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Titlebook: Advances in Neutron Capture Therapy; Albert H. Soloway,Rolf F. Barth,David E. Carpenter Book 1993 Plenum Press, New York 1993 Amino acid.N

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期刊全称Advances in Neutron Capture Therapy
影响因子2023Albert H. Soloway,Rolf F. Barth,David E. Carpenter
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图书封面Titlebook: Advances in Neutron Capture Therapy;  Albert H. Soloway,Rolf F. Barth,David E. Carpenter Book 1993 Plenum Press, New York 1993 Amino acid.N
影响因子Binary systems for the treatment of cancer potentially are among the most attractive of the new therapeutic modalities that currently are under investigation. The basicconcept is to selectivelydestroy malignantcells whileconcomitantlysparing normal tissue. Neutron capture therapy (NCT) is the binary system that has been the subject of the Fifth International Symposium on Neutron Capture Therapy, which was held September13-17, 1992, in Columbus, Ohio, undertheauspicesoftheInternational Society for Neutron Capture Therapy. Its objective was to bring together researchers from throughout the world and to provide a forum at which they could present the latest advances in the development of Neutron capture therapy. Neutron capture therapy has largely, but not exclusively, focused on the use of boron-10 as the target nuclide. Boron neutron capture therapy (BNCT) is based on the nuclear reaction that occurs when the stable isotope, boron-10, absorbs low-energy non­ ionizing thermal neutrons to yield alphaparticles and recoiling lithium-7 nuclei. The size and energy of these high linear energy transfer (LET) particles result in their being confined largely to the cells in which the capture
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https://doi.org/10.1007/978-1-349-20131-0The Brookhaven Medical Research Reactor (BMRR). became operational in 1959 to support Boron Neutron Capture Therapy (BNCT) research in the Medical Department of the Brookhaven National Laboratory (BNL). The research was interrupted in 1961 after the failure of initial BNCT trials to show efficacy.
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https://doi.org/10.1007/978-1-349-09261-1n of 250 kW TRIGA reactors has been investigated. The study is based on many years of experience with the use of the JRC neutron irradiation facility EURACOSI. which was built around a highly enriched converter made up of a circular uranium-aluminum alloy plate (80 cm diameter, 1.83 cm thickness) containing a total of 4.2 kg of .U.
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Companion to European Heritage Revivals-seated tumours such as glioma, has led to a variety of neutron beam designs becoming available and being proposed at a number of nuclear research centres throughout the world. Present designs focus on producing beams of predominately epithermal neutrons which can penetrate healthy tissue to give th
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