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Experimental determination of the effective point of measurement for cylindrical ionization chambers in 60Co gamma radiation

机译:实验确定60Coγ射线中圆柱电离室的有效测量点

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The displacement effect of cylindrical ionization chambers is taken into account either by an effective point of measurement (EPOM) or, alternatively, by using a displacement perturbation factor. The dependence of these effects in water was examined as a function of the cavity radius using cylindrical chambers with different radii and a plane-parallel chamber, whose EPOM is well known. Depthdose curves were measured in terms of absolute absorbed dose in water and evaluated according to the international protocol IAEA TRS-398 as well as the German protocol DIN 6800-2. As expected, evaluation of absorbed dose under reference conditions following both protocols agreed well within a standard uncertainty of 0.1%. However, values of absorbed dose at depths beyond the dose maximum showed deviations up to 0.3% and 0.5% for IAEA TRS-398 and DIN 6800-2, respectively. Values in the build-up and maximum region did not agree very well. Deviations of more than 1% were found for both protocols. It was concluded that the corrections recommended in both protocols are not fully appropriate. A procedure is suggested to measure the absorbed depthdose distribution including the build-up region with an improved accuracy by means of cylindrical chambers.
机译:可以通过有效的测量点(EPOM)或通过使用位移扰动因子来考虑圆柱电离室的位移效应。使用具有不同半径的圆柱形腔室和平面平行腔室(其EPOM众所周知),检查了这些影响在水中的依赖性与腔半径的关系。根据在水中的绝对吸收剂量来测量深度曲线,并根据国际规程IAEA TRS-398和德国规程DIN 6800-2进行评估。不出所料,遵循两种方案的参考条件下吸收剂量的评估在0.1%的标准不确定度内完全吻合。但是,对于IAEA TRS-398和DIN 6800-2,超过最大剂量的深度处的吸收剂量值分别显示出高达0.3%和0.5%的偏差。增长和最大区域中的值不一致。两种协议的偏差均超过1%。结论是两个协议中建议的更正均不完全正确。建议使用圆柱形腔室以提高的精度测量吸收的深度剂量分布,包括积累区域。

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