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Novel detector design for reducing intercell x-ray cross-talk in the variable resolution x-ray CT scanner: a Monte Carlo study.

机译:减少可变分辨率X射线CT扫描仪中小区间X射线串扰的新型检测器设计:蒙特卡洛研究。

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PURPOSE: The variable resolution x-ray (VRX) CT scanner provides substantial improvement in the spatial resolution by matching the scanner's field of view (FOV) to the size of the object being imaged. Intercell x-ray cross-talk is one of the most important factors limiting the spatial resolution of the VRX detector. In this work, a new cell arrangement in the VRX detector is suggested to decrease the intercell x-ray cross-talk. The idea is to orient the detector cells toward the opening end of the detector. METHODS: Monte Carlo simulations were used for performance assessment of the oriented cell detector design. Previously published design parameters and simulation results of x-ray cross-talk for the VRX detector were used for model validation using the GATE Monte Carlo package. In the first step, the intercell x-ray cross-talk of the actual VRX detector model was calculated as a function of the FOV. The obtained results indicated an optimum cell orientation angle of 28 degrees to minimize the x-ray cross-talk in the VRX detector. Thereafter, the intercell x-ray cross-talk in the oriented cell detector was modeled and quantified. RESULTS: The intercell x-ray cross-talk in the actual detector model was considerably high, reaching up to 12% at FOVs from 24 to 38 cm. The x-ray cross-talk in the oriented cell detector was less than 5% for all possible FOVs, except 40 cm (maximum FOV). The oriented cell detector could provide considerable decrease in the intercell x-ray cross-talk for the VRX detector, thus leading to significant improvement in the spatial resolution and reduction in the spatial resolution nonuniformity across the detector length. CONCLUSIONS: The proposed oriented cell detector is the first dedicated detector design for the VRX CT scanners. Application of this concept to multislice and flat-panel VRX detectors would also result in higher spatial resolution.
机译:用途:可变分辨率X射线(VRX)CT扫描仪通过将扫描仪的视场(FOV)与要成像的物体的尺寸相匹配,大大提高了空间分辨率。小区间X射线串扰是限制VRX检测器空间分辨率的最重要因素之一。在这项工作中,建议在VRX检测