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THE FOOT EXPERIMENT: FRAGMENTATION MEASUREMENTS IN PARTICLE THERAPY

Authors :
E. Bellinzona
Nadia Pastrone
Alessandro Pastore
E. López Torres
M. Selvi
L. Alunni Solestizi
Pisana Placidi
E. Iarocci
F. Ferroni
Silvia Muraro
C. La Tessa
M. C. Morone
E. Spiriti
M. Ionica
P. Cerello
Y. Dong
R. Arteche Diaz
A. Zoccoli
A. Secher
Giuliana Galati
V. Lante
Elisa Fiorina
Christoph Schuy
M. De Simoni
M. Vanstalle
Luciano Ramello
K. Kanxheri
Stefano Argiro
S. M. Valle
M. Donetti
M. Garbini
A. C. Kraan
R. Ridolfi
Alberto Mengarelli
Marco Durante
N. Bartosik
A. Moggi
Valeria Rosso
M. Emde
Giacomo Traini
Angelo Schiavi
F. Raffaeli
Niccolò Camarlinghi
M. Pullia
M. Francesconi
G. De Lellis
L. Scavarda
M. Franchini
Mario Sitta
M. Villa
E. Fiandrini
M. Rovituso
Ilaria Mattei
R. Faccini
Alberto Clozza
S. Savazzi
Gabriella Sartorelli
Graziano Bruni
Matteo Morrocchi
Esther Ciarrocchi
Vincenzo Patera
A. Di Crescenzo
A. Sciubba
A. Del Guerra
G. Ambrosi
Valeri Tioukov
M. Fischetti
Veronica Ferrero
E. Scifoni
Francesco Pennazio
Livio Narici
Osamu Sato
Alessio Sarti
Adele Lauria
Francesco Tommasino
S. Colombi
Giancarlo Sportelli
M. G. Bisogni
A. Stahl
V. Gentile
S. Bianucci
R. Mirabelli
Leonello Servoli
U. Weber
Luca Galli
R. Spighi
Nicola Belcari
M. Marafini
A. Embriaco
C. Sanelli
S. Tommasini
C. Finck
Maria Cristina Montesi
P. Carra
G. Silvestre
A. Alexandrov
R. Hetzel
Silvia Biondi
Giuseppe Battistoni
Giuseppe Giraudo
A. Alexandrov, L. Alunni Solestizi, G. Ambrosi, S. Argirò, R. Arteche Diaz, N. Bartosik, G. Battistoni, N. Belcari, E. Bellinzona, S. Bianucci, S. Biondi, M. G. Bisogni, G. Bruni, N. Camarlinghi, P. Carra, P. Cerello, E. Ciarrocchi, A. Clozza, S. Colombi, G. De Lellis, A. Del Guerra, M. De Simoni, A. Di Crescenzo, M. Donetti, Y. Dong, M. Durante, A. Embriaco, M. Emde, R. Faccini, V. Ferrero, F. Ferroni, E. Fiandrini, C. Finck, E. Fiorina, M. Fischetti, M. Francesconi, M. Franchini, G. Galati, L. Galli, M. Garbini, V. Gentile, G. Giraudo, R. Hetzel, E. Iarocci, M. Ionica, K. Kanxheri, A. C. Kraan, V. Lante, A. Lauria, C. La Tessa, E. Lopez Torres, M. Marafini, I. Mattei, A. Mengarelli, R. Mirabelli, A. Moggi, M. C. Montesi, M. C. Morone, M. Morrocchi, S. Muraro, L. Narici, A. Pastore, N. Pastrone, V. Patera, F. Pennazio, P. Placidi, M. Pullia, F. Raffaeli, L. Ramello, R. Ridolfi, V. Rosso, M. Rovituso, C. Sanelli, A. Sarti, G. Sartorelli, O. Sato, S. Savazzi, L. Scavarda, A. Schiavi, C. Schuy, E. Scifoni, A. Sciubba, A. Sécher, M. Selvi, L. Servoli, G. Silvestre, M. Sitta, R. Spighi, E. Spiriti, G. Sportelli, A. Stahl, V. Tioukov, S. Tommasini, F. Tommasino, G. Traini, S. M. Valle, M. Vanstalle, M. Villa, U. Webe, A. Zoccoli
Alexandrov, A.
Alunni Solestizi, L.
Ambrosi, G.
Argirò, S.
Arteche Diaz, R.
Bartosik, N.
Battistoni, G.
Belcari, N.
Bellinzona, E.
Bianucci, S.
Biondi, S.
Bisogni, M. G.
Bruni, G.
Camarlinghi, N.
Carra, P.
Cerello, P.
Ciarrocchi, E.
Clozza, A.
Colombi, S.
De Lellis, G.
Del Guerra, A.
De Simoni, M.
Di Crescenzo, A.
Donetti, M.
Dong, Y.
Durante, M.
Embriaco, A.
Emde, M.
Faccini, R.
Ferrero, V.
Ferroni, F.
Fiandrini, E.
Finck, C.
Fiorina, E.
Fischetti, M.
Francesconi, M.
Franchini, M.
Galati, G.
Galli, L.
Garbini, M.
Gentile, V.
Giraudo, G.
Hetzel, R.
Iarocci, E.
Ionica, M.
Kanxheri, K.
Kraan, A. C.
Lante, V.
Lauria, A.
La Tessa, C.
Lopez Torres, E.
Marafini, M.
Mattei, I.
Mengarelli, A.
Mirabelli, R.
Moggi, A.
Montesi, M. C.
Morone, M. C.
Morrocchi, M.
Muraro, S.
Narici, L.
Pastore, A.
Pastrone, N.
Patera, V.
Pennazio, F.
Placidi, P.
Pullia, M.
Raffaeli, F.
Ramello, L.
Ridolfi, R.
Rosso, V.
Rovituso, M.
Sanelli, C.
Sarti, A.
Sartorelli, G.
Sato, O.
Savazzi, S.
Scavarda, L.
Schiavi, A.
Schuy, C.
Scifoni, E.
Sciubba, A.
Sécher, A.
Selvi, M.
Servoli, L.
Silvestre, G.
Sitta, M.
Spighi, R.
Spiriti, E.
Sportelli, G.
Stahl, A.
Tioukov, V.
Tommasini, S.
Tommasino, F.
Traini, G.
Valle, S. M.
Vanstalle, M.
Villa, M.
Weber, U.
Zoccoli, A.
Publication Year :
2019

