Establishing the function relationship between time spectrum and proton range in proton therapy through Monte Carlo simulation

被引:0
|
作者
He, Yibo [1 ,2 ]
Tong, Xin [1 ]
Li, Yuhan [1 ]
Cheng, Jingyi [3 ]
Zhou, Rong [1 ,2 ]
机构
[1] Sichuan Univ, Coll Phys, Chengdu, Peoples R China
[2] Sichuan Univ, MOE Key Lab Radiat Phys & Technol, Chengdu, Peoples R China
[3] Fudan Univ, Canc Hosp, Shanghai Proton & Heavy Ion Ctr, Dept Nucl Med, Shanghai, Peoples R China
基金
上海市自然科学基金; 国家重点研发计划;
关键词
proton therapy; range verification; prompt gamma-ray timing; Monte Carlo simulation; time of flight; VERIFICATION;
D O I
10.3389/fphy.2024.1295683
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
To validate range shifts in proton therapy, we investigated the potential of using the temporal information of prompt gamma rays as an indicator. We simulated the proton transport process using Monte Carlo simulations and used a geometric scorer to obtain the location and timing of prompt gamma ray production. By using a homogeneous target material in the simulation model, we established a fitted relationship between the range of 90-210 MeV protons and the corresponding temporal spectral width. Additionally, by introducing air cavities of 2-20 mm in simulations of inhomogeneous target materials, we observed significant correlations between the range offsets and the temporal spectral widths. These correlations were fitted to derive a functional relationship between the two variables.
引用
收藏
页数:8
相关论文
共 50 条
  • [31] Monte Carlo simulation of polymer phantoms in proton therapy for eye tumor treatment
    Aslar, Engin
    Ekinci, Fatih
    EUROPEAN PHYSICAL JOURNAL PLUS, 2025, 140 (01):
  • [32] Monte Carlo simulation of a therapeutical proton beam line
    Russo, S
    Bucciolini, M
    Compagnucci, A
    Mazal, A
    Nauraye, C
    Rosenwald, JC
    PHYSICA MEDICA-EUROPEAN JOURNAL OF MEDICAL PHYSICS, 1998, 14 (02): : 63 - 71
  • [33] A generic algorithm for Monte Carlo simulation of proton transport
    Salvat, Francesc
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 2013, 316 : 144 - 159
  • [34] GPU accelerated Monte Carlo activation calculations for PET range verification in proton therapy
    McNamara, K.
    Schiavi, A.
    Brzezinski, K.
    Borys, D.
    Gajewski, J.
    Rucinski, A.
    Makkar, S.
    Hrbacek, J.
    Weber, D. C.
    Lomax, A.
    Winterhalter, C.
    RADIOTHERAPY AND ONCOLOGY, 2022, 170 : S1385 - S1386
  • [35] 3D Range Modulator for Proton Therapy: Development and Monte Carlo Simulations
    Simeonov, Y.
    Penchev, P.
    Printz, Ringbk T.
    Engenhart-Cabillic, R.
    Weber, U.
    Zink, K.
    STRAHLENTHERAPIE UND ONKOLOGIE, 2017, 193 : S10 - S10
  • [36] Real-time hybrid Monte Carlo for dose calculation in proton therapy
    Ibanez, P.
    Valladolid, V.
    Villa-Abaunza, A.
    Espinosa, A.
    Arias, F.
    Galve, P.
    Sanchez-Parcerisa, D.
    Udias, J. M.
    RADIOTHERAPY AND ONCOLOGY, 2022, 170 : S1532 - S1533
  • [37] Fast Monte Carlo dose calculation in proton therapy
    Holmes, Jason
    Feng, Hongying
    Zhang, Lian
    Fix, Michael K.
    Jiang, Steve B.
    Liu, Wei
    PHYSICS IN MEDICINE AND BIOLOGY, 2024, 69 (17):
  • [38] Application of Monte Carlo to proton beam radiation therapy
    Siebers, JV
    ADVANCED MONTE CARLO FOR RADIATION PHYSICS, PARTICLE TRANSPORT SIMULATION AND APPLICATIONS, 2001, : 1051 - 1056
  • [39] Proton therapy analysis using the Monte Carlo method
    Noshad, H
    Givechi, N
    RADIATION MEASUREMENTS, 2005, 39 (05) : 521 - 524
  • [40] Automation of Monte Carlo simulations for a proton therapy system
    Zheng, Y.
    Newhauser, W.
    Fontenot, J.
    Koch, N.
    MEDICAL PHYSICS, 2006, 33 (06) : 2073 - 2074