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Facility optimization to improve activation rate distributions during IVNAA

机译:优化设施以改善IVNAA期间的激活率分布

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摘要

Currently, determination of body composition is the most useful method for distinguishing between certain diseases. The prompt-gamma in vivo neutron activation analysis (IVNAA) facility for non-destructive elemental analysis of the human body is the gold standard method for this type of analysis. In order to obtain accurate measurements using the IVNAA system, the activation probability in the body must be uniform. This can be difficult to achieve, as body shape and body composition affect the rate of activation. The aim of this study was to determine the optimum pre-moderator, in terms of material for attaining uniform activation probability with a CV value of about 10% and changing the collimator role to increase activation rate within the body. Such uniformity was obtained with a high thickness of paraffin pre-moderator, however, because of increasing secondary photon flux received by the detectors it was not an appropriate choice. Our final calculations indicated that using two paraffin slabs with a thickness of 3 cm as a pre-moderator, in the presence of 2 cm Bi on the collimator, achieves a satisfactory distribution of activation rate in the body.
机译:当前,确定身体成分是区分某些疾病的最有用方法。用于人体非破坏性元素分析的即时伽玛体内中子活化分析(IVNAA)设施是此类分析的金标准方法。为了使用IVNAA系统获得准确的测量值,体内的激活概率必须一致。这可能很难实现,因为身体形状和身体成分会影响激活速度。这项研究的目的是确定最佳的预调节剂,以达到CV值约为10%的均匀活化概率并改变准直仪作用以提高体内活化率的材料。使用高厚度的石蜡预调节剂可以获得这种均匀性,但是,由于检测器接收到的次级光子通量增加,因此不是合适的选择。我们的最终计算结果表明,在准直仪上存在2 cm Bi的情况下,使用两块厚度为3 cm的石蜡板作为预调节剂,可以在体内获得令人满意的活化率分布。

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