Monte Carlo studies of a proton computed tomography system

被引:19
作者
Cirrone, G. A. Pablo [1 ]
Cuttone, Giacomo
Candiano, Giuliana
Di Rosa, Francesco
Lo Nigro, Salvatore
Lo Presti, Domenico
Randazzo, Nunzio
Sipala, Valeria
Bruzzi, Mara
Menichelli, David
Scaringella, Monica
Bashkirov, Vladimir
Williams, R. David
Sadrozinski, Hartmut F. -W.
Heimann, Jason
Feldt, Jason
Blumenkrantz, Nate
Talamonti, C.
Schulte, Reinhard
机构
[1] Ist Nazl Fis Nucl, Lab Nazl Sud, I-95100 Catania, Italy
[2] Univ Catania, Dept Phys, I-95123 Catania, Italy
[3] Ist Nazl Fis Nucl, I-95123 Catania, Italy
[4] Univ Catania, Dept Phys, I-95123 Catania, Italy
[5] Univ Florence, Dept Energet, I-50139 Florence, Italy
[6] Loma Linda Univ, Med Ctr, Dept Radiat Med, Loma Linda, CA 92354 USA
[7] Univ Calif Santa Cruz, SCIPP, Santa Cruz, CA 95064 USA
[8] Careggi Hosp, Radiotherapy Unit, I-50139 Florence, Italy
关键词
computed tomography; GEANT4; Monte Carlo; proton;
D O I
10.1109/TNS.2007.906988
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Proton therapy is a precise forms of radiation therapy that makes use of high energy proton compared to the conventional, more commonly used and less precise x-ray and electron beams. On the other hand, to fully exploit the proton therapy advantages, very accurate quality controls of the treatments are required. These are mainly related to the dose calculations and treatment planning. Actually dose calculations are routinely performed on the basis of X-Ray computed tomography while a big improvement could be obtained with the direct use of protons as the imaging system. In this work we report the results of Monte Carlo simulations for the study of an imaging system based on the use of high energy protons: the proton Computed-Tomography (pCT). The main limitation of the pCT and the current adopted technical solutions, based on the use of the Most Likely Path (MLP) approximation are illustrated. Simulation results are compared with experimental data obtained with a first prototype of pCT system tested with 200 MeV proton beams available at the Loma Linda University Medical Center (LLUMC) (CA).
引用
收藏
页码:1487 / 1491
页数:5
相关论文
共 9 条
[1]   Geant4 developments and applications [J].
Allison, J ;
Amako, K ;
Apostolakis, J ;
Araujo, H ;
Dubois, PA ;
Asai, M ;
Barrand, G ;
Capra, R ;
Chauvie, S ;
Chytracek, R ;
Cirrone, GAP ;
Cooperman, G ;
Cosmo, G ;
Cuttone, G ;
Daquino, GG ;
Donszelmann, M ;
Dressel, M ;
Folger, G ;
Foppiano, F ;
Generowicz, J ;
Grichine, V ;
Guatelli, S ;
Gumplinger, P ;
Heikkinen, A ;
Hrivnacova, I ;
Howard, A ;
Incerti, S ;
Ivanchenko, V ;
Johnson, T ;
Jones, F ;
Koi, T ;
Kokoulin, R ;
Kossov, M ;
Kurashige, H ;
Lara, V ;
Larsson, S ;
Lei, F ;
Link, O ;
Longo, F ;
Maire, M ;
Mantero, A ;
Mascialino, B ;
McLaren, I ;
Lorenzo, PM ;
Minamimoto, K ;
Murakami, K ;
Nieminen, P ;
Pandola, L ;
Parlati, S ;
Peralta, L .
IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2006, 53 (01) :270-278
[2]   Comparison of Geant4 electromagnetic physics models against the NIST reference data [J].
Amako, K ;
Guatelli, S ;
Ivanchenko, VN ;
Maire, M ;
Mascialino, B ;
Murakami, K ;
Nieminen, P ;
Pandola, L ;
Parlati, S ;
Pia, MG ;
Piergentili, M ;
Sasaki, T ;
Urban, L .
IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2005, 52 (04) :910-918
[3]   Beam test of gamma-ray large area space telescope components [J].
Atwood, WB ;
Ritz, S ;
Anthony, P ;
Bloom, ED ;
Bosted, PE ;
Bourotte, J ;
Chaput, C ;
Chen, X ;
Chenette, DL ;
Engovatov, D ;
Erickson, R ;
Fieguth, T ;
Fleury, P ;
Gearhart, R ;
Godfrey, G ;
Grove, JE ;
Hernando, JA ;
Hirayama, M ;
Jaggar, S ;
Johnson, RP ;
Johnson, WN ;
Jones, BB ;
Kröger, W ;
Lin, YC ;
Meetre, C ;
Michelson, PF ;
Milne, PA ;
Moiseev, A ;
Nolan, P ;
Norris, JP ;
Oreglia, M ;
Ormes, JF ;
Phlips, BF ;
Pocar, A ;
Sadrozinski, HFW ;
Szalata, Z ;
Thompson, DJ ;
Tompkins, WF .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2000, 446 (03) :444-460
[4]   The GEANT4 toolkit capability in the hadron therapy field: simulation of a transport beam line [J].
Cirrone, GAP ;
Cuttone, G ;
Di Rosa, F ;
Raffaele, L ;
Russo, G ;
Guatelli, S ;
Pia, MG .
NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 2006, 150 :54-57
[5]   Implementation of a new Monte Carlo - GEANT4 simulation tool for the development of a proton therapy beam line and verification of the related dose distributions [J].
Cirrone, GAP ;
Cuttone, G ;
Guatelli, S ;
Lo Nigro, S ;
Mascialino, B ;
Pia, MG ;
Raffaele, L ;
Russo, G ;
Sabini, MG .
IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2005, 52 (01) :262-265
[6]   Reconstruction for proton computed tomography by tracing proton trajectories: A Monte Carlo study [J].
Li, TF ;
Liang, ZR ;
Singanallur, JV ;
Satogata, TJ ;
Williams, DC ;
Schulte, RW .
MEDICAL PHYSICS, 2006, 33 (03) :699-706
[7]   PROTON RADIOGRAPHY AS A TOOL FOR QUALITY-CONTROL IN PROTON THERAPY [J].
SCHNEIDER, U ;
PEDRONI, E .
MEDICAL PHYSICS, 1995, 22 (04) :353-363
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[9]  
[No title captured]