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Optimisation of an EPR dosimetry system for robust and high precision dosimetry

机译:优化EPR剂量测定系统以实现可靠的高精度剂量测定

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Clinical applications of electron paramagnetic resonance (EPR) dosimetry systems demand high accuracy causing time consuming analysis. The need for high spatial resolution dose measurements in regions with steep dose gradients demands small sized dosimeters. An optimization of the analysis was therefore needed to limit the time consumption. The aim of this work was to introduce a new smaller lithium formate dosimeter model (diameter reduced from standard diameter 4.5 mm to 3 mm and height from 4.8 mm to 3 mm). To compensate for reduced homogeneity in a batch of the smaller dosimeters, a method for individual sensitivity correction suitable for EPR dosimetry was tested. Sensitivity and repeatability was also tested for a standard EPR resonator and a super high Q (SHQE) one. The aim was also to optimize the performance of the dosimetry system for better efficiency regarding measurement time and precision. A systematic investigation of the relationship between measurement uncertainty and number of readouts per dosimeter was performed. The conclusions drawn from this work were that it is possible to decrease the dosimeter size with maintained measurement precision by using the SHQE resonator and introducing individual calibration factors for dosimeter batches. It was also shown that it is possible reduce the number of readouts per dosimeter without significantly decreasing the accuracy in measurements.
机译:电子顺磁共振(EPR)剂量测定系统的临床应用要求很高的精度,从而导致分析耗时。在具有陡峭剂量梯度的区域中对高空间分辨率剂量测量的需求要求使用小剂量剂量计。因此,需要优化分析以限制时间消耗。这项工作的目的是引入一种新的较小的甲酸锂剂量计模型(直径从标准直径4.5毫米减小到3毫米,高度从4.8毫米减小到3毫米)。为了补偿一批较小的剂量计中均一性的​​降低,测试了一种适用于EPR剂量测定的个体灵敏度校正方法。还针对标准EPR谐振器和超高Q(SHQE)谐振器测试了灵敏度和可重复性。目的还在于优化剂量测定系统的性能,以提高有关测量时间和精度的效率。对测量不确定度与每个剂量计读数之间的关系进行了系统的研究。从这项工作得出的结论是,通过使用SHQE谐振器并为剂量计批次引入单独的校准因子,可以在保持测量精度的同时减小剂量计尺寸。还表明,有可能减少每个剂量计的读数数量,而不会显着降低测量精度。

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