Literature DB >> 29747928

Monte Carlo simulation tool for online treatment monitoring in hadrontherapy with in-beam PET: A patient study.

E Fiorina1, V Ferrero2, F Pennazio3, G Baroni4, G Battistoni5, N Belcari6, P Cerello3, N Camarlinghi6, M Ciocca7, A Del Guerra6, M Donetti7, A Ferrari8, S Giordanengo3, G Giraudo3, A Mairani7, M Morrocchi6, C Peroni2, A Rivetti3, M D Da Rocha Rolo3, S Rossi7, V Rosso6, P Sala5, G Sportelli6, S Tampellini7, F Valvo7, R Wheadon3, M G Bisogni6.   

Abstract

Hadrontherapy is a method for treating cancer with very targeted dose distributions and enhanced radiobiological effects. To fully exploit these advantages, in vivo range monitoring systems are required. These devices measure, preferably during the treatment, the secondary radiation generated by the beam-tissue interactions. However, since correlation of the secondary radiation distribution with the dose is not straightforward, Monte Carlo (MC) simulations are very important for treatment quality assessment. The INSIDE project constructed an in-beam PET scanner to detect signals generated by the positron-emitting isotopes resulting from projectile-target fragmentation. In addition, a FLUKA-based simulation tool was developed to predict the corresponding reference PET images using a detailed scanner model. The INSIDE in-beam PET was used to monitor two consecutive proton treatment sessions on a patient at the Italian Center for Oncological Hadrontherapy (CNAO). The reconstructed PET images were updated every 10 s providing a near real-time quality assessment. By half-way through the treatment, the statistics of the measured PET images were already significant enough to be compared with the simulations with average differences in the activity range less than 2.5 mm along the beam direction. Without taking into account any preferential direction, differences within 1 mm were found. In this paper, the INSIDE MC simulation tool is described and the results of the first in vivo agreement evaluation are reported. These results have justified a clinical trial, in which the MC simulation tool will be used on a daily basis to study the compliance tolerances between the measured and simulated PET images.
Copyright © 2018 Associazione Italiana di Fisica Medica. Published by Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Hadrontherapy; In-beam PET; Monte Carlo simulation; Range monitoring

Mesh:

Year:  2018        PMID: 29747928     DOI: 10.1016/j.ejmp.2018.05.002

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


  6 in total

Review 1.  Online daily adaptive proton therapy.

Authors:  Francesca Albertini; Michael Matter; Lena Nenoff; Ye Zhang; Antony Lomax
Journal:  Br J Radiol       Date:  2019-11-11       Impact factor: 3.039

2.  Novel On-line PET Imaging for Intra-Beam Range Verification and Delivery Optimization: A Simulation Feasibility Study.

Authors:  Yuncheng Zhong; Weiguo Lu; Mingli Chen; Zhenyu Xiong; Xinyi Cheng; Kun Hu; Yiping Shao
Journal:  IEEE Trans Radiat Plasma Med Sci       Date:  2019-10-30

3.  Technical Design Report for a Carbon-11 Treatment Facility.

Authors:  Liviu Penescu; Thierry Stora; Simon Stegemann; Johanna Pitters; Elisa Fiorina; Ricardo Dos Santos Augusto; Claus Schmitzer; Fredrik Wenander; Katia Parodi; Alfredo Ferrari; Thomas E Cocolios
Journal:  Front Med (Lausanne)       Date:  2022-04-25

4.  Localization of anatomical changes in patients during proton therapy with in-beam PET monitoring: A voxel-based morphometry approach exploiting Monte Carlo simulations.

Authors:  Aafke Christine Kraan; Andrea Berti; Alessandra Retico; Guido Baroni; Giuseppe Battistoni; Nicola Belcari; Piergiorgio Cerello; Mario Ciocca; Micol De Simoni; Damiano Del Sarto; Marco Donetti; Yunsheng Dong; Alessia Embriaco; Veronica Ferrero; Elisa Fiorina; Marta Fischetti; Gaia Franciosini; Giuseppe Giraudo; Francesco Laruina; Davide Maestri; Marco Magi; Giuseppe Magro; Carlo Mancini Terracciano; Michela Marafini; Ilaria Mattei; Enrico Mazzoni; Paolo Mereu; Riccardo Mirabelli; Alfredo Mirandola; Matteo Morrocchi; Silvia Muraro; Alessandra Patera; Vincenzo Patera; Francesco Pennazio; Angelo Rivetti; Manuel Dionisio Da Rocha Rolo; Valeria Rosso; Alessio Sarti; Angelo Schiavi; Adalberto Sciubba; Elena Solfaroli Camillocci; Giancarlo Sportelli; Sara Tampellini; Marco Toppi; Giacomo Traini; Serena Marta Valle; Francesca Valvo; Barbara Vischioni; Viviana Vitolo; Richard Wheadon; Maria Giuseppina Bisogni
Journal:  Med Phys       Date:  2021-12-22       Impact factor: 4.506

Review 5.  Roadmap: proton therapy physics and biology.

Authors:  Harald Paganetti; Chris Beltran; Stefan Both; Lei Dong; Jacob Flanz; Keith Furutani; Clemens Grassberger; David R Grosshans; Antje-Christin Knopf; Johannes A Langendijk; Hakan Nystrom; Katia Parodi; Bas W Raaymakers; Christian Richter; Gabriel O Sawakuchi; Marco Schippers; Simona F Shaitelman; B K Kevin Teo; Jan Unkelbach; Patrick Wohlfahrt; Tony Lomax
Journal:  Phys Med Biol       Date:  2021-02-26       Impact factor: 4.174

6.  Inter-fractional monitoring of [Formula: see text]C ions treatments: results from a clinical trial at the CNAO facility.

Authors:  M Fischetti; G Baroni; G Battistoni; G Bisogni; P Cerello; M Ciocca; P De Maria; M De Simoni; B Di Lullo; M Donetti; Y Dong; A Embriaco; V Ferrero; E Fiorina; G Franciosini; F Galante; A Kraan; C Luongo; M Magi; C Mancini-Terracciano; M Marafini; E Malekzadeh; I Mattei; E Mazzoni; R Mirabelli; A Mirandola; M Morrocchi; S Muraro; V Patera; F Pennazio; A Schiavi; A Sciubba; E Solfaroli Camillocci; G Sportelli; S Tampellini; M Toppi; G Traini; S M Valle; B Vischioni; V Vitolo; A Sarti
Journal:  Sci Rep       Date:  2020-11-26       Impact factor: 4.379

  6 in total

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