Monte Carlo simulation of initial and volume ion recombination correction factor in plane parallel ionization chambers exposed to ion beams

被引:1
|
作者
Orts, Marina [1 ]
Rossomme, Severine [2 ]
Souris, Kevin [2 ]
Sterpin, Edmond [1 ,3 ,4 ]
机构
[1] UCLouvain, Inst Rech Experimentale & Clin, Mol Imaging Radiotherapy & Oncol MIRO, Brussels, Belgium
[2] Ion Beams Applicat SA, Dosimetry Business Unit, Louvain La Neuve, Belgium
[3] Katholieke Univ Leuven, Dept Oncol, Lab Expt Radiotherapy, Leuven, Belgium
[4] Particle Therapy Interuniv Ctr Leuven Particle, Leuven, Belgium
来源
PHYSICS IN MEDICINE AND BIOLOGY | 2024年 / 69卷 / 16期
关键词
ion recombination correction factor; ionization chamber; Monte Carlo simulation; COLLECTION; DOSIMETRY;
D O I
10.1088/1361-6560/ad6730
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Objective. Accurate reference dosimetry with ionization chambers (ICs) relies on correcting for various influencing factors, including ion recombination. Theoretical frameworks, such as the Boag and Jaffe theories, are conventionally used to describe the ion recombination correction factors. Experimental methods are time consuming, the applicability may be limited and, in some cases, impractical to be used in clinical routine. The development of simulation tools becomes necessary to enhance the understanding of recombination under circumstances that may differ from conventional use. Before progressing, it is crucial to benchmark novel approaches to calculate ion recombination losses under known conditions. In this study, we introduce and validate a versatile simulation tool based on a Monte Carlo scheme for calculating initial and volume ion recombination correction factors in air-filled ICs exposed to ion beams with clinical dose rates. Approach. The simulation includes gaussian distribution of ion positions to model the distribution of charge carriers along the chamber volume. It accounts for various physical transport effects, including drift, diffusion, space charge screening and free electron fraction. To compute ion recombination, a Monte Carlo scheme is used due to its versatility in multiple geometries, without exhibiting convergence problems associated with numerically solved procedures. Main results. The code is validated in conventional dose rates against Jaffe's theory for initial recombination and Boag's theory for volume recombination based on parameters derived from experimental data including proton, helium and carbon ion beams measured with a plane parallel IC. Significance. The simulation demonstrates excellent agreement, typically 0.05% or less relative difference with the theoretical and experimental data. The current code successfully predicts ion recombination correction factors, in a large variety of ion beams, including different temporal beam structures.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] Ion recombination and polarity correction factors for a plane-parallel ionization chamber in a proton scanning beam
    Liszka, Malgorzata
    Stolarczyk, Liliana
    Klodowska, Magdalena
    Kozera, Anna
    Krzempek, Dawid
    Mojzeszek, Natalia
    Pezdracka, Anna
    Waligorski, Michael Patrick Russell
    Olko, Pawel
    MEDICAL PHYSICS, 2018, 45 (01) : 391 - 401
  • [32] Electron beam quality correction factors for plane-parallel ionization chambers: Monte Carlo calculations using the PENELOPE system
    Sempau, J
    Andreo, P
    Aldana, J
    Mazurier, J
    Salvat, F
    PHYSICS IN MEDICINE AND BIOLOGY, 2004, 49 (18): : 4427 - 4444
  • [33] Determination of the ion recombination correction factor for intraoperative electron beams
    Besheli, Majid Ghorbanpour
    Simiantonakis, Ioannis
    Zink, Klemens
    Budach, Wilfried
    ZEITSCHRIFT FUR MEDIZINISCHE PHYSIK, 2016, 26 (01): : 35 - 44
  • [34] Assessment of ion recombination correction and polarity effects for specific ionization chambers in flattening-filter-free photon beams
    Martin-Martin, Guadalupe
    Borja Aguilar, Pedro
    Barbes, Benigno
    Guibelalde, Eduardo
    PHYSICA MEDICA-EUROPEAN JOURNAL OF MEDICAL PHYSICS, 2019, 67 : 176 - 184
  • [35] MONTE-CARLO SIMULATION OF ION-ION RECOMBINATION IN METHANE AND SULFUR-HEXAFLUORIDE
    LITTLEWOOD, IM
    PYLE, RE
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 1990, 23 (03) : 312 - 315
  • [36] RECOMBINATION IN IONIZATION CHAMBERS IRRADIATED WITH PULSED ELECTRON BEAMS .I. PLANE PARALLEL PLATE CHAMBER
    ELLIS, RE
    READ, LR
    PHYSICS IN MEDICINE AND BIOLOGY, 1969, 14 (02): : 293 - &
  • [37] On the Perturbation Factor P_cav of the Markus Parallel Plate Ion Chambers in Clinical Electron Beams, Monte Carlo Based Reintegration of An Historical Experiment
    von Voigts-Rhetz, P.
    Zink, K.
    MEDICAL PHYSICS, 2014, 41 (06) : 329 - +
  • [38] Polarity and ion recombination correction factors for ionization chambers employed in electron beam dosimetry
    Nisbet, A
    Thwaites, DI
    PHYSICS IN MEDICINE AND BIOLOGY, 1998, 43 (02): : 435 - 443
  • [39] ION RECOMBINATION CORRECTIONS FOR PLANE-PARALLEL AND THIMBLE CHAMBERS IN ELECTRON AND PHOTON RADIATION
    HAVERCROFT, JM
    KLEVENHAGEN, SC
    PHYSICS IN MEDICINE AND BIOLOGY, 1993, 38 (01): : 25 - 38
  • [40] Monte Carlo calculation of beam quality correction factors for PTW cylindrical ionization chambers in photon beams
    Gimenez-Alventosa, Vicent
    Gimenez, Vicente
    Ballester, Facundo
    Vijande, Javier
    Andreo, Pedro
    PHYSICS IN MEDICINE AND BIOLOGY, 2020, 65 (20):