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用于三维剂量测定的MAGIC型聚合物凝胶:调强放射治疗验证

MAGIC-type polymer gel for three-dimensional dosimetry: intensity-modulated radiation therapy verification.

作者信息

Gustavsson Helen, Karlsson Anna, Bäck Sven A J, Olsson Lars E, Haraldsson Pia, Engström Per, Nyström Håkan

机构信息

Department of Radiation Physics, Land University, Malmö University Hospital, SE-205 02, Malmö, Sweden.

出版信息

Med Phys. 2003 Jun;30(6):1264-71. doi: 10.1118/1.1576392.

Abstract

A new type of polymer gel dosimeter, which responds well to absorbed dose even when manufactured in the presence of normal levels of oxygen, was recently described by Fong et al. [Phys. Med. Biol. 46, 3105-3113 (2001)] and referred to by the acronym MAGIC. The aim of this study was to investigate the feasibility of using this new type of gel for intensity-modulated radiation therapy (IMRT) verification. Gel manufacturing was carried out in room atmosphere under normal levels of oxygen. IMRT inverse treatment planning was performed using the Helios software. The gel was irradiated using a linear accelerator equipped with a dynamic multileaf collimator, and intensity modulation was achieved using sliding window technique. The response to absorbed dose was evaluated using magnetic resonance imaging. Measured and calculated dose distributions were compared with regard to in-plane isodoses and dose volume histograms. In addition, the spatial and dosimetric accuracy was evaluated using the gamma formalism. Good agreement between calculated and measured data was obtained. In the isocenter plane, the 70% and 90% isodoses acquired using the different methods are mostly within 2 mm, with up to 3 mm disagreement at isolated points. For the planning target volume (PTV), the calculated mean relative dose was 96.8 +/- 2.5% (1 SD) and the measured relative mean dose was 98.6 +/- 2.2%. Corresponding data for an organ at risk was 34.4 +/- 0.9% and 32.7 +/- 0.7%, respectively. The gamma criterion (3 mm spatial/3% dose deviation) was fulfilled for 94% of the pixels in the target region. Discrepancies were found in hot spots the upper and lower parts of the PTV, where the measured dose was up to 11% higher than calculated. This was attributed to sub optimal scatter kernels used in the treatment planning system dose calculations. Our results indicate great potential for IMRT verification using MAGIC-type polymer gel.

摘要

Fong等人[《物理医学与生物学》46, 3105 - 3113 (2001)]最近描述了一种新型聚合物凝胶剂量计,即使在正常氧气水平下制造,它对吸收剂量也有良好响应,并简称为MAGIC。本研究的目的是探讨使用这种新型凝胶进行调强放射治疗(IMRT)验证的可行性。凝胶制造在室内正常氧气水平的大气环境中进行。使用Helios软件进行IMRT逆向治疗计划。凝胶使用配备动态多叶准直器的直线加速器进行照射,并采用滑动窗口技术实现强度调制。使用磁共振成像评估对吸收剂量的响应。将测量和计算的剂量分布在平面等剂量线和剂量体积直方图方面进行比较。此外,使用γ形式主义评估空间和剂量学准确性。计算数据与测量数据之间取得了良好的一致性。在等中心平面,使用不同方法获得的70%和90%等剂量线大多在2毫米以内,在孤立点处最多有3毫米的差异。对于计划靶体积(PTV),计算的平均相对剂量为96.8±2.5%(1标准差),测量的相对平均剂量为98.6±2.2%。对于危及器官的相应数据分别为34.4±0.9%和32.7±0.7%。目标区域94%的像素满足γ标准(3毫米空间/3%剂量偏差)。在PTV的上部和下部热点区域发现了差异,其中测量剂量比计算剂量高多达11%。这归因于治疗计划系统剂量计算中使用的次优散射核。我们的结果表明使用MAGIC型聚合物凝胶进行IMRT验证具有很大潜力。

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