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用于X射线成像的微柱状碘化铯闪烁体的光输出测量与计算模型

Light output measurements and computational models of microcolumnar CsI scintillators for x-ray imaging.

作者信息

Nillius Peter, Klamra Wlodek, Sibczynski Pawel, Sharma Diksha, Danielsson Mats, Badano Aldo

机构信息

Royal Institute of Technology (KTH), Stockholm SE-100 44, Sweden.

National Centre for Nuclear Research, Otwock 05-400, Poland.

出版信息

Med Phys. 2015 Feb;42(2):600-605. doi: 10.1118/1.4905096.

Abstract

PURPOSE

The authors report on measurements of light output and spatial resolution of microcolumnar CsI:Tl scintillator detectors for x-ray imaging. In addition, the authors discuss the results of simulations aimed at analyzing the results of synchrotron and sealed-source exposures with respect to the contributions of light transport to the total light output.

METHODS

The authors measured light output from a 490-μm CsI:Tl scintillator screen using two setups. First, the authors used a photomultiplier tube (PMT) to measure the response of the scintillator to sealed-source exposures. Second, the authors performed imaging experiments with a 27-keV monoenergetic synchrotron beam and a slit to calculate the total signal generated in terms of optical photons per keV. The results of both methods are compared to simulations obtained with hybridmantis, a coupled x-ray, electron, and optical photon Monte Carlo transport package. The authors report line response (LR) and light output for a range of linear absorption coefficients and describe a model that fits at the same time the light output and the blur measurements. Comparing the experimental results with the simulations, the authors obtained an estimate of the absorption coefficient for the model that provides good agreement with the experimentally measured LR. Finally, the authors report light output simulation results and their dependence on scintillator thickness and reflectivity of the backing surface.

RESULTS

The slit images from the synchrotron were analyzed to obtain a total light output of 48 keV while measurements using the fast PMT instrument setup and sealed-sources reported a light output of 28 keV . The authors attribute the difference in light output estimates between the two methods to the difference in time constants between the camera and PMT measurements. Simulation structures were designed to match the light output measured with the camera while providing good agreement with the measured LR resulting in a bulk absorption coefficient of 5 × 10 μm .

CONCLUSIONS

The combination of experimental measurements for microcolumnar CsI:Tl scintillators using sealed-sources and synchrotron exposures with results obtained via simulation suggests that the time course of the emission might play a role in experimental estimates. The procedure yielded an experimentally derived linear absorption coefficient for microcolumnar Cs:Tl of 5 × 10 μm . To the author's knowledge, this is the first time this parameter has been validated against experimental observations. The measurements also offer insight into the relative role of optical transport on the effective optical yield of the scintillator with microcolumnar structure.

摘要

目的

作者报告了用于X射线成像的微柱状CsI:Tl闪烁体探测器的光输出和空间分辨率测量结果。此外,作者还讨论了模拟结果,旨在分析同步加速器和密封源曝光结果中光传输对总光输出的贡献。

方法

作者使用两种设置测量了490μm厚的CsI:Tl闪烁体屏幕的光输出。首先,作者使用光电倍增管(PMT)测量闪烁体对密封源曝光的响应。其次,作者使用27keV单能同步加速器光束和狭缝进行成像实验,以计算每keV光学光子产生的总信号。将这两种方法的结果与使用hybridmantis获得的模拟结果进行比较,hybridmantis是一个耦合X射线、电子和光学光子的蒙特卡罗传输软件包。作者报告了一系列线性吸收系数下的线响应(LR)和光输出,并描述了一个同时拟合光输出和模糊测量结果的模型。将实验结果与模拟结果进行比较,作者获得了该模型的吸收系数估计值,该估计值与实验测量的LR具有良好的一致性。最后,作者报告了光输出模拟结果及其对闪烁体厚度和背面反射率的依赖性。

结果

对同步加速器的狭缝图像进行分析,得到总光输出为48keV,而使用快速PMT仪器设置和密封源进行的测量报告光输出为28keV。作者将两种方法之间光输出估计值的差异归因于相机和PMT测量之间时间常数的差异。设计模拟结构以匹配相机测量的光输出,同时与测量的LR具有良好的一致性,从而得到体吸收系数为5×10μm。

结论

使用密封源和同步加速器曝光对微柱状CsI:Tl闪烁体进行实验测量,并结合模拟结果表明,发射的时间过程可能在实验估计中起作用。该过程得出微柱状Cs:Tl的实验推导线性吸收系数为5×10μm。据作者所知,这是该参数首次通过实验观测得到验证。这些测量还深入了解了光学传输对具有微柱状结构的闪烁体有效光学产率的相对作用。

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