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外照射放射治疗射束校准方案的比较。

A comparison of protocols for external beam radiotherapy beam calibrations.

作者信息

Saeed Al-Ahbabi Salma, Bradley D A, Beyomi M, Alkatib Z, Adhaheri S, Darmaki M, Nisbet A

机构信息

Department of Physics, University of Surrey, and Department of Medical Physics, Royal Surrey County Hospital NHS Foundation Trust, Guildford GU2 7XH, UK.

出版信息

Appl Radiat Isot. 2012 Jul;70(7):1331-6. doi: 10.1016/j.apradiso.2011.11.065. Epub 2012 Jan 25.

Abstract

A number of codes of practice (CoP) for electron and photon radiotherapy beam dosimetry are currently in use. Comparison is made of the more widely used of these, specifically those of the International Atomic Energy Agency (IAEA TRS-398), the American Association of Physicists in Medicine (AAPM TG-51) and the Institute of Physics and Engineering in Medicine (IPEM 2003). All are based on calibration of ionization chambers in terms of absorbed dose to water, each seeking to reduce uncertainty in delivered dose, providing an even stronger system of primary standards than previous air-kerma based approaches. They also provide a firm, traceable and straight-forward formalism (Radiology, 1996). Included in making dose assessments for the three CoP are calibration coefficients for a range of beam quality indices. Measurements have been performed using clinical photon and electron beams, the absorbed dose to water being obtained following the recommendations given by each code. Electron beam comparisons have been carried out using measurements for electron beams of nominal energies 6, 9, 12, 16 and 20 MeV. Comparisons were also carried out for photon beams of nominal energies 6 and 18 MV. For photon beams use was made of NE2571 cylindrical graphite walled ionization chambers, cross-calibrated against an NE2611 Secondary Standard; for electron beams, PTW Markus and NACP-02 plane-parallel chambers were used. Irradiations were made using Varian 600C/2100C linacs, supported by water tanks and Virtual Water™ phantoms. The absorbed doses for photon and electron beams obtained following these CoP are all in good agreement, with deviations of less than 2%. A number of studies have been carried out by different groups in different countries to examine the consistency of dosimetry codes of practice or protocols. The aim of these studies is to confirm that the goal of those codes is met, namely uniformity in establishment of dosimetry of all radiation beam types used in cancer therapy in the world, and this is one of the studies.

摘要

目前有一些电子和光子放射治疗束剂量测定的操作规范(CoP)正在使用。本文对其中使用较为广泛的规范进行了比较,特别是国际原子能机构(IAEA TRS - 398)、美国医学物理学家协会(AAPM TG - 51)和医学物理与工程学会(IPEM 2003)的规范。所有这些规范都基于电离室在水吸收剂量方面的校准,各自致力于降低所输送剂量的不确定性,提供了一个比以往基于空气比释动能的方法更强的初级标准体系。它们还提供了一个稳固、可追溯且直接的形式体系(《放射学》,1996年)。在对这三种CoP进行剂量评估时,包括了一系列射束质量指标的校准系数。已使用临床光子束和电子束进行了测量,水吸收剂量是按照每个规范给出的建议获得的。已对标称能量为6、9、12、16和20 MeV的电子束测量结果进行了电子束比较。还对标称能量为6和18 MV的光子束进行了比较。对于光子束,使用了NE2571圆柱形石墨壁电离室,与NE2611二级标准进行交叉校准;对于电子束,使用了PTW Markus和NACP - 02平行板电离室。使用瓦里安600C/2100C直线加速器进行照射,并用水箱和Virtual Water™体模提供支持。按照这些CoP获得的光子束和电子束的吸收剂量均吻合良好,偏差小于2%。不同国家的不同团队开展了多项研究,以检验剂量测定操作规范或方案的一致性。这些研究的目的是确认这些规范的目标得以实现,即在全球癌症治疗中使用的所有辐射束类型的剂量测定建立方面实现统一,而本文所述正是其中一项研究。

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