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首页> 外文期刊>Physics in medicine and biology. >Time-gated scintillator imaging for real-time optical surface dosimetry in total skin electron therapy
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Time-gated scintillator imaging for real-time optical surface dosimetry in total skin electron therapy

机译:用于实时光学表面剂量的闪烁器成像在总皮肤疗法中的实时光学表面剂量

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The purpose of this study was to measure surface dose by remote time-gated imaging of plastic scintillators. A novel technique for time-gated, intensified camera imaging of scintillator emission was demonstrated, and key parameters influencing the signal were analyzed, including distance, angle and thickness. A set of scintillator samples was calibrated by using thermo-luminescence detector response as reference. Examples of use in total skin electron therapy are described. The data showed excellent room light rejection (signal-to-noise ratio of scintillation SNR approximate to 470), ideal scintillation dose response linearity, and 2% dose rate error. Individual sample scintillation response varied by 7% due to sample preparation. Inverse square distance dependence correction and lens throughput error (8% per meter) correction were needed. At scintillator-to-source angle and observation angle 50 degrees, the radiant energy fluence error was smaller than 1%. The achieved standard error of the scintillator cumulative dose measurement compared to the TLD dose was 5%. The results from this proof-of-concept study documented the first use of small scintillator targets for remote surface dosimetry in ambient room lighting. The measured dose accuracy renders our method to be comparable to thermo-luminescent detector dosimetry, with the ultimate realization of accuracy likely to be better than shown here. Once optimized, this approach to remote dosimetry may substantially reduce the time and effort required for surface dosimetry.
机译:本研究的目的是通过塑料闪烁体的远程时间门控成像来测量表面剂量。对闪烁器发射的闪烁发射的时期进行的新颖技术进行了说明,分析了影响信号的关键参数,包括距离,角度和厚度。通过使用热发光检测器响应作为参考,通过使用热发光检测器响应校准一组闪烁体样品。描述了总皮肤疗法的用途。数据显示出优异的房间光抑制(闪烁SNR的信噪比,近似为470),理想的闪烁剂量响应线性,和2%剂量误差。由于样品制备,个体样品闪烁响应变化7%。需要逆方距离校正和镜头吞吐量误差(每米每米)校正。在闪烁体 - 源角和观察角度& 50度,辐射能量误差小于1%。与TLD剂量相比的闪烁体累积剂量测量的达到的标准误差为5%。该概念证明研究的结果记录了在环境室照明中的遥远表面剂量测定中的第一次使用小型闪烁体靶。测量剂量精度使我们的方法与热发光探测器剂量法相媲美,最终实现精度可能比此处更好。一旦优化,这种对远程剂量测定法的方法可以大大减少表面剂量测定法所需的时间和精力。

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