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二维阵列Seven29探测器的响应特性及其与Octavius体模联合用于容积旋转调强放疗患者个体化质量保证的研究

Characterization of responses of 2d array seven29 detector and its combined use with octavius phantom for the patient-specific quality assurance in rapidarc treatment delivery.

作者信息

Syamkumar S A, Padmanabhan Sriram, Sukumar Prabakar, Nagarajan Vivekanandan

机构信息

Department of Medical Physics, Cancer Institute (WIA), Chennai, India.

出版信息

Med Dosim. 2012 Spring;37(1):53-60. doi: 10.1016/j.meddos.2010.12.013. Epub 2011 Jul 8.

Abstract

A commercial 2D array seven29 detector has been characterized and its performance has been evaluated. 2D array ionization chamber equipped with 729 ionization chambers uniformly arranged in a 27 × 27 matrix with an active area of 27 × 27 cm² was used for the study. An octagon-shaped phantom (Octavius Phantom) with a central cavity is used to insert the 2D ion chamber array. All measurements were done with a linear accelerator. The detector dose linearity, reproducibility, output factors, dose rate, source to surface distance (SSD), and directional dependency has been studied. The performance of the 2D array, when measuring clinical dose maps, was also investigated. For pretreatment quality assurance, 10 different RapidArc plans conforming to the clinical standards were selected. The 2D array demonstrates an excellent short-term output reproducibility. The long-term reproducibility was found to be within ±1% over a period of 5 months. Output factor measurements for the central chamber of the array showed no considerable deviation from ion chamber measurements. We found that the 2D array exhibits directional dependency for static fields. Measurement of beam profiles and wedge-modulated fields with the 2D array matched very well with the ion chamber measurements in the water phantom. The study shows that 2D array seven29 is a reliable and accurate dosimeter and a useful tool for quality assurance. The combination of the 2D array with the Octavius phantom proved to be a fast and reliable method for pretreatment verification of rotational treatments.

摘要

对一款商用二维阵列seven29探测器进行了特性描述并评估了其性能。本研究使用了配备729个电离室的二维阵列电离室,这些电离室均匀排列在一个27×27的矩阵中,有效面积为27×27平方厘米。使用一个带有中心腔的八边形模体(Octavius模体)来插入二维电离室阵列。所有测量均在直线加速器上进行。研究了探测器的剂量线性、可重复性、输出因子、剂量率、源皮距(SSD)和方向依赖性。还研究了二维阵列在测量临床剂量分布图时的性能。为了进行治疗前质量保证,选择了10个符合临床标准的不同的容积调强弧形治疗(RapidArc)计划。二维阵列显示出优异的短期输出可重复性。发现在5个月的时间内长期可重复性在±1%以内。对阵列中心腔的输出因子测量结果与电离室测量结果相比没有显著偏差。我们发现二维阵列对静态野表现出方向依赖性。用二维阵列测量射野轮廓和楔形调制野与水模体中的电离室测量结果非常吻合。研究表明,二维阵列seven29是一种可靠且准确的剂量仪,是质量保证的有用工具。二维阵列与Octavius模体的组合被证明是一种用于旋转治疗前验证的快速且可靠的方法。

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