伊朗第一台直线加速器 OMID 的 6MV 光束的蒙特卡罗模型验证。

IF 1.3 Q4 ENGINEERING, BIOMEDICAL Journal of Medical Signals & Sensors Pub Date : 2024-08-06 eCollection Date: 2024-01-01 DOI:10.4103/jmss.jmss_54_22
Mohammad Amin Abdoli, Maryam Hassanvand, Navid Nejatbakhsh
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引用次数: 0

摘要

多年来,蒙特卡罗(MC)技术一直被认为是放疗剂量模拟计算的精确方法。本文旨在通过 EGSnrc 代码系统验证 OMID 直线加速器(BEHYAAR 公司)6-MV 射束的模拟模型,并研究初始电子束参数(能量、半最大径向全宽和平均角散布)对剂量分布的影响。为此,用伽马指数(GI)比较了计算和测量的深度剂量百分比(PDD)和横向剂量分布,接受标准为 1%-1mm。对 3 厘米×3 厘米、5 厘米×5 厘米、8 厘米×8 厘米、10 厘米×10 厘米和 20 厘米×20 厘米的磁场尺寸进行了 MC 模型验证。为了研究模型对射束参数的敏感性,选择了 10 厘米×10 厘米和 30 厘米×30 厘米的磁场尺寸。所有侧向剂量曲线都是在 10 厘米处获得的。在所研究的射野尺寸下,PDD 曲线的 GI 通过率为 99.2%,侧向剂量曲线的 GI 通过率至少为 93.8%,达到了极佳的一致性。我们的研究证实,横向剂量曲线严重依赖于本研究中考虑的放射源参数。PDD仅在很大程度上取决于初始电子束能量。因此,不应单独指定源参数。这些结果表明,OMID 6-MV 直列加速器的现有模型已经非常成熟,模拟的准确度也很高,足以在各种应用中使用。
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Monte Carlo Model Validation of 6MV Beam of OMID, the First Iranian Linear Accelerator.

Monte Carlo (MC) techniques are regarded as an accurate method to simulate the dose calculation in radiotherapy for many years. The present paper aims to validate the simulated model of the 6-MV beam of OMID linear accelerator (BEHYAAR Company) by EGSnrc codes system and also investigate the effects of initial electron beam parameters (energy, radial full width at half maximum, and mean angular spread) on dose distributions. For this purpose, the comparison between the calculated and measured percentage depth dose (PDD) and lateral dose profiles was done by gamma index (GI) with 1%-1 mm acceptance criteria. MC model validating was done for 3 cm × 3 cm, 5 cm × 5 cm, 8 cm × 8 cm, 10 cm × 10 cm, and 20 cm × 20 cm field sizes. To study the sensitivity of model to beam parameters, the field size was selected as 10 cm × 10 cm and 30 cm × 30 cm. All lateral dose profiles were obtained at 10 cm. Excellent agreement was achieved with a 99.2% GI passing percentage for PDD curves and at least 93.8% GI for lateral dose profiles for investigated field sizes. Our investigation confirmed that the lateral dose profile severely depends on the considered source parameters in this study. PDD only considerably depends on the initial electron beam energy. Therefore, source parameters should not be specified independently. These results indicate that the current model of OMID 6-MV Linac is well established, and the accuracy of the simulation is high enough to be used in various applications.

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来源期刊
Journal of Medical Signals & Sensors
Journal of Medical Signals & Sensors ENGINEERING, BIOMEDICAL-
CiteScore
2.30
自引率
0.00%
发文量
53
审稿时长
33 weeks
期刊介绍: JMSS is an interdisciplinary journal that incorporates all aspects of the biomedical engineering including bioelectrics, bioinformatics, medical physics, health technology assessment, etc. Subject areas covered by the journal include: - Bioelectric: Bioinstruments Biosensors Modeling Biomedical signal processing Medical image analysis and processing Medical imaging devices Control of biological systems Neuromuscular systems Cognitive sciences Telemedicine Robotic Medical ultrasonography Bioelectromagnetics Electrophysiology Cell tracking - Bioinformatics and medical informatics: Analysis of biological data Data mining Stochastic modeling Computational genomics Artificial intelligence & fuzzy Applications Medical softwares Bioalgorithms Electronic health - Biophysics and medical physics: Computed tomography Radiation therapy Laser therapy - Education in biomedical engineering - Health technology assessment - Standard in biomedical engineering.
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