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A Comprehensive Evaluation of NIPAM Polymer Gel Dosimeters on Three Orthogonal Planes and Temporal Stability Analysis

机译:NIPAM聚合物凝胶剂量计在三个正交平面上的综合评估和时间稳定性分析

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摘要

Polymer gel dosimeters have been proven useful for dose evaluation in radiotherapy treatments. Previous studies have demonstrated that using a polymer gel dosimeter requires a 24 h reaction time to stabilize and further evaluate the measured dose distribution in two-dimensional dosimetry. In this study, the short-term stability within 24 h and feasibility of N-isopropylacrylamide (NIPAM) polymer gel dosimeters for use in three-dimensional dosimetry were evaluated using magnetic resonance imaging (MRI). NIPAM gels were used to measure the dose volume in a clinical case of intensity-modulated radiation therapy (IMRT). For dose readouts, MR images of irradiated NIPAM gel phantoms were acquired at 2, 5, 12, and 24 h after dose delivery. The mean standard errors of dose conversion from using dose calibration curves (DRC) were calculated. The measured dose volumes at the four time points were compared with those calculated using a treatment planning system (TPS). The mean standard errors of the dose conversion from using the DRCs were lower than 1 Gy. Mean pass rates of 2, 5, 12, and 24 h axial dose maps calculated using gamma evaluation with 3% dose difference and 3 mm distance-to-agreement criteria were 83.5% ± 0.9%, 85.9% ± 0.6%, 98.7% ± 0.3%, and 98.5% ± 0.9%, respectively. Compared with the dose volume histogram of the TPS, the absolute mean relative volume differences of the 2, 5, 12, and 24 h measured dose volumes were lower than 1% for the irradiated region with an absorbed dose higher than 2.8 Gy. It was concluded that a 12 h reaction time was sufficient to acquire accurate dose volume using the NIPAM gels with MR readouts.
机译:业已证明,聚合物凝胶剂量计可用于放射治疗中的剂量评估。先前的研究表明,使用聚合物凝胶剂量计需要24小时的反应时间才能稳定并进一步评估二维剂量法中测得的剂量分布。在这项研究中,使用磁共振成像(MRI)评估了24小时内的短期稳定性以及用于三维剂量测定的N-异丙基丙烯酰胺(NIPAM)聚合物凝胶剂量计的可行性。 NIPAM凝胶用于测量强度调制放射治疗(IMRT)临床情况下的剂量体积。对于剂量读数,在剂量输送后的2、5、12和24小时获取了受照NIPAM凝胶体模的MR图像。使用剂量校准曲线(DRC)计算了剂量转换的平均标准误差。将四个时间点的测量剂量与使用治疗计划系统(TPS)计算的剂量进行比较。使用DRC进行剂量转换的平均标准误差低于1 Gy。使用具有3%剂量差异和3 mm协议距离标准的伽马评估计算出的2、5、12和24小时轴向剂量图的平均通过率分别为83.5%±0.9%,85.9%±0.6%,98.7%±分别为0.3%和98.5%±0.9%。与TPS的剂量体积直方图相比,对于2,5,12和24 h所测量的剂量区域,在吸收剂量大于2.8 Gy的受辐照区域,其绝对平均相对体积差异小于1%。结论是,使用带有MR读数的NIPAM凝胶,12小时的反应时间足以获得准确的剂量体积。

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