Department of Radiation Oncology, NYU Langone Medical Center, New York, NY, 10016, USA.
Department of Radiation Oncology, Erlanger Health System, Chattanooga, TN, 37403, USA.
Med Phys. 2017 Jul;44(7):3815-3820. doi: 10.1002/mp.12272. Epub 2017 May 21.
The purpose of this study was to evaluate a plastic scintillation detector for the measurement of small field dosimetry and to verify the accuracy of measured dose in comparison with Monte Carlo calculation in a heterogeneous medium.
The study is performed with CyberKnife planning and delivery system. The setup consists of a custom made solid lung phantom with the insert of an Exradin W1 scintillation detector or an Exradin A16 ion chamber. The measurement was done for a series of cone sizes from 5 mm to 60 mm, and the dose was calculated by Monte Carlo algorithm in MultiPlan workstation. The difference between measurement and calculation was reported.
Our preliminary results demonstrated the applicability of plastic scintillation detectors in the measurement of small field dosimetry in a heterogeneous medium. The difference between the calculated and measured output factors was less than 3% for all cone sizes from 60 mm down to 5 mm. Without any corrections, the measured dose from the scintillation detector calibrated to the ion chamber reading was also within 3% of the Monte Carlo calculation in the lung phantom for cone sizes 20 mm or larger.
Small field dosimetry is particularly relevant to stereotactic radiation treatment. The accuracy of dose calculation for small static beams is critical to dose planning so would potentially affect the treatment outcomes in a heterogeneous medium. Our results have shown good agreement with plastic scintillation detector in both homogeneous and heterogeneous medium.
本研究旨在评估一种用于小射野剂量测量的塑料闪烁探测器,并验证在不均匀介质中与蒙特卡罗计算相比测量剂量的准确性。
该研究使用 CyberKnife 计划和交付系统进行。该设置包括一个带有插入式 Exradin W1 闪烁探测器或 Exradin A16 离子室的定制固体肺体模。测量了一系列从 5mm 到 60mm 的圆锥体尺寸,并且在 MultiPlan 工作站中通过蒙特卡罗算法计算了剂量。报告了测量值和计算值之间的差异。
我们的初步结果表明,塑料闪烁探测器在不均匀介质中小射野剂量测量中的适用性。对于所有从 60mm 到 5mm 的圆锥体尺寸,测量和计算的输出因子之间的差异小于 3%。在没有任何校正的情况下,对于 20mm 或更大的圆锥体尺寸,从闪烁探测器测量的剂量与离子室读数校准的剂量与肺体模中的蒙特卡罗计算值相差在 3%以内。
小射野剂量特别与立体定向放射治疗相关。小静态射束的剂量计算准确性对剂量计划至关重要,因此可能会影响不均匀介质中的治疗结果。我们的结果表明,在均匀和不均匀介质中,塑料闪烁探测器具有良好的一致性。