Estimating the Accuracy of Proton Beam Dosimetry with Film Detectors

IF 0.4 4区 工程技术 Q4 ENGINEERING, MULTIDISCIPLINARY
G. V. Merzlikin, D. A. Kokontsev, I. A. Yakovlev, S. V. Akulinichev
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引用次数: 0

Abstract

The theoretical and experimental characteristics of depth dose distributions of protons in the Bragg peak region are investigated. Results of the Monte Carlo calculations in the TOPAS MC software package and experimental data obtained from film detectors and ionization chambers at the high-current proton linear accelerator of the Institute for Nuclear Research are used. The interrelationship between the results and the applicability of these detectors for measuring the absorbed dose are considered. The calculated dose distributions are in good agreement with the dose distributions measured using the ionization chambers for the pristine and spread-out Bragg peaks. Possible interrelationship between the linear energy transfer and the accuracy of dose measurements with the film detectors is shown. The discrepancy between the readings of the film detectors in the Bragg peak region, on the one hand, and the results of calculations and measurements with the ionization chambers, on the other hand, may be important for irradiation of biological samples, in particular, in the FLASH therapy modes.

Abstract Image

用薄膜探测器估计质子束剂量测定的精度
研究了质子在布拉格峰区深度剂量分布的理论和实验特征。本文采用了TOPAS MC软件包中的蒙特卡罗计算结果和核科学研究所大电流质子直线加速器的薄膜探测器和电离室的实验数据。讨论了结果之间的相互关系和这些探测器测量吸收剂量的适用性。计算的剂量分布与用电离室测量的原始布拉格峰和展开布拉格峰的剂量分布很好地吻合。指出了线性能量传递与薄膜探测器剂量测量精度之间可能存在的相互关系。一方面,薄膜探测器在布拉格峰区的读数与电离室计算和测量结果之间的差异,另一方面,可能对生物样品的辐照,特别是在FLASH治疗模式下的辐照很重要。
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
Instruments and Experimental Techniques
Instruments and Experimental Techniques 工程技术-工程:综合
CiteScore
1.20
自引率
33.30%
发文量
113
审稿时长
4-8 weeks
期刊介绍: Instruments and Experimental Techniques is an international peer reviewed journal that publishes reviews describing advanced methods for physical measurements and techniques and original articles that present techniques for physical measurements, principles of operation, design, methods of application, and analysis of the operation of physical instruments used in all fields of experimental physics and when conducting measurements using physical methods and instruments in astronomy, natural sciences, chemistry, biology, medicine, and ecology.
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