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质子扫描束在儿科人体模型内产生的野外剂量及其与不同光子模态的比较。

Out-of-Field Doses Produced by a Proton Scanning Beam Inside Pediatric Anthropomorphic Phantoms and Their Comparison With Different Photon Modalities.

作者信息

Knežević Željka, Stolarczyk Liliana, Ambrožová Iva, Caballero-Pacheco Miguel Á, Davídková Marie, De Saint-Hubert Marijke, Domingo Carles, Jeleń Kinga, Kopeć Renata, Krzempek Dawid, Majer Marija, Miljanić Saveta, Mojżeszek Natalia, Romero-Expósito Maite, Martínez-Rovira Immaculada, Harrison Roger M, Olko Paweł

机构信息

Ruđer Bošković Institute, Zagreb, Croatia.

Danish Centre for Particle Therapy, Aarhus, Denmark.

出版信息

Front Oncol. 2022 Jul 22;12:904563. doi: 10.3389/fonc.2022.904563. eCollection 2022.

Abstract

Since 2010, EURADOS Working Group 9 (Radiation Dosimetry in Radiotherapy) has been involved in the investigation of secondary and scattered radiation doses in X-ray and proton therapy, especially in the case of pediatric patients. The main goal of this paper is to analyze and compare out-of-field neutron and non-neutron organ doses inside 5- and 10-year-old pediatric anthropomorphic phantoms for the treatment of a 5-cm-diameter brain tumor. Proton irradiations were carried out at the Cyclotron Centre Bronowice in IFJ PAN Krakow Poland using a pencil beam scanning technique (PBS) at a gantry with a dedicated scanning nozzle (IBA Proton Therapy System, Proteus 235). Thermoluminescent and radiophotoluminescent dosimeters were used for non-neutron dose measurements while secondary neutrons were measured with track-etched detectors. Out-of-field doses measured using intensity-modulated proton therapy (IMPT) were compared with previous measurements performed within a WG9 for three different photon radiotherapy techniques: 1) intensity-modulated radiation therapy (IMRT), 2) three-dimensional conformal radiation therapy (3D CDRT) performed on a Varian Clinac 2300 linear accelerator (LINAC) in the Centre of Oncology, Krakow, Poland, and 3) Gamma Knife surgery performed on the Leksell Gamma Knife (GK) at the University Hospital Centre Zagreb, Croatia. Phantoms and detectors used in experiments as well as the target location were the same for both photon and proton modalities. The total organ dose equivalent expressed as the sum of neutron and non-neutron components in IMPT was found to be significantly lower (two to three orders of magnitude) in comparison with the different photon radiotherapy techniques for the same delivered tumor dose. For IMPT, neutron doses are lower than non-neutron doses close to the target but become larger than non-neutron doses further away from the target. Results of WG9 studies have provided out-of-field dose levels required for an extensive set of radiotherapy techniques, including proton therapy, and involving a complete description of organ doses of pediatric patients. Such studies are needed for validating mathematical models and Monte Carlo simulation tools for out-of-field dosimetry which is essential for dedicated epidemiological studies which evaluate the risk of second cancers and other late effects for pediatric patients treated with radiotherapy.

摘要

自2010年以来,欧洲放射剂量学组织第9工作组(放射治疗中的辐射剂量学)一直致力于研究X射线和质子治疗中的次级和散射辐射剂量,尤其是儿科患者的情况。本文的主要目的是分析和比较5岁和10岁儿科人体模型内用于治疗直径5厘米脑肿瘤时的野外中子和非中子器官剂量。质子辐照在波兰克拉科夫IFJ PAN的布罗诺维采回旋加速器中心进行,使用笔形束扫描技术(PBS),在带有专用扫描喷嘴的机架上(IBA质子治疗系统,Proteus 235)。热释光和放射光致发光剂量计用于非中子剂量测量,而次级中子则用径迹蚀刻探测器测量。将使用调强质子治疗(IMPT)测量的野外剂量与第9工作组之前针对三种不同光子放射治疗技术进行的测量结果进行比较:1)调强放射治疗(IMRT),2)在波兰克拉科夫肿瘤中心的瓦里安Clinac 2300直线加速器(LINAC)上进行的三维适形放射治疗(3D CDRT),以及3)在克罗地亚萨格勒布大学医院中心的Leksell伽玛刀(GK)上进行的伽玛刀手术。光子和质子模态实验中使用的体模和探测器以及靶区位置相同。发现在相同的肿瘤剂量下,与不同的光子放射治疗技术相比,IMPT中以中子和非中子成分之和表示的总器官剂量当量显著更低(两到三个数量级)。对于IMPT,靠近靶区时中子剂量低于非中子剂量,但在远离靶区时中子剂量大于非中子剂量。第9工作组的研究结果提供了包括质子治疗在内的一系列广泛放射治疗技术所需的野外剂量水平,并完整描述了儿科患者的器官剂量。此类研究对于验证野外剂量学的数学模型和蒙特卡罗模拟工具必不可少,而野外剂量学对于评估接受放射治疗的儿科患者发生二次癌症和其他晚期效应风险的专门流行病学研究至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2af8/9361051/ed45acb6fdc2/fonc-12-904563-g001.jpg

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