy-ion radiation therapy
スポンサーリンク
概要
著者
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EGUCHI-KASAI Kiyomi
NIRS
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Ikeda Hiroshi
Department Of Radiation Oncology National Cancer Center Hospital East
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YATAGAI Fumio
IPCR
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KANAI Tatsuaki
Div. Accelerator Phys. Eng.
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FURUSAWA Yoshiya
Div. Accelerator Phys. Eng.
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MINOHARA Shinichi
Div. Accelerator Phys. Eng.
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MURAKAMI Masahiro
Radiation Hazard Research Group, National Institute of Radiological Sciences
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Eguchi‐kasai K
National Inst. Radiological Sci. Chiba Jpn
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Eguchi-kasai Kiyomi
Radiation Effect Mechanisms Research Group Research Center For Radiation Protection National Institu
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Eguchi Kasai
Research Center For Radiation Protection National Institute Of Radiological Sciences
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Eguchi-kasai Kiyomi
Div. Rad. Haz. Natl. Inst. Radiol. Sci.
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Shibuya K
Kyoto Univ. Graduate School Of Medicine Kyoto Jpn
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Murakami Masahiro
Radiation Hazards Research Groupe Natl. Inst. Radiat Sci.
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KOIKE SACHIKO
Clinical Radiation Biology and International Space Radiation Laboratory
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Yatagai F
Riken Saitama Jpn
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Yatagai Fumio
Inst. Phys. Chem. Res.
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Yatagai Fumio
Ri Inst. Phys. Chem. Res.
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Yatagai Fumio
Radioisotope Technology Division The Institute of Physical and Chemical Research
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FUKUTSU Kumiko
Radiat. Hazards
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ANDO Kouichi
Clinical Res., National Institute of Radiological Sciences
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ITSUKAICHI Hiroko
Radiat. Hazards
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SUDOU Michio
Div. Accelerator Res.
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EGUCHI-KASAI Kiyomi
Division of Radiation Hazards
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ITSUKAICHI Hiromi
Division of Radiation Hazards
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Kanai T
National Institute Of Radiological Sciences
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Ando Koichi
Space And Particle Radiation Science Research Group National Institute Of Radiological Sciences
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Mori Shinichiro
Department Of Accelerator And Medical Physics Research Center For Particle Therapy National Institut
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Fukutsu Kumiko
Div. Radiotoxico. Protect
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Itsukaichi Hiromi
Radiation Hazards Research Groupe Natl. Inst. Radiat Sci.
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Koike Sachiko
Heavy-ion Radiobiology Research Group Research Center For Charged Particle Therapy National Institut
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Yatagai Fumio
理化学研究所
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Mutoh Masahiro
Division Of Physiology And Pathology
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Kanai Tatsuaki
Div. Acce. Res. Natl. Inst. Radiol Sci.
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Minohara Shinichi
Research Center For Particle Therapy National Institute Of Radiological Sciences
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Yatagai F
Riken Institute
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Eguchi-kasai Kiyomi
Radiation Effect Mechanisms Res. Group Res. Center For Radiation Protection National Inst. Of Radiol
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Murakami Masahiro
Radiation Effect Mechanisms Res. Group Res. Center For Radiation Protection National Inst. Of Radiol
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Murakami Masahiro
Radiation Hazards Research Group Nirs
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Murakami Masahiro
Radiat. Hazards Res. Group Nirs
関連論文
- Two Major Factors Involved in the Reverse Dose-rate Effect for Somatic Mutation Induction are the Cell Cycle Position and LET Value
- Effects of a 2-step Culture with Cytokine Combinations on Megakaryocytopoiesis and Thrombopoiesis from Carbon-ion Beam-irradiated Human Hematopoietic Stem/progenitor Cells
- Reversed dose-rate effect of high LET radiation in mutation induction
- Recent Innovations in Carbon-Ion Radiotherapy
- A Comparison of Biological Responses of Human Tumor Cells After Irradiation with Heavy Ions and Neutrons
- Response of human tumor cells in plateau phase and grown as spheroids to carbon beam irradiation.
- Experimental Study ot Heavy Ion Radialion using Monkcy and Phantom
- Irradiation system and physical measurements for heavy-ion radiotherapy.
- Development of a Radio-sensitive Mutation System for the Study of Dose Rate Effects of Space High LET Radiation
- Application of Real Time PCR for the Quantitative Detection of Radiation-induced Genomic DNA Strand Breaks
- Responses of total and quiescent cell populations in solid tumors to carbon ion beam irradiation (290 MeV/u) in vivo
- Dose response relations in acute cell death of pancreatic islets after irradiation of golden hamster with X-ray ,7OMeV proton and 290MeV carbon beams.
