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Geant4 beam model for boron neutron capture therapy: investigation of neutron dose components
- Publication Year :
- 2018
- Publisher :
- Netherlands : Springer, 2018.
-
Abstract
- Boron neutron capture therapy (BNCT) is a biochemically-targeted type of radiotherapy, selectively delivering localized dose to tumour cells diffused in normal tissue, while minimizing normal tissue toxicity. BNCT is based on thermal neutron capture by stable (Formula presented.)B nuclei resulting in emission of short-ranged alpha particles and recoil (Formula presented.)Li nuclei. The purpose of the current work was to develop and validate a Monte Carlo BNCT beam model and to investigate contribution of individual dose components resulting of neutron interactions. A neutron beam model was developed in Geant4 and validated against published data. The neutron beam spectrum, obtained from literature for a cyclotron-produced beam, was irradiated to a water phantom with boron concentrations of 100 μg/g. The calculated percentage depth dose curves (PDDs) in the phantom were compared with published data to validate the beam model in terms of total and boron depth dose deposition. Subsequently, two sensitivity studies were conducted to quantify the impact of: (1) neutron beam spectrum, and (2) various boron concentrations on the boron dose component. Good agreement was achieved between the calculated and measured neutron beam PDDs (within 1%). The resulting boron depth dose deposition was also in agreement with measured data. The sensitivity study of several boron concentrations showed that the calculated boron dose gradually converged beyond 100 μg/g boron concentration. This results suggest that 100μg/g tumour boron concentration may be optimal and above this value limited increase in boron dose is expected for a given neutron flux. Refereed/Peer-reviewed
- Subjects :
- inorganic chemicals
Materials science
Biomedical Engineering
Biophysics
General Physics and Astronomy
chemistry.chemical_element
Geant4
Boron Neutron Capture Therapy
boron concentration
030218 nuclear medicine & medical imaging
03 medical and health sciences
0302 clinical medicine
Neutron flux
Computer Simulation
Radiology, Nuclear Medicine and imaging
Neutron
Boron
Monte Carlo
Neutrons
thermal neutron
Phantoms, Imaging
Radiochemistry
Reproducibility of Results
Dose-Response Relationship, Radiation
Alpha particle
Models, Theoretical
Neutron radiation
Neutron temperature
Neutron capture
chemistry
030220 oncology & carcinogenesis
BNCT
epithermal neutron
Beam (structure)
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....87147e1cd0de405715f5d8fa68fa11f8