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Development and validation of a methodology for dose calculation in electron beam irradiation of complex-shaped foods

机译:复杂形状食品电子束辐照剂量计算方法的开发和验证

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摘要

Obtaining a uniform dose in inherently irregularly shaped foods, such as an apple, is very difficult, and development of accurate dose calculation methodologies is needed. The specific objectives of this study were: (1) to obtain detailed, high resolution dose maps using CT scanning and Monte Carlo simulation techniques, and (2) to determine the accuracy of the dose calculation methodology by irradiating food phantoms with a Van de Graaff accelerator. Phantom apples were made using a mixture of chloroform, methyl yellow dye, and paraffin wax. Absorbed dose was determining by measuring the corresponding color changes of the dye in irradiated phantoms. 3-D dose distributions in the phantom and an actual apple were calculated using Monte Carlo methods. Both the measured and calculated dose distribution values in the phantom were very similar. Evaluation of food positioning strategies in front of the e-beam source demonstrated that tilting and axial rotation ensure uniform dose distribution of the entire surface of the phantom, even reaching the critical regions of the apple stem and calyx ends.
机译:在固有形状不规则的食物(例如苹果)中获得均匀剂量非常困难,因此需要开发精确的剂量计算方法。这项研究的具体目标是:(1)使用CT扫描和蒙特卡洛模拟技术获得详细的高分辨率剂量图,以及(2)通过用Van de Graaff辐照食物模型来确定剂量计算方法的准确性。加速器。幻影苹果是使用氯仿,甲基黄染料和石蜡制成的混合物。通过测量被照射体模中染料的相应颜色变化来确定吸收剂量。使用蒙特卡洛方法计算出模型和实际苹果中的3-D剂量分布。幻像中的测量和计算剂量分布值非常相似。对电子束源前面的食物定位策略的评估表明,倾斜和轴向旋转可确保幻影整个表面的剂量均匀分布,甚至到达苹果茎和花萼末端的关键区域。

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