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Development of the JAERI computational dosimetry system (JCDS) for boron neutron capture therapy. Cooperative research
The Neutron Beam Facility at JRR-4 enables us to carry out boron neutron capture therapy with epithermal neutron beam. In order to make treatment plans for performing the epithermal neutron beam BNCT, it is necessary to estimate radiation doses in a patient's head in advance. The JAERI Computat...
Autores principales: | , , , , , , , , |
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Lenguaje: | jpn |
Publicado: |
2003
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Acceso en línea: | http://cds.cern.ch/record/747579 |
_version_ | 1780904168730394624 |
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author | Kumada, H Kagei, T Matsumura, A Nakagawa, Y Nose, T Torii, Y Uchiyama, J Yamamoto, K Yamamoto, T |
author_facet | Kumada, H Kagei, T Matsumura, A Nakagawa, Y Nose, T Torii, Y Uchiyama, J Yamamoto, K Yamamoto, T |
author_sort | Kumada, H |
collection | CERN |
description | The Neutron Beam Facility at JRR-4 enables us to carry out boron neutron capture therapy with epithermal neutron beam. In order to make treatment plans for performing the epithermal neutron beam BNCT, it is necessary to estimate radiation doses in a patient's head in advance. The JAERI Computational Dosimetry System (JCDS), which can estimate distributions of radiation doses in a patient's head by simulating in order to support the treatment planning for epithermal neutron beam BNCT, was developed. JCDS is a software that creates a 3-dimentional head model of a patient by using CT and MRI images, and that generates a input data file automatically for calculation of neutron flux and gamma-ray dose distributions in the brain with the Monte Carlo code MCNP, and that displays these dose distributions on the head model for dosimetry by using the MCNP calculation results. JCDS has any advantages as follows; By using CT data and MRI data which are medical images, a detail three-dimensional model of patient's head is able to be made easily. The three-dimensional head image is editable to simulate the state of a head after its surgical processes such as skin flap opening and bone removal in the BNCT with craniotomy that are being performed in Japan. JCDS can provide information for the Patient Setting System which can support to set the patient to an actual irradiation position swiftly and accurately. This report describes basic design of JCDS and functions in several processing, calculation methods, characteristics and performance of JCDS. |
id | cern-747579 |
institution | Organización Europea para la Investigación Nuclear |
language | jpn |
publishDate | 2003 |
record_format | invenio |
spelling | cern-7475792019-09-30T06:29:59Zhttp://cds.cern.ch/record/747579jpnKumada, HKagei, TMatsumura, ANakagawa, YNose, TTorii, YUchiyama, JYamamoto, KYamamoto, TDevelopment of the JAERI computational dosimetry system (JCDS) for boron neutron capture therapy. Cooperative researchHealth Physics and Radiation EffectsThe Neutron Beam Facility at JRR-4 enables us to carry out boron neutron capture therapy with epithermal neutron beam. In order to make treatment plans for performing the epithermal neutron beam BNCT, it is necessary to estimate radiation doses in a patient's head in advance. The JAERI Computational Dosimetry System (JCDS), which can estimate distributions of radiation doses in a patient's head by simulating in order to support the treatment planning for epithermal neutron beam BNCT, was developed. JCDS is a software that creates a 3-dimentional head model of a patient by using CT and MRI images, and that generates a input data file automatically for calculation of neutron flux and gamma-ray dose distributions in the brain with the Monte Carlo code MCNP, and that displays these dose distributions on the head model for dosimetry by using the MCNP calculation results. JCDS has any advantages as follows; By using CT data and MRI data which are medical images, a detail three-dimensional model of patient's head is able to be made easily. The three-dimensional head image is editable to simulate the state of a head after its surgical processes such as skin flap opening and bone removal in the BNCT with craniotomy that are being performed in Japan. JCDS can provide information for the Patient Setting System which can support to set the patient to an actual irradiation position swiftly and accurately. This report describes basic design of JCDS and functions in several processing, calculation methods, characteristics and performance of JCDS.JAERI-TECH-2003-002oai:cds.cern.ch:7475792003 |
spellingShingle | Health Physics and Radiation Effects Kumada, H Kagei, T Matsumura, A Nakagawa, Y Nose, T Torii, Y Uchiyama, J Yamamoto, K Yamamoto, T Development of the JAERI computational dosimetry system (JCDS) for boron neutron capture therapy. Cooperative research |
title | Development of the JAERI computational dosimetry system (JCDS) for boron neutron capture therapy. Cooperative research |
title_full | Development of the JAERI computational dosimetry system (JCDS) for boron neutron capture therapy. Cooperative research |
title_fullStr | Development of the JAERI computational dosimetry system (JCDS) for boron neutron capture therapy. Cooperative research |
title_full_unstemmed | Development of the JAERI computational dosimetry system (JCDS) for boron neutron capture therapy. Cooperative research |
title_short | Development of the JAERI computational dosimetry system (JCDS) for boron neutron capture therapy. Cooperative research |
title_sort | development of the jaeri computational dosimetry system (jcds) for boron neutron capture therapy. cooperative research |
topic | Health Physics and Radiation Effects |
url | http://cds.cern.ch/record/747579 |
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