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首页> 外文期刊>Journal of applied clinical medical physics / >Improved electron collimation system design for Elekta linear accelerators
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Improved electron collimation system design for Elekta linear accelerators

机译:Elekta直线加速器的改进的电子准直系统设计

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摘要

Prototype 10 × 10 and 20 × 20-cm2 electron collimators were designed for the Elekta Infinity accelerator (MLCi2 treatment head), with the goal of reducing the trimmer weight of excessively heavy current applicators while maintaining acceptable beam flatness (±3% major axes, ±4% diagonals) and IEC leakage dose. Prototype applicators were designed initially using tungsten trimmers of constant thickness (1% electron transmission) and cross-sections with inner and outer edges positioned at 95% and 2% off-axis ratios (OARs), respectively, cast by the upstream collimating component. Despite redefining applicator size at isocenter (not 5 cm upstream) and reducing the energy range from 4–22 to 6–20 MeV, the designed 10 × 10 and 20 × 20-cm2 applicator trimmers weighed 6.87 and 10.49 kg, respectively, exceeding that of the current applicators (5.52 and 8.36 kg, respectively). Subsequently, five design modifications using analytical and/or Monte Carlo (MC) calculations were applied, reducing trimmer weight while maintaining acceptable in-field flatness and mean leakage dose. Design Modification 1 beveled the outer trimmer edges, taking advantage of only low-energy beams scattering primary electrons sufficiently to reach the outer trimmer edge. Design Modification 2 optimized the upper and middle trimmer distances from isocenter for minimal trimmer weights. Design Modification 3 moved inner trimmer edges inward, reducing trimmer weight. Design Modification 4 determined optimal X-ray jaw positions for each energy. Design Modification 5 adjusted middle and lower trimmer shapes and reduced upper trimmer thickness by 50%. Design Modifications 1→5 reduced trimmer weights from 6.87→5.86→5.52→5.87→5.43→3.73 kg for the 10 × 10-cm2 applicator and 10.49→9.04→8.62→7.73→7.35→5.09 kg for the 20 × 20-cm2 applicator. MC simulations confirmed these final designs produced acceptable in-field flatness and met IEC-specified leakage dose at 7, 13, and 20 MeV. These results allowed collimation system design for 6 × 6–25 × 25-cm2 applicators. Reducing trimmer weights by as much as 4 kg (25 × 25-cm2 applicator) should result in easier applicator handling by the radiotherapy team.
机译:为Elekta Infinity加速器(MLCi2处理头)设计了原型10×10和20×20-cm 2 电子准直仪,目的是减轻过大电流施加器的微调重量,同时保持可接受的光束平整度(主轴±3%,对角线±4%)和IEC泄漏剂量。原型施加器最初是使用恒定厚度(1%电子透射率)的钨修剪器设计的,其横截面的内边缘和外边缘分别位于偏轴比(OAR)的95%和2%处,并由上游的准直组件浇铸而成。尽管重新定义了等中心点处的施涂器尺寸(上游不超过5 cm),并且能量范围从4–22 MeV减小到6–20 MeV,但设计的10×10和20×20 cm 2 施涂器修整器的重量为6.87分别比目前的涂药器重10.49公斤(分别为5.52公斤和8.36公斤)。随后,使用分析和/或蒙特卡洛(MC)计算进行了五次设计修改,在保持可接受的场内平坦度和平均泄漏剂量的同时,减少了修剪器的重量。设计修改例1将修整器的外部边缘切成斜角,仅利用低能束充分散射一次电子以到达修整器的外部边缘。设计修改2优化了从等角点到上,中修剪器的距离,以最小化修剪器的重量。设计修改例3将修边器的内部边缘向内移动,从而减轻了修边器的重量。设计修改4确定了每种能量的最佳X射线钳口位置。设计修改5调整了中修剪器和下修剪器的形状,并将上修剪器的厚度减小了50%。设计修改1→5将修剪器的重量从6.87→5.86→5.52→5.87→5.43→3.73千克(10×10-cm 2 施用器和10.49→9.04→8.62→7.73→7.35→5.09千克减少了)适用于20×20-cm 2 喷枪。 MC仿真证实,这些最终设计产生了可接受的场内平坦度,并在7、13和20 MeV下达到了IEC规定的泄漏剂量。这些结果允许为6×6–25×25-cm 2 敷贴器设计准直系统。将修剪器的重量减少多达4千克(25×25-cm 2 涂抹器),可以使放疗团队更轻松地处理涂抹器。

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