- RBBs of 30MeV Fast Neutrons and 135MeV Carbon Beams for Clongenecities in Mouse Growing Tail Cartilage Cells.
- The effects of cell death and mutatlon induction lrradiated with acceterated carbon ion beams with spread out Bragg peak.
- Scintillation Detector System for Heavy Ion CT
- Precise Measurement of Range of Heavy Charged Particles
- Comprehensive Study on the Fragment Reaction of Relativistic Heavy Charged Particles for Heavy-Ion Radiotherapy
- Measurements of HIMAC Therapy Beam Qualities
- Current status of stereotactic body radiotherapy for lung cancer
- A Case of Allergic Reaction to Surgical Metal Clips Inserted for Postoperative Boost Irradiation in a Patient Undergoing Breast-Conserving Therapy
- Meningeal Carcinomatosis in Patients with Breast Cancer: Report of 8 Patients
- Cosmetic Results and Complications after Breast Conserving Therapy for Early Breast Cancer
- Primary large cell carcinoma of the submandibular gland
- Analysis of Mutations in the Human HPRT Gene Induced by accelerated heavy-ion irradiation
- LET dependence of biological effects in normal human cells irradiated wfth accelerated neon ions.
- Relative Biological Effectiveness of the 235 MeV Proton Beams at the National Cancer Center Hospital East
- Tumor Induction in Mice Locally Irradiated with Carbon Ions : A Retrospective Analysis
- Qualitative and quantitative difference in mutation induction between carbon- and neon-ion beams in normal human cells
- Analysis of DNA damage checkpoint pathway in mammalian cells
- Cellular Responses after Heavy-ion Exposure
- Expression and localization of p53 and PARP in cultured mammalian cells exposed to accelerated Fe and Ar-ions
- Spectra of Linear Energy Transfer vs. Relative Biological Effectiveness for Accelerated Heavier Ions upon Clonogenic Survival of V79 Cells
- Judgement on "Hit or Non-hit" by Time-Lapse Observations of CHO Cells Exposed to Accelerated Iron-ions.
- Extension of In vitro Life-span of γ-irradiated Human Embryo Cells Accompanied by Chromosome Instability
- Analysis of Mutations in the Human HPRT Gene induced by High LET Heavy-ion Irradiation
- Time-Lapse Photographic Observation of CHO Cells Exposed to Accelerated Iron-Ions
- Mechanisms of Interphase-Death Induction for CHO Cells Exposed to Accelerated Heavy-Ions
- RBE and OER for Cell Killing upon V79 Cells by Heavy-Ion Beams at a Very High LET Region
- Analysis of Mutations in the Human HPRT Gene Induced by Heavy-ion Irradiation II
- Skin Shrinkage Caused by Neon-20 and Carbon-12
- LET Dependence of Interphase Cell-Death Induction by Accelerated Heavy-Ions
- The effects of irradiated volume on early skin reaction after carbon ion beam irradiation.
- Biological effects of heavy-ion irradiation on DNA double-strand breaks repair deficient mutant cell line
- Response of Crypt Cell Survivals of Mouse Intestine after Fractionated Doses of Accelerated Carbon-Ion with Spread-Out Bragg Peak.
- Biological data for heavy-ion radiation therapy
- Analysis of Survival Curve Parameters caused by High-LET Accelerated Ion Beams, Cell Strains, and LETS
- Increase of mitotic indices in a human salivary gland tumor xenograft after irradiation with particle beams.
- Chromosome Aberrations Induced by Neon lon Beams Produced by RIKEN Ring Cyclotron in human lymphocytes of blood.
- Dose response relations in acute cell death of pancreatic islet after whole body irradiatbn of gotlen harnster with gamma, proton and carton beams.
- Exploration of 'Over Kill Effect' of High-LET Ar-and Fe-ions by Evaluating the Fraction of Non-hit Cell and Interphase Death
- Sensitive Detection of LOH Events in a Human Cell Line after C-ion Beam Exposure
- Effect of a p53 codon 237 mutation on X-ray induced HPRT mutations
- Analysis of tk Mutation Induced by Low Dose Ionizing Radiation in Human Cells
- Contribution of mutant p53 protein to hyper recombination leading to enhancement of spontaneous mutation.
- Cellular Responses to Low Dose Heavy-ions in Human Cells
- p53 protein contributed to repair of double strand break
- p53 and p21 protein induction in TK6 and NS human lymphoblastoid cells after X-ray and heavy ion irradiations.
