Study of dose rate in the brain model based on the neutron beam of SUT-MNSR

Boron neutron capture therapy (BNCT) is tumor-cell targeted radiotherapy that has significant superiority over conventional radiotherapies. The most neutron beams used for BNCT are from the reactors with high power, new design Miniature Neutron Source Reactor(MNSR) with 45kW with BNCT beam for Suran...

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Main Authors: Li Kaijian, Limphirat Ayut, Sanguansak Nuanwan
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2020/15/epjconf_nd2019_24002.pdf
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author Li Kaijian
Limphirat Ayut
Sanguansak Nuanwan
author_facet Li Kaijian
Limphirat Ayut
Sanguansak Nuanwan
author_sort Li Kaijian
collection DOAJ
description Boron neutron capture therapy (BNCT) is tumor-cell targeted radiotherapy that has significant superiority over conventional radiotherapies. The most neutron beams used for BNCT are from the reactors with high power, new design Miniature Neutron Source Reactor(MNSR) with 45kW with BNCT beam for Suranaree University of Technology(SUT) is being designed and built. According to SUT-MNSR physics design, SUT-MNSR will have the epithermal neutron beam for BNCT treatment. The dose rate distribution in the body should be estimated before SUT-MNSR is used for BNCT clinical trials (Brain tumor). This paper introduces the simulation for SUT-MNSR neutron beam by Monte Carlo N-Particle Transport Code (MCNP), and the establishment of human brain model and physics dose rate distribution in brain tumor by MCNP program.The brain model is established according to the different element in the skin, skull and tissue, the distribution of neutron dose and Gamma dose in the brain model were calculated.
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spelling doaj.art-da4fa30bc345415496e43de1f8a25f262022-12-21T22:05:32ZengEDP SciencesEPJ Web of Conferences2100-014X2020-01-012392400210.1051/epjconf/202023924002epjconf_nd2019_24002Study of dose rate in the brain model based on the neutron beam of SUT-MNSRLi KaijianLimphirat AyutSanguansak NuanwanBoron neutron capture therapy (BNCT) is tumor-cell targeted radiotherapy that has significant superiority over conventional radiotherapies. The most neutron beams used for BNCT are from the reactors with high power, new design Miniature Neutron Source Reactor(MNSR) with 45kW with BNCT beam for Suranaree University of Technology(SUT) is being designed and built. According to SUT-MNSR physics design, SUT-MNSR will have the epithermal neutron beam for BNCT treatment. The dose rate distribution in the body should be estimated before SUT-MNSR is used for BNCT clinical trials (Brain tumor). This paper introduces the simulation for SUT-MNSR neutron beam by Monte Carlo N-Particle Transport Code (MCNP), and the establishment of human brain model and physics dose rate distribution in brain tumor by MCNP program.The brain model is established according to the different element in the skin, skull and tissue, the distribution of neutron dose and Gamma dose in the brain model were calculated.https://www.epj-conferences.org/articles/epjconf/pdf/2020/15/epjconf_nd2019_24002.pdf
spellingShingle Li Kaijian
Limphirat Ayut
Sanguansak Nuanwan
Study of dose rate in the brain model based on the neutron beam of SUT-MNSR
EPJ Web of Conferences
title Study of dose rate in the brain model based on the neutron beam of SUT-MNSR
title_full Study of dose rate in the brain model based on the neutron beam of SUT-MNSR
title_fullStr Study of dose rate in the brain model based on the neutron beam of SUT-MNSR
title_full_unstemmed Study of dose rate in the brain model based on the neutron beam of SUT-MNSR
title_short Study of dose rate in the brain model based on the neutron beam of SUT-MNSR
title_sort study of dose rate in the brain model based on the neutron beam of sut mnsr
url https://www.epj-conferences.org/articles/epjconf/pdf/2020/15/epjconf_nd2019_24002.pdf
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AT limphiratayut studyofdoserateinthebrainmodelbasedontheneutronbeamofsutmnsr
AT sanguansaknuanwan studyofdoserateinthebrainmodelbasedontheneutronbeamofsutmnsr