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医用电子加速器机房内的中子能量。

Neutron energies in medical electron accelerator rooms.

作者信息

LaRiviere P D

出版信息

Med Phys. 1985 Nov-Dec;12(6):769-75. doi: 10.1118/1.595662.

Abstract

Two experimental methods are described for obtaining average energies of neutron spectra produced by an electron accelerator in a medical treatment room. In the first method, the dose equivalent is measured by means of indium activation foils in an Andersson-Braun moderator. Fluences are determined by the usual activation foil techniques. These data lead to the conversion factor, neutrons/(cm2s) per mrem/h, which uniquely defines the effective energy of the unknown spectrum. In the second method, the fast neutron broad-beam attenuation in polyethylene is obtained from measurement of the thermalized fluence versus depth curve, whose slope in the exponential region parallels that of the fast neutron spectrum. It was found for a 24-MV linear accelerator that the effective energy varied from 0.28 MeV at the isocenter under closed collimators to 0.016-0.024 MeV in the entrance maze. These results compare favorably with other measurements and calculations. It is concluded that the dose equivalent can be measured to within +/- 50% with an activation foil in an Andersson-Braun moderator and that the characteristic energy obtained by attenuation at the isocenter closely approximates the average energy of the neutron spectrum escaping the treatment head.

摘要

介绍了两种用于获取医用治疗室内电子加速器产生的中子能谱平均能量的实验方法。在第一种方法中,通过在安德松 - 布劳恩慢化剂中的铟活化箔来测量剂量当量。通量由常规的活化箔技术确定。这些数据得出转换因子,即每毫雷姆/小时的中子数/(平方厘米·秒),它唯一地定义了未知能谱的有效能量。在第二种方法中,通过测量热化通量与深度曲线来获得聚乙烯中快中子宽束衰减,该曲线在指数区域的斜率与快中子能谱的斜率平行。对于一台24兆伏的直线加速器,发现有效能量在封闭准直器下等中心处为0.28兆电子伏,在入口迷宫处为0.016 - 0.024兆电子伏。这些结果与其他测量和计算结果相比很有利。得出的结论是,使用安德松 - 布劳恩慢化剂中的活化箔测量剂量当量的误差可控制在±50%以内,并且通过等中心处衰减获得的特征能量非常接近从治疗头逸出的中子能谱的平均能量。

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