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Yonai, S.; Baba, M.; Nakamura, T.; Yokobori, H.; Tahara, Y.
Proceedings of the seventh symposium on accelerator and related technology for application2005
Proceedings of the seventh symposium on accelerator and related technology for application2005
AbstractAbstract
[en] The feasibility study on accelerator-based neutron fields with a spallation neutron source were extended to medium-to-high energy accelerators by the use of simulations. In this study, beam currents required to finish BNCT treatment within one hour were estimated by the simulations of dose-depth distribution in a phantom. These results showed that the accelerator-based neutron field is feasible for BNCT by use of 30-600 MeV accelerators, although the experimental validation is essentially important. (author)
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Source
Hayashizaki, Noriyosu (ed.) (Tokyo Inst. of Technology, Research Laboratory for Nuclear Reactors, Tokyo (Japan)); 94 p; Jun 2005; p. 21-24; ARTA 2005: 7. symposium on accelerator and related technology for application; Tokyo (Japan); 9-10 Jun 2005; Available from the Symposium Committee of Accelerator and Related Technology for Application, Hattori Lab. Research Laboratory for Nuclear Reactors, Tokyo Institute of Technology, 2-12-1, Ookayama, Meguro, Tokyo, 152-8550 JAPAN
Record Type
Miscellaneous
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Conference
Country of publication
BARYON REACTIONS, BARYONS, BEAMS, CHARGED-PARTICLE REACTIONS, CURRENTS, ELEMENTARY PARTICLES, FERMIONS, HADRON REACTIONS, HADRONS, MEDICINE, NEUTRON THERAPY, NEUTRONS, NUCLEAR MEDICINE, NUCLEAR REACTIONS, NUCLEON BEAMS, NUCLEON REACTIONS, NUCLEONS, PARTICLE BEAMS, PARTICLE SOURCES, RADIATION DOSE DISTRIBUTIONS, RADIATION SOURCES, RADIOLOGY, RADIOTHERAPY, SPATIAL DOSE DISTRIBUTIONS, THERAPY
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