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基于丙氨酸剂量计的扫描质子束端到端测试。

End-to-end tests using alanine dosimetry in scanned proton beams.

机构信息

EBG MedAustron GmbH, Marie Curie-Straße 5, A-2700 Wiener Neustadt, Austria. Department of Physics and Chemistry, University of Palermo, Viale delle Scienze, Edificio 18, 90128 Palermo, Italy.

出版信息

Phys Med Biol. 2018 Feb 26;63(5):055001. doi: 10.1088/1361-6560/aaac23.

Abstract

This paper describes end-to-end test procedures as the last fundamental step of medical commissioning before starting clinical operation of the MedAustron synchrotron-based pencil beam scanning (PBS) therapy facility with protons. One in-house homogeneous phantom and two anthropomorphic heterogeneous (head and pelvis) phantoms were used for end-to-end tests at MedAustron. The phantoms were equipped with alanine detectors, radiochromic films and ionization chambers. The correction for the 'quenching' effect of alanine pellets was implemented in the Monte Carlo platform of the evaluation version of RayStation TPS. During the end-to-end tests, the phantoms were transferred through the workflow like real patients to simulate the entire clinical workflow: immobilization, imaging, treatment planning and dose delivery. Different clinical scenarios of increasing complexity were simulated: delivery of a single beam, two oblique beams without and with range shifter. In addition to the dose comparison in the plastic phantoms the dose obtained from alanine pellet readings was compared with the dose determined with the Farmer ionization chamber in water. A consistent systematic deviation of about 2% was found between alanine dosimetry and the ionization chamber dosimetry in water and plastic materials. Acceptable agreement of planned and delivered doses was observed together with consistent and reproducible results of the end-to-end testing performed with different dosimetric techniques (alanine detectors, ionization chambers and EBT3 radiochromic films). The results confirmed the adequate implementation and integration of the new PBS technology at MedAustron. This work demonstrates that alanine pellets are suitable detectors for end-to-end tests in proton beam therapy and the developed procedures with customized anthropomorphic phantoms can be used to support implementation of PBS technology in clinical practice.

摘要

本文描述了端到端测试程序,这是在开始质子束扫描 (PBS) 治疗设施临床运行之前,对 MedAustron 同步加速器进行医学调试的最后一个基本步骤。在 MedAustron,使用一个内部均匀体模和两个人体异质(头部和骨盆)体模进行端到端测试。这些体模配备了丙氨酸探测器、光致变色胶片和电离室。在 RayStation TPS 的评估版的蒙特卡罗平台中,实施了对丙氨酸小球的“淬火”效应的校正。在端到端测试过程中,体模像真实患者一样通过整个临床工作流程进行传输,以模拟整个临床工作流程:固定、成像、治疗计划和剂量输送。模拟了不同复杂程度的临床场景:输送单个射束、两个无和有射程移动器的斜射束。除了在塑料体模中的剂量比较外,还将从丙氨酸小球读数中获得的剂量与在水中用 Farmer 电离室确定的剂量进行了比较。在水和塑料材料中,丙氨酸剂量测定与电离室剂量测定之间发现了约 2%的一致系统偏差。计划剂量和输送剂量之间的一致性以及使用不同剂量测定技术(丙氨酸探测器、电离室和 EBT3 光致变色胶片)进行的端到端测试的一致和可重复的结果得到了观察。结果证实了新的 PBS 技术在 MedAustron 的充分实施和集成。这项工作表明,丙氨酸小球是质子束治疗中端到端测试的合适探测器,并且使用定制的人体异质体模开发的程序可以用于支持 PBS 技术在临床实践中的实施。

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