Characterization of the Radiation Contamination in an 18MV Linac Treatment Room Made of some Nanoparticles Mixture

Q3 Health Professions
Sara Ghanavati, Nahid Makiabadi, Sajad Keshavarz, Hosein Ghiasi
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 Materials and Methods: Effective neutron mass removal cross-section (ΣR/ρ) was for the ordinary concrete doped with 50nm in diameter nanosphers mixture of Fe2O3(5%), WO3(5%), B4H (5%), Pb2O3(5%) was estimated with MCNP5 Monte Carlo (MC) code and N-XCOM computational program. An 18MV linac room made of the nanoparticles dopped ordinarily simulated. Additionally, the room was considered with three legs in the maze and photoneutron and capture γ-ray Dose Equivalent (DE) were estimated at the modeled rooms maze.
 Results: Total ΣR/ρ with energies 100 keV-2000keV was estimated using MC and N-XCOM as 0.02802-0.02687 cm2/gand 0.02810- 0.02687 cm2/g, respectively. Total ΣR/ρ of the neutron for the pure ordinary concrete was estimated by MC code and N-XCOM with energies 100 keV-2000keV as 0.02802-0.02687 cm2/g and 0.02810- 0.02687 cm2/g. Borated Polyethylene (BPE) and Lead required thickness calculated as 7.43×10-06 mm and 4.73×10-06 mm for the capture γ-ray shielding.","PeriodicalId":34203,"journal":{"name":"Frontiers in Biomedical Technologies","volume":"11 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-09-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Frontiers in Biomedical Technologies","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.18502/fbt.v10i4.13727","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"Health Professions","Score":null,"Total":0}
引用次数: 0

Abstract

Purpose: Shielding against radiation in radiotherapy and radiology requires deep knowledge of radiation physics and shielding design methods. The application of nanoparticles in the photon and neutron dose moderation has been proven in the literature. Materials and Methods: Effective neutron mass removal cross-section (ΣR/ρ) was for the ordinary concrete doped with 50nm in diameter nanosphers mixture of Fe2O3(5%), WO3(5%), B4H (5%), Pb2O3(5%) was estimated with MCNP5 Monte Carlo (MC) code and N-XCOM computational program. An 18MV linac room made of the nanoparticles dopped ordinarily simulated. Additionally, the room was considered with three legs in the maze and photoneutron and capture γ-ray Dose Equivalent (DE) were estimated at the modeled rooms maze. Results: Total ΣR/ρ with energies 100 keV-2000keV was estimated using MC and N-XCOM as 0.02802-0.02687 cm2/gand 0.02810- 0.02687 cm2/g, respectively. Total ΣR/ρ of the neutron for the pure ordinary concrete was estimated by MC code and N-XCOM with energies 100 keV-2000keV as 0.02802-0.02687 cm2/g and 0.02810- 0.02687 cm2/g. Borated Polyethylene (BPE) and Lead required thickness calculated as 7.43×10-06 mm and 4.73×10-06 mm for the capture γ-ray shielding.
纳米粒子混合物在18MV直线加速器处理室内的辐射污染表征
目的:在放射治疗和放射学中屏蔽辐射需要对辐射物理学和屏蔽设计方法有深入的了解。纳米粒子在光子和中子剂量调节中的应用已在文献中得到证实。 材料与方法:采用MCNP5蒙特卡罗(MC)程序和N-XCOM计算程序,计算了Fe2O3(5%)、WO3(5%)、B4H(5%)、Pb2O3(5%)纳米球掺杂直径为50nm的普通混凝土的有效中子质量去除截面(ΣR/ρ)。一个由掺杂纳米粒子组成的18MV直线加速器室。此外,将房间视为迷宫中的三条腿,并在模拟房间迷宫中估计光子中子和捕获γ射线剂量当量(DE)。 结果:MC和N-XCOM测定的总ΣR/ρ值分别为0.02802-0.02687 cm2/ g和0.02810- 0.02687 cm2/g,能量为100 kv - 2000kev。用MC代码和N-XCOM计算了纯普通混凝土的总中子ΣR/ρ为0.02802-0.02687 cm2/g和0.02810- 0.02687 cm2/g。硼化聚乙烯(BPE)和铅所需的厚度计算为7.43×10-06 mm和4.73×10-06 mm用于捕获γ射线屏蔽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Biomedical Technologies
Frontiers in Biomedical Technologies Health Professions-Medical Laboratory Technology
CiteScore
0.80
自引率
0.00%
发文量
34
审稿时长
12 weeks
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