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首页> 外文期刊>Medical Physics >Exploration of the potential of liquid scintillators for real-time 3D dosimetry of intensity modulated proton beams.
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Exploration of the potential of liquid scintillators for real-time 3D dosimetry of intensity modulated proton beams.

机译:探索液体闪烁体对强度调制质子束进行实时3D剂量测定的潜力。

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摘要

In this study, the authors investigated the feasibility of using a 3D liquid scintillator (LS) detector system for the verification and characterization of proton beams in real time for intensity and energy-modulated proton therapy. A plastic tank filled with liquid scintillator was irradiated with pristine proton Bragg peaks. Scintillation light produced during the irradiation was measured with a CCD camera. Acquisition rates of 20 and 10 frames per second (fps) were used to image consecutive frame sequences. These measurements were then compared to ion chamber measurements and Monte Carlo simulations. The light distribution measured from the images acquired at rates of 20 and 10 fps have standard deviations of 1.1% and 0.7%, respectively, in the plateau region of the Bragg curve. Differences were seen between the raw LS signal and the ion chamber due to the quenching effects of the LS and due to the optical properties of the imaging system. The authors showed that this effect can be accounted for and corrected by Monte Carlo simulations. The liquid scintillator detector system has a good potential for performing fast proton beam verification and characterization.
机译:在这项研究中,作者研究了使用3D液体闪烁体(LS)检测器系统实时验证和表征质子束以进行强度和能量调制质子治疗的可行性。用原始质子布拉格峰辐照装满液体闪烁器的塑料罐。用CCD照相机测量在照射期间产生的闪烁光。每秒20和10帧(fps)的采集速率用于对连续的帧序列进行成像。然后将这些测量结果与离子室测量结果和蒙特卡洛模拟进行比较。从以20 fps和10 fps的速率采集的图像测量的光分布在布拉格曲线的平稳区域分别具有1.1%和0.7%的标准偏差。由于LS的猝灭效应和成像系统的光学特性,在原始LS信号和离子室之间看到了差异。作者表明,这种影响可以通过蒙特卡洛模拟来解释和纠正。液体闪烁体探测器系统具有执行快速质子束验证和表征的良好潜力。

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