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Liquid scintillator for 2D dosimetry for high-energy photon beams

机译:用于高能光子束的2D剂量测定的液体闪烁体

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摘要

Complex radiation therapy techniques require dosimetric verification of treatment planning and delivery. The authors investigated a liquid scintillator (LS) system for application for real-time high-energy photon beam dosimetry. The system was comprised of a transparent acrylic tank filled with liquid scintillating material, an opaque outer tank, and a CCD camera. A series of images was acquired when the tank with liquid scintillator was irradiated with a 6 MV photon beam, and the light data measured with the CCD camera were filtered to correct for scattering of the optical light inside the liquid scintillator. Depth-dose and lateral profiles as well as two-dimensional (2D) dose distributions were found to agree with results from the treatment planning system. Further, the corrected light output was found to be linear with dose, dose rate independent, and is robust for single or multiple acquisitions. The short time needed for image acquisition and processing could make this system ideal for fast verification of the beam characteristics of the treatment machine. This new detector system shows a potential usefulness of the LS for 2D QA.
机译:复杂的放射治疗技术需要对治疗计划和实施进行剂量学验证。作者研究了一种适用于实时高能光子束剂量测定的液体闪烁器(LS)系统。该系统由一个装有液体闪烁材料的透明丙烯酸容器,一个不透明的外部容器和一个CCD照相机组成。当用6 MV光子束照射装有液体闪烁器的储罐时,获得了一系列图像,并过滤了用CCD摄像机测量的光数据,以校正液体闪烁器内部的光散射。发现深度剂量和横向分布以及二维(2D)剂量分布与治疗计划系统的结果一致。此外,发现校正后的光输出与剂量呈线性关系,与剂量率无关,并且对于单次或多次采集具有鲁棒性。图像采集和处理所需的时间短,可使该系统成为快速验证治疗机光束特性的理想选择。这种新的探测器系统显示了LS对于2D QA的潜在用途。

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