Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8166726 | Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment | 2018 | 17 Pages |
Abstract
Nuclear fragmentation produced in  12C ion therapeutic beams contributes significantly to the Relative Biological Effectiveness (RBE)-weighted dose in the distal edge of the Spread out Bragg Peak (SOBP) and surrounding tissues in out-of-field. Complex mixed radiation field originated by the therapeutic  12C ion beam in a phantom is difficult to measure. This study presents a new method to characterise the radiation field produced in a  12C ion beam using a monolithic ÎE-E telescope which provides the capability to identify the particle components of the mixed radiation field as well as the microdosimetric spectra that allows derivation of the RBE based on a radiobiological model. The response of the monolithic ÎE-E telescope to a 290 MeV/u  12C ion beam at defined positions along the pristine Bragg Peak was studied using the Geant4 Monte Carlo toolkit. The microdosimetric spectra derived from the ÎE stage and the two-dimensional scatter plots of energy deposition in ÎE and E stages of the device in coincidence are presented, as calculated in-field and out-of-field. Partial dose weighted contribution to the microdosimetric spectra from nuclear fragments and recoils, such as  1H,  4He,  3He,  7Li,  9Be and  11B, have been analysed for each position. Comparison of simulation and experimental results are presented and demonstrates that the microdosimetric spectra changes dramatically within 0.5 mm depth increments close to and at the distal edge of the Bragg Peak which is impossible to identify using conventional Tissue Equivalent Proportional Counter (TEPC).
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Instrumentation
Authors
Linh T. Tran, David Bolst, Susanna Guatelli, Giordano Biasi, Alberto Fazzi, Eleni Sagia, Dale A. Prokopovich, Mark I. Reinhard, Ying C. Keat, Marco Petasecca, Michael L.F. Lerch, Andrea Pola, Stefano Agosteo, Naruhiro Matsufuji, Michael Jackson,