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A method to increase the nominal range resolution of a stack of parallel-plate ionization chambers

机译:一种提高平行板电离室堆的标称范围分辨率的方法

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摘要

A detector prototype based on a stack of 61 parallel-plate ionisation chambers (PPIC) interleaved with absorber plates of polymethyl methacrylate (PMMA) was assembled for transmission imaging purposes in ion beam therapy. The thickness of the absorber sheets in the PPIC stack determines the nominal range resolution of the detector. In the current set-up, 3mm PMMA slabs are used. The signal of the 61 active channels of the stack thereby provides a discrete approximation of the Bragg curve in the detector. In this work, a data processing method to increase the range resolution (MIRR) in a stack of ionization chambers is presented. In the MIRR the position of the maximum of the Bragg curve is deduced from the ratio of measured signals in adjacent PPIC channels. The method is developed based on Bragg curves obtained from Monte Carlo simulations and validated with experimental data of a wedge-shaped PMMA phantom acquired with the PPIC stack using carbon ion beams. The influence of the initial beam energy and of phantom inhomogeneities on the MIRR is quantitatively evaluated. Systematic errors as well as inaccuracies related to signal noise are discussed and quantified. It is shown that with the MIRR an increased range resolution of 0.7mm PMMA equivalent or 0.8mm water equivalent thickness is achieved for the considered experimental data.
机译:组装了一个基于61个平行板电离室(PPIC)和聚甲基丙烯酸甲酯(PMMA)吸收板交错排列的检测器原型,用于离子束治疗中的透射成像。 PPIC堆栈中吸收板的厚度决定了检测器的标称范围分辨率。在当前设置中,使用3mm PMMA平板。堆栈中61个活动通道的信号从而在检测器中提供了布拉格曲线的离散近似值。在这项工作中,提出了一种提高电离室堆叠中的距离分辨率(MIRR)的数据处理方法。在MIRR中,布拉格曲线最大值的位置是从相邻PPIC通道中的测量信号比率得出的。该方法是基于从蒙特卡洛模拟获得的布拉格曲线开发的,并通过使用PPIC堆栈使用碳离子束获取的楔形PMMA体模的实验数据进行了验证。定量评估了初始光束能量和幻影不均匀性对MIRR的影响。讨论并量化了系统误差以及与信号噪声有关的不准确性。结果表明,对于所考虑的实验数据,采用MIRR可以实现0.7mm PMMA当量或0.8mm水当量厚度的范围分辨率提高。

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