Literature DB >> 30824157

A new facility for proton radiobiology at the Trento proton therapy centre: Design and implementation.

Francesco Tommasino1, Marta Rovituso2, Eleonora Bortoli3, Chiara La Tessa3, Giada Petringa4, Stefano Lorentini5, Enrico Verroi2, Yuri Simeonov6, Ulrich Weber7, Pablo Cirrone8, Marco Schwarz9, Marco Durante7, Emanuele Scifoni2.   

Abstract

We present a new facility dedicated to radiobiology research, which has been implemented at the Trento Proton Therapy Centre (Italy). A dual-ring double scattering system was designed to produce irradiation fields of two sizes (i.e. 6 and 16 cm diameter) starting from a fix pencil beam at 148 MeV. The modulation in depth was obtained with a custom-made range modulator, optimized to generate a 2.5 cm spread-out Bragg peak (SOBP). The resulting irradiation field was characterized in terms of lateral and depth-dose profiles. The beam characteristics and the geometry of the setup were implemented in the Geant4 Monte Carlo (MC) code. After benchmark against experimental data, the MC was used to characterize the distribution of dose-average linear energy transfer (LET) associated to the irradiation field. The results indicate that dose uniformity above 92.9% is obtained at the entrance channel as well as in the middle SOBP in the target regions for both irradiation fields. Dose rate in the range from 0.38 to 0.78 Gy/min was measured, which can be adjusted by proper selection of cyclotron output current, and eventually increased by about a factor 7. MC simulations were able to reproduce experimental data with good agreement. The characteristics of the facility are in line with the requirements of most radiobiology experiments. Importantly, the facility is also open to external users, after successful evaluation of beam proposals by the Program Advisory Committee.
Copyright © 2019 Associazione Italiana di Fisica Medica. Published by Elsevier Ltd. All rights reserved.

Keywords:  Irradiation facility; Passive scattering; Proton beam; Radiobiology

Mesh:

Year:  2019        PMID: 30824157     DOI: 10.1016/j.ejmp.2019.02.001

Source DB:  PubMed          Journal:  Phys Med        ISSN: 1120-1797            Impact factor:   2.685


  2 in total

1.  Simulation of dose distribution and secondary particle production in proton therapy of brain tumor.

Authors:  Zahra Hashemi; Mansoureh Tatari; Haladhara Naik
Journal:  Rep Pract Oncol Radiother       Date:  2020-10-03

2.  Technical note: Vendor-agnostic water phantom for 3D dosimetry of complex fields in particle therapy.

Authors:  Christoph Schuy; Yuri Simeonov; Marco Durante; Klemens Zink; Uli Weber
Journal:  J Appl Clin Med Phys       Date:  2020-09-29       Impact factor: 2.102

  2 in total

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