Literature DB >> 18501657

Monte Carlo calculation for the development of a BNCT neutron source (1eV-10KeV) using MCNP code.

F El Moussaoui1, T El Bardouni, M Azahra, A Kamili, H Boukhal.   

Abstract

Different materials have been studied in order to produce the epithermal neutron beam between 1eV and 10KeV, which are extensively used to irradiate patients with brain tumors such as GBM. For this purpose, we have studied three different neutrons moderators (H(2)O, D(2)O and BeO) and their combinations, four reflectors (Al(2)O(3), C, Bi, and Pb) and two filters (Cd and Bi). Results of calculation showed that the best obtained assembly configuration corresponds to the combination of the three moderators H(2)O, BeO and D(2)O jointly to Al(2)O(3) reflector and two filter Cd+Bi optimize the spectrum of the epithermal neutron at 72%, and minimize the thermal neutron to 4% and thus it can be used to treat the deep tumor brain. The calculations have been performed by means of the Monte Carlo N (particle code MCNP 5C). Our results strongly encourage further studying of irradiation of the head with epithermal neutron fields.

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Year:  2008        PMID: 18501657     DOI: 10.1016/j.canrad.2008.03.005

Source DB:  PubMed          Journal:  Cancer Radiother        ISSN: 1278-3218            Impact factor:   1.018


  1 in total

1.  Therapeutic potential of atmospheric neutrons.

Authors:  Cyril Voyant; Rudy Roustit; Jennifer Tatje; Katia Biffi; Delphine Leschi; Jérome Briançon; Céline Lantieri Marcovici
Journal:  Rep Pract Oncol Radiother       Date:  2010-12-04
  1 in total

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