Proton-therapy exploits the advantageous depth-dose profile of protons to induce the highest damage to tumoral cells in the last millimetres of their range in sharp Bragg Peak. To cover the whole tumoral volume, beams of different energies are combined to create the Spread Out Bragg Peak (SOBP). In passive modulated beams, the energy spread is created with modulators in which the highest energy beam is degraded through different thicknesses of calibrated plastic materials. The highest energy is chosen depending on the deepest point that needs to be treated. This study aims to investigate differences in the radiation quality in the distal edge of SOBP beams with different initial energy and modulation techniques based on microdosimetric measurements with mini Tissue-Equivalent Proportional Counters. The beams investigated are the 62 MeV proton SOBP of the clinical facility of CATANA and the 148 MeV proton SOBP of the research beam line of the proton-therapy centre of Trento.

Microdosimetric analysis of the radiation quality of two different proton beams in the distal edge of the depth-dose profile / Bianchi, A.; Selva, A.; Rossignoli, M.; Pasquato, F.; Missiaggia, M.; La Tessa, C.; Scifoni, E.; Tommasino, F.; Conte, V.. - In: RADIATION PROTECTION DOSIMETRY. - ISSN 0144-8420. - 199:15-16(2023), pp. 1979-1983. [10.1093/rpd/ncac236]

Microdosimetric analysis of the radiation quality of two different proton beams in the distal edge of the depth-dose profile

Missiaggia M.;La Tessa C.;Scifoni E.;Tommasino F.;
2023-01-01

Abstract

Proton-therapy exploits the advantageous depth-dose profile of protons to induce the highest damage to tumoral cells in the last millimetres of their range in sharp Bragg Peak. To cover the whole tumoral volume, beams of different energies are combined to create the Spread Out Bragg Peak (SOBP). In passive modulated beams, the energy spread is created with modulators in which the highest energy beam is degraded through different thicknesses of calibrated plastic materials. The highest energy is chosen depending on the deepest point that needs to be treated. This study aims to investigate differences in the radiation quality in the distal edge of SOBP beams with different initial energy and modulation techniques based on microdosimetric measurements with mini Tissue-Equivalent Proportional Counters. The beams investigated are the 62 MeV proton SOBP of the clinical facility of CATANA and the 148 MeV proton SOBP of the research beam line of the proton-therapy centre of Trento.
2023
15-16
Bianchi, A.; Selva, A.; Rossignoli, M.; Pasquato, F.; Missiaggia, M.; La Tessa, C.; Scifoni, E.; Tommasino, F.; Conte, V.
Microdosimetric analysis of the radiation quality of two different proton beams in the distal edge of the depth-dose profile / Bianchi, A.; Selva, A.; Rossignoli, M.; Pasquato, F.; Missiaggia, M.; La Tessa, C.; Scifoni, E.; Tommasino, F.; Conte, V.. - In: RADIATION PROTECTION DOSIMETRY. - ISSN 0144-8420. - 199:15-16(2023), pp. 1979-1983. [10.1093/rpd/ncac236]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/408061
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