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PVA-GTA Fricke gel dosimeters exposed to clinical photons beams: Nuclear Magnetic Resonance Relaxometry and Imaging

机译:暴露于临床光子束的PVA-GTA Fricke凝胶剂量计:核磁共振弛豫法和成像

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摘要

Fricke Gel (FXGs) dosimetric system is based on the radiation induced oxidation of ferrous to ferric ions.udThe application of Fricke gels for ionizing radiation dosimetry is continuously increasing worldwide due to their many favorable properties. However, one of their shortcomings is that ferrous and ferric ions diffuse in the gel matrix. To maintain the spatial integrity of the dose distribution, Fricke gels must be undergoing measurement within a few hours of their irradiation, so that ferric ions remain close to their point of production. Thus, the spatial integrity of the dose distribution in the Fricke gel is maintained (Schreiner, 2015).udThe gel matrix also contributes to the oxidation of ferrous ions during irradiation, increasing the chemical yield of ferric ions in aqueous solution and increasing the sensitivity of the dosimeter.udThe oxidation of ferrous ions also causes a reduction of the longitudinal nuclear magnetic relaxation time T1 which can be measured by means of Nuclear Magnetic Resonance Relaxometry (NMR) and Magnetic Resonance Imaging (MRI) (Marrale, 2014).udThe results here presented are related to an experimental investigation conducted on Fricke Gels characterized by gelatinous matrix of Polyvinyl alcohol (PVA) cross-linked with a Glutaraldehyde (GTA) (Marini, 2016).udThe main dosimetric features of the NMR signal were investigated. The gels were irradiated in the clinical dose range between 0 and 20 Gy. In order to assess the photon sensitivity we analyzed the dependence of NMR relaxation times on radiation dose with varying ferrous ammonium sulfate content inside FXGs. Furthermore, signal stability was followed for several days after irradiation.udThese measurements were preliminary to MRI analysis which can permit 3D dose mapping. In order to maximize the MRI response a systematic study was performed to optimize acquisition sequences and parameters. In particular, we analyzed for inversion recovery sequences the dependence of MRI signal on the repetition time TR and on the inversion time TI.udThe dose calibration curves are reported and discussed from the point of view of the dosimeter use in clinical radiotherapy. This work has highlighted that the optimization of additives inside gel matrix is fundamental for maximizing photon sensitivity of these detectors. We can conclude that FXG dosimeters with optimal ferrous ammonium sulfate content can be regarded as a valuable dosimetric tool to achieve fast information on spatial dose distribution.
机译:Fricke凝胶(FXGs)剂量学系统基于辐射诱导的亚铁到三价铁离子的氧化。 udk Fricke凝胶用于电离辐射剂量学的应用由于其许多有利的特性而在世界范围内不断增加。然而,它们的缺点之一是亚铁离子和铁离子在凝胶基质中扩散。为了保持剂量分布的空间完整性,Fricke凝胶必须在辐照后的几个小时内进行测量,以使铁离子保持在接近其产生点的位置。因此,Fricke凝胶中剂量分布的空间完整性得以维持(Schreiner,2015年)。 ud凝胶基质还有助于辐射过程中亚铁离子的氧化,增加水溶液中三价铁离子的化学产率并提高灵敏度 ud亚铁离子的氧化也会导致纵向核磁共振弛豫时间T1的减少,这可以通过核磁共振弛豫法(NMR)和磁共振成像(MRI)进行测量(Marrale,2014年)。 ud本文给出的结果与对Fricke凝胶进行的实验研究有关,Fricke凝胶的特征是与戊二醛(GTA)交联的聚乙烯醇(PVA)的凝胶状基质(Marini,2016)。 ud研究了NMR信号的主要剂量特征。在0至20 Gy的临床剂量范围内辐照凝胶。为了评估光子灵敏度,我们分析了FXG内部硫酸亚铁铵含量不同时NMR弛豫时间对辐射剂量的依赖性。此外,在辐照后几天内跟踪信号稳定性。 ud这些测量是MRI分析的初步准备,可以进行3D剂量映射。为了最大化MRI反应,进行了系统研究以优化采集序列和参数。特别是,我们分析了MRI信号对重复恢复时间TR和翻转时间TI的依赖性,确定了反转恢复序列。剂量校准曲线是从剂量计在临床放疗中使用的角度进行报道和讨论的。这项工作强调了凝胶基质内部添加剂的优化对于最大化这些检测器的光子灵敏度至关重要。我们可以得出结论,具有最佳硫酸亚铁铵含量的FXG剂量计可以被视为实现空间剂量分布快速信息的有价值的剂量学工具。

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