Abstract

Charged Particle Therapy (CPT) is a powerful radiotherapy technique for the treatment of deep-seated tumours characterized by a large dose released in the Bragg peak area (corresponding to the tumour region) and a small dose delivered to the surrounding healthy tissues. The precise measurement of the fragments produced in the nuclear interactions of charged particle beams with patient tissues is a crucial task to improve the clinical treatment plans. The FOOT (FragmentatiOn Of Target) experiment is an international project, funded by the Istituto Nazionale di Fisica Nucleare (INFN), aimed to study the dose released by the tissues and particle beams fragmentation. The target (16O, 12C) fragmentation induced by 150-400 MeV/n proton beams will be studied via the inverse kinematic approach, where 16O and 12C therapeutic beams collide on graphite and hydrocarbon target to provide the cross section on Hydrogen. A table-top detector is being developed and it includes a drift chamber as a beam monitor upstream of the target to measure the beam direction, a magnetic spectrometer based on silicon pixel and strip detectors, a scintillating crystal calorimeter able to stop the heavier produced fragments, and a ΔE detector, with TOF capability, for the particle identification. A setup based on the concept of the “Emulsion Cloud Chamber”, coupled with the interaction region of the electronic FOOT setup, will complement the physics program by measuring lighter charged fragments to extend the angular acceptance up to about 70 degrees. In this work, the experimental design and the requirements of the FOOT experiment will be discussed and preliminary results on the emulsion spectrometer tests will be presented.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....cd44c616b20de0d41bf1cf85e859ebfe