PET monitoring of cancer therapy with He-3 and C-12 beams: a study with the GEANT4 toolkit
arXiv:0708.1691 · doi:10.1088/0031-9155/52/24/007
Abstract
We study the spatial distributions of -activity produced by therapeutic beams of He and C ions in various tissue-like materials. The calculations were performed within a Monte Carlo model for Heavy-Ion Therapy (MCHIT) based on the GEANT4 toolkit. The contributions from C, N, O, F and P positron-emitting nuclei were calculated and compared with experimental data obtained during and after irradiation. Positron emitting nuclei are created by C beam in fragmentation reactions of projectile and target nuclei. This leads to a -activity profile characterised by a noticeable peak located close to the Bragg peak in the corresponding depth-dose distribution. On the contrary, as the most of positron-emitting nuclei are produced by He beam in target fragmentation reactions, the calculated total -activity during or soon after the irradiation period is evenly distributed within the projectile range. However, we predict also the presence of N, O, F created in charge-transfer reactions by low-energy He ions close to the end of their range in several tissue-like media. The time evolution of -activity profiles was investigated for both kinds of beams. Due to the production of F nuclide the -activity profile measured 2 or 3 hours after irradiation with He ions will have a distinct peak correlated with the maximum of depth-dose distribution. We found certain advantages of low-energy He beams over low-energy proton beams for reliable PET monitoring during particle therapy of shallow located tumours. In this case the distal edge of -activity distribution from F nuclei clearly marks the range of He in tissues.
References in corpus (2)
Cited by in corpus (6)
- Universality of the Diffusion Wake from Stopped and Punch-Through Jets in Heavy-Ion Collisions
- Ion-induced electron production in tissue-like media and DNA damage mechanisms
- Nuclear fragmentation reactions in extended media studied with Geant4 toolkit
- Comparative study of depth-dose distributions for beams of light and heavy nuclei in tissue-like media
- Microdosimetry spectra and RBE of H-1, He-4, Li-7 and C-12 nuclei in water studied with Geant4
- Microdosimetry of radiation field from therapeutic C-12 beam in water: a study with Geant4 toolkit