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首页> 外文期刊>Australasian physical & engineering sciences in medicine >An MLC-based version for the ecliptic method for the determination of backscatter into the beam monitor chambers in photon beams of medical accelerators
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An MLC-based version for the ecliptic method for the determination of backscatter into the beam monitor chambers in photon beams of medical accelerators

机译:一种基于MLC的黄道法,用于确定进入医疗加速器光子束中束监测室的反向散射

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摘要

A very simple method to measure the effect of the backscatter from secondary collimators into the beam monitor chambers in linear accelerators equipped with multi-leaf collimators (MLC) is presented here. The backscatter to the monitor chambers from the upper jaws of the secondary collimator was measured on three beam-matched linacs by means of three methods: this new methodology, the ecliptic method, and assessing the variation of the beam-on time per monitor unit with dose rate feedback disabled. This new methodology was used to assess the backscatter characteristics of asymmetric over-traveling jaws. Excellent agreement between the backscatter values measured using the new methodology introduced here and the ones obtained using the other two methods was established. The experimental values reported here differ by less than 1 % from published data. The sensitivity of this novel technique allowed differences in backscatter due to the same opening of the jaws, when placed at different positions on the beam path, to be resolved. The introduction of the ecliptic method has made the determination of the backscatter to the monitor chambers an easy procedure. The method presented here for machines equipped with MLCs makes the determination of backscatter to the beam monitor chambers even easier, and suitable to characterize linacs equipped with over-traveling asymmetric secondary collimators. This experimental procedure could be simply implemented to fully characterize the backscatter output factor constituent when detailed dosimetric modeling of the machine's head is required. The methodology proved to be uncomplicated, accurate and suitable for clinical or experimental environments.
机译:本文介绍了一种非常简单的方法,用于测量从次级准直器到配备多叶准直器(MLC)的线性加速器中的光束监控器室的反向散射的影响。通过以下三种方法,在三种光束匹配的直线加速器上测量了从辅助准直仪的上颚到监测室的背向散射:这种新方法,黄道法和评估每个监测单元的光束开启时间的变化。剂量率反馈已禁用。该新方法用于评估非对称超行程颚的后向散射特性。在使用此处介绍的新方法测量的反向散射值与使用其他两种方法获得的反向散射值之间建立了极好的一致性。此处报告的实验值与已发布的数据相差不到1%。这种新颖技术的灵敏性可以解决由于将颚板的相同开口放置在光路上的不同位置而导致的反向散射差异。黄道法的引入使得确定向监测室的反向散射变得容易。此处介绍的针对配备MLC的机器的方法,使得对光束监控室的反向散射的确定更加容易,并且适合于表征配备了超行程非对称次级准直器的直线加速器。当需要对机器头部进行详细的剂量学建模时,可以简单地执行此实验过程以完全表征反向散射输出因子的组成。该方法被证明是简单,准确的并且适合于临床或实验环境。

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