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Dosimetric characteristics of an electron multileaf collimator for modulated electron radiation therapy

机译:用于调制电子放射疗法的电子多叶准直仪的剂量特性

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Modulated electron radiation therapy (MERT) has been proven as an effective way to deliver conformal dose distributions to shallow tumors while sparing distal critical structures and surrounding normal tissues. It had been shown that a dedicated electron multileaf collimator (eMLC) is necessary to reach the full potential of MERT. In this study, a manually‐driven eMLC for MERT was investigated. Percentage depth dose (PDD) curves and profiles at different depths in a water tank were measured using ionization chamber and were also simulated using the Monte Carlo method. Comparisons have been performed between PDD curves and profiles collimated using the eMLC and conventional electron applicators with similar size of opening. Monte Carlo simulations were performed for all electron energies available (6, 9, 12, 15, 18 and 20 MeV) on a Varian 21EX accelerator. Monte Carlo simulation results were compared with measurements which showed good agreement (  %1mm). The simulated dose distributions resulting from multiple static electron fields collimated by the eMLC agreed well with measurements. Further studies were carried out to investigate the properties of abutting electron beams using the eMLC, as it is an essential issue that needs to be addressed for optimizing the MERT outcome. A series of empirical formulas for abutting beams of different energies have been developed for obtaining the optimum gap sizes, which can highly improve the target dose uniformity.PACS numbers: 87.53.Wz, 87.53.Hv
机译:调制电子辐射疗法(MERT)已被证明是一种有效的方法,可以将适形的剂量分布传递给浅层肿瘤,同时保留远端的关键结构和周围的正常组织。已经显示出专用的电子多叶准直仪(eMLC)才能发挥MERT的全部潜力。在这项研究中,对MERT的手动eMLC进行了研究。使用电离室测量水箱中不同深度的百分比深度剂量(PDD)曲线和轮廓,并使用蒙特卡洛方法进行模拟。在使用eMLC和具有类似开口尺寸的传统电子施加器准直的PDD曲线和轮廓之间进行了比较。在Varian 21EX加速器上对所有可用电子能量(6、9、12、15、18和20 MeV)进行了蒙特卡洛模拟。蒙特卡罗模拟结果与显示出良好一致性(<%1mm)的测量结果进行了比较。由eMLC准直的多个静态电子场产生的模拟剂量分布与测量结果非常吻合。使用eMLC进行了进一步的研究以研究邻接电子束的特性,因为这是优化MERT结果所需解决的重要问题。为了获得最佳的间隙尺寸,已经开发了一系列不同能量的邻接梁的经验公式,可以极大地提高目标剂量的均匀性。PACS编号:87.53.Wz,87.53.Hv

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