| Literature DB >> 10661582 |
E Biscegliet1, P Colangelo, N Colonna, P Santorelli, V Variale.
Abstract
The optimal neutron energy for the treatment of deep-seated tumours using boron neutron capture therapy is studied by analysing various figures of merit. In particular, analysis of the therapeutic gain as a function of the neutron energy indicates that, with the currently available 10B carriers, the most useful neutrons for the treatment of deep-seated tumours, in particular glioblastoma multiforme, are those with an energy of a few keV. Based on the results of the simulations, a method is presented which allows us to evaluate the quality of epithermal neutron beams of known energy spectrum, thus allowing us to compare different neutron-producing reactions and beam-shaping assembly configurations used for accelerator-based neutron sources.Entities:
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Year: 2000 PMID: 10661582 DOI: 10.1088/0031-9155/45/1/304
Source DB: PubMed Journal: Phys Med Biol ISSN: 0031-9155 Impact factor: 3.609