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Stem effect of a Ce~(3+) doped SiO2 optical dosimeter irradiated with a ~(192)Ir HDR brachytherapy source

机译:〜(192)Ir HDR近距离放射源照射Ce〜(3+)掺杂的SiO2光学剂量计的干效应

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Fiber-optic-coupled scintillation dosimeters are characterized by their small active volume if compared to other existing systems. However, they potentially show a greater stem effect, especially in external beam radiotherapy where the Cerenkov effect is not negligible. In brachytherapy, due to the lower energies and the shorter high dose range of the employed sources, the impact of the stem effect to the detector accuracy might be low. In this work, the stem effect of a Ce~(3+) doped SiO2 scintillation detector coupled to a SiO2 optical fiber was studied for high dose rate brachytherapy applications. Measurements were performed in a water phantom at changing source-detector mutual positions. The same irradiations were performed with a passive optical fiber, which doesn't have the dosimeter at its end. The relative contribution of the passive fiber with respect to the uncorrected readings of the detector in each one of the investigated source dwell positions was evaluated. Furthermore, the dosimeter was calibrated both neglecting and correcting its response for the passive fiber readings. The obtained absolute dose measurements were then compared to the dose calculations resulting from the treatment planning system. Dosimeter uncertainties with and without taking into account the passive fiber readings were generally below 2.8% and 4.3%, respectively. However, a particular exception results when the source is positioned near to the optical fiber, where the detector underestimates the dose (- 8%) or at source-detector longitudinal distances higher than 3 cm. The obtained results show that the proposed dosimeter might be adopted in high dose rate prostate brachytherapy with satisfactory accuracy, without the need for any stem effect correction. However, accuracy further improves by subtraction of the noise signal produced by the passive optical fiber.
机译:与其他现有系统相比,光纤耦合闪烁剂量计的特点是有效体积小。然而,它们潜在地显示出更大的茎效应,尤其是在切伦科夫效应不可忽略的外部束放射疗法中。在近距离放射治疗中,由于所用光源的能量较低且高剂量范围较短,因此干效应对检测器精度的影响可能较低。在这项工作中,针对高剂量率近距离放射治疗应用,研究了耦合有SiO2光纤的Ce〜(3+)掺杂SiO2闪烁探测器的干效应。在水体模中在改变源-探测器相互位置的位置进行测量。无源光纤进行了相同的照射,该光纤的末端没有剂量计。评估了无源光纤相对于每个被调查的源驻留位置中检测器的未校正读数的相对贡献。此外,对剂量计进行校准,以忽略和校正其对无源光纤读数的响应。然后将获得的绝对剂量测量结果与治疗计划系统得出的剂量计算结果进行比较。考虑和不考虑无源纤维读数的剂量计不确定度通常分别低于2.8%和4.3%。但是,当光源靠近光纤放置时,检测器低估了剂量(-8%),或者光源-检测器的纵向距离大于3 cm,则会导致特殊的例外情况。获得的结果表明,所建议的剂量计可以以令人满意的精度用于高剂量率前列腺近距离放射治疗中,而无需进行任何茎干效应校正。但是,通过减去由无源光纤产生的噪声信号,可以进一步提高精度。

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