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Evaluation of off-axis wedge correction factor using diode dosimeters for estimation of delivered dose in external radiotherapy

机译:使用二极管剂量计评估离轴楔形校正因子,以估算外部放射治疗的输送剂量

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摘要

An in vivo dosimetry system, using p-type diode dosimeters, was characterized for clinical applications of treatment machines ranging in megavoltage energies. This paper investigates two different models of diodes for externally wedged beams and explains a new algorithm for the calculation of the target dose at various tissue depths in external radiotherapy. The values of off-axis wedge correction factors were determined at two different positions in the wedged (toward the thick and thin edges) and in the non-wedged directions on entrance and exit surfaces of a polystyrene phantom in 60Co and 6 MV photon beams. Depth transmission was defined on the entrance and exit surfaces to obtain the off-axis wedge correction factor at any depth. As the sensitivity of the diodes depends on physical characteristics [field size, source–skin distance (SSD), thickness, backscatter], correction factors were applied to the diode reading when measuring conditions different from calibration situations. The results indicate that needful correction factors for 60Co wedged photons are usually larger than those for 6 MV wedged photon beams. In vivo dosimetry performed with the proposed algorithms at externally wedged beams has negligible probable errors (less than 0.5&) and is a reliable method for patient dose control.
机译:使用p型二极管剂量计的体内剂量测定系统已被表征用于兆伏能量范围内的治疗机的临床应用。本文研究了用于外部楔形光束的二极管的两种不同模型,并解释了一种用于在外部放射治疗中计算不同组织深度的目标剂量的新算法。离轴楔形校正因子的值是在60Co和6 MV光子束的聚苯乙烯幻象的入射和出射表面的楔形中的两个不同位置(朝着厚和薄的边缘)和非楔形方向上确定的。在入口和出口表面定义了深度传输,以获取任何深度的离轴楔形校正因子。由于二极管的灵敏度取决于物理特性[场大小,源-皮肤距离(SSD),厚度,反向散射],因此在测量条件不同于校准情况时,将校正因子应用于二极管读数。结果表明,60Co楔形光子所需的校正因子通常大于6 MV楔形光子束的校正因子。用所提出的算法在外部楔形梁上进行的体内剂量测定具有可忽略的可能误差(小于0.5%),并且是用于患者剂量控制的可靠方法。

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