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紧凑型质子治疗中心(CPTC)中扩展量程 REM 测量仪在屏蔽和辐射区域监测应用中的蒙特卡罗特性描述与基准测试。

Monte Carlo characterization and benchmarking of extended range REM meters for its application in shielding and radiation area monitoring in Compact Proton Therapy Centers (CPTC).

作者信息

García-Fernández Gonzalo F, Cevallos-Robalino Lenin E, García-Baonza Roberto, Gallego Eduardo, Vega-Carrillo Héctor R, Guzman-García Karen A, Lorente Alfredo, Ibáñez Sviatoslav

机构信息

Departamento de Ingeniería Energética, ETSI Industriales, Universidad Politécnica de Madrid, José Gutiérrez Abascal 2, 28006, Madrid, Spain; Biología y Técnica de la Radiación, S.L. (Bioterra, S.L.), C. Camino de los Perdigones 2, 28224, Pozuelo de Alarcón, Madrid, Spain.

Departamento de Ingeniería Energética, ETSI Industriales, Universidad Politécnica de Madrid, José Gutiérrez Abascal 2, 28006, Madrid, Spain; Grupo de Investigación en Sistemas de Control y Robótica, GISCOR, Universidad Politécnica Salesiana, C. Robles 107 Chambers, 090108, Guayas, Guayaquil, Ecuador.

出版信息

Appl Radiat Isot. 2019 Oct;152:115-126. doi: 10.1016/j.apradiso.2019.07.001. Epub 2019 Jul 2.

DOI:10.1016/j.apradiso.2019.07.001
PMID:31295682
Abstract

Compact Proton Therapy Centers, CPTC, have a single treatment room, and are technologically more affordable, smaller, advanced and easier to use. From a radiological protection point of view, the leading concern in CPTC are interactions of protons with components of the facility and patients that yield a broad emission of secondary particles, mainly high-energy neutrons, up to 230 MeV, and photons. Optimal design of shielding involves theoretical assumptions in the design phase and, consequently, experimental measurements with extended range neutron detectors must be carried out in the facility during the commissioning period to verify the design, assumptions and building of the enclosures. There are almost 50 CPTC under construction and planning around the world, hence the improvement of methodologies to verify the shielding and to evaluate the dose to workers and general public in CPTC is a trending issue. The aim of this work was to evaluate and compare the response of two commercial extended range REM meters, WENDI-II and LUPIN-II, for their application in shielding verification and radiation area monitoring in CPTC facilities, by estimating the ambient dose equivalent, H*(10), through the Monte Carlo code MCNP6. The results have been compared with previous works. Likewise, the performance evaluation of these devices in continuous energy neutron field have been carried out, using the AmBe/241 neutron source of the Neutronics Hall (NH) of the Neutron Measurements Laboratory of the Energy Engineering Department of Universidad Politecnica de Madrid (LMN-UPM), through Monte Carlo simulation with the MCNP6 code and experimental measurements. The work is framed into the project Contributions to Shielding and Dosimetry of Neutrons in CPTC.

摘要

紧凑型质子治疗中心(CPTC)有一个治疗室,在技术上更经济实惠、体积更小、更先进且易于使用。从放射防护的角度来看,CPTC主要关注的是质子与设施部件以及患者之间的相互作用,这种相互作用会产生大量次级粒子的发射,主要是能量高达230 MeV的高能中子和光子。屏蔽的优化设计在设计阶段需要理论假设,因此,在调试期间必须在设施中使用扩展量程中子探测器进行实验测量,以验证屏蔽设计、假设和防护层的构建。全球各地正在建设和规划的CPTC近50个,因此改进验证屏蔽以及评估CPTC中工作人员和公众剂量的方法是一个热门问题。这项工作的目的是通过蒙特卡罗代码MCNP6估算环境剂量当量H*(10),评估和比较两种商用扩展量程REM计WENDI-II和LUPIN-II在CPTC设施屏蔽验证和辐射区域监测中的响应。已将结果与先前的工作进行了比较。同样,利用马德里理工大学能源工程系中子测量实验室(LMN-UPM)中子学厅(NH)的AmBe/241中子源,通过MCNP6代码的蒙特卡罗模拟和实验测量,对这些设备在连续能量中子场中的性能进行了评估。这项工作属于“CPTC中中子屏蔽和剂量测定的贡献”项目。

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