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An optical method for three-dimensional dosimetry

机译:三维剂量学的光学方法

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摘要

Accurate determination of the spatial distribution of the absorbed dose of ionising radiation plays an important role in radiotherapy, industrial radiation processing and many other applications. Computer calculations have frequently been used to estimate three-dimensional (3D) dose distributions in complex geometries and it becomes important to validate these by accurate 3D measurements. For this purpose we have been investigating the use of gelatin gels loaded with a modified Fricke solution which are pale orange in appearance and which, upon irradiation, become increasingly purple when viewed in normal light. This ferrous sulphate xylenol orange in gelatin gel (FXG) system displays very good properties, such a sensitivity, linearity and dynamic range, that make it suitable for 3D dosimetry applications. A high-speed optical tomography readout technique has been developed enabling two-dimensional projections of optical absorption data to be recorded rapidly. From these data the 3D absorbed dose distribution can quickly be derived with minimal degradation due to ion diffusion.
机译:准确确定电离辐射吸收剂量的空间分布在放射治疗,工业辐射处理和许多其他应用中起着重要作用。经常使用计算机计算来估计复杂几何形状中的三维(3D)剂量分布,通过准确的3D测量来验证这些剂量分布变得很重要。为此,我们一直在研究使用明胶凝胶,该明胶凝胶中装有改性的Fricke溶液,该溶液外观为淡橙色,在辐射下,在正常光线下观察时会逐渐变紫色。这种明胶凝胶(FXG)系统中的硫酸亚铁二甲苯酚橙显示出非常好的特性,例如灵敏度,线性和动态范围,使其适合3D剂量测定应用。已经开发了一种高速光学层析成像读出技术,该技术使得能够快速记录光学吸收数据的二维投影。从这些数据可以迅速得出3D吸收剂量分布,并且由于离子扩散而导致的降解最小。

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