- Analysis of Mutation Induced by Heavy-ion in Human HPRT Gene
- A Single-Base Detection Methodology ; An Application of SSCP for Revertants of Mouse FM3A ts Mutant
- A fate of DNA double strand breaks in mammalian cells
- A Basic Understanding of the Difficulty in SSCP Analysis
- Effect of Heavy Ion Exposure on Cell Cycle Progression.
- Effect of Exposure of Heavy Ion Beams on G2 Arrest.
- Effect of exposure of carbon ion beams on cell cycle progression
- T cell lymphoma cells derived from SCID mouse are sensitive to X-ray Irradiation and beta-rays from ^C In DNA.
- Enhancement of cell killing by split exposure of hlgh LET heavy ion beams.
- LET, cell cycle dependence for mutation induction and spectrum in HPRT locus
- Cell Cycle and LET Dependence for Radiation-induced Mutation : A Possible Mechanism for Reversed Dose-rate Effect
- Induction of Non-repairable DNA Strand Breaks by N-ion Beams
- New Accelerator Facility for Carbon-Ion Cancer-Therapy
- Survival and relapse pattern after trimodality therapy for malignant pleural mesothelioma.
- Adjuvant Radiation Therapy Following Mastectomy for Breast Cancer
- Exposure to Strong Magnetic Fields at Power Frequency Potentiates X-ray-induced DNA Strand Breaks
- Verification of ^C-290 MeV/u Tlieraputic Beams for HIMAC Clinical Trial using Mammalian cells
- Structural Analysis of Chromosome Damage Induced with X-ray or Heavy Ion Radiation by Atomic ForceMicroscope
- Response of Mouse Intestine to Carbon-12 Beams in Relation to Dose Fraction and Effects of Steroids on Radiation-Induced Intestinal Damages
- Biological features of tissue response after fractionated irradiation with carbon ions
- Bone marrow death is not always more sentitive than intestinal death in Mongolian gerbils ? II Radiosensitivity of bone marrow stem cells.
- Biological effects of active oxygen on the mouse cell rine defective in repair of DNA double-strand breaks
- LET-Dependence of Wing-hair and Eye-color Mosaic Spots Inductions at the Somatic Cells of Drosophila Larva Irradiated with 12C (290MeV/u) Ion Beams
- TS-1 enhances the effect of radiotherapy by suppressing radiation-induced hypoxia-inducible factor-1 activation and inducing endothelial cell apoptosis
- Hypoxia inducible factor-1 influences sensitivity to paclitaxel of human lung cancer cell lines under normoxic conditions
- Expression of VEGF mRNA by irradiation with X-ray and heavy-ion beam
- Adenoid Cystic Carcinoma of the Tracheobronchial System : The Role of Postoperative Radiotherapy
- Effect of Heavy Ion Exposure on Cell Cycle Checkpoints.
- Energy-dependent RBE of Neutrons to Induce Micronuclei in Root-tip Cells of Allium cepa Onion Irradiated as Dry Dormant Seeds and Seedlings
- Relative Biological Effectiveness of Fission Neutrons for Producing Micronuclei in the Root-tip Cells of Onion Seedlings after Irradiation as Dry Seeds
- Effect of Heavy Ion Exposure on Cell Cycle Checkpoints.
- 95 Analysis of Damaged Base Recognition by DNA Polymerases using Atomic Force Microscopy(Repair of radiation damage, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- Effects of Accelerated Carbon-Ion on the Induction of Dominant Lethality in the Medaka,Oryzias latipes (1)
- Visualization of DNA repair protein-DNA interaction by Atomic Force Microscope
- Structural Analysis of Irradiated Plasmid DNA by Atomic Force Microscope
- Cell Kills and change of DNA Distribution of Human Tumor Cells by Fractionated Daily Irradiation in vitro.
- Cell cycle and LET dependence for 6-thioguanine-resistant mutation induced by heavy ion beam in mouse L5178Y cells
- Heavy Ion Beam Irradiation Regulates the mRNA Expression in Megakaryocytopoiesis from Human Hematopoietic Stem/Progenitor Cells
- Irradiation System for HIMAC
- Long-term outcomes of three-dimensional conformal radiation therapy combined with neoadjuvant hormonal therapy in Japanese patients with locally advanced prostate cancer
- Effects of Low-dose Heavy Ions on the Postnatal Development of Mice and the Yield of White Spots in the Mid-ventrum and Tail-tips
- 61 Visualization and Structural Analysis of Ring Chromosomes by Atomic Force Microscope(Chromosome aberrations, Abstracts of the 46th Annual Meeting of the Japan Radiation Research Society)
- Preliminary Calculation of RBE-weighted Dose Distribution for Cerebral Radionecrosis in Carbon-ion Treatment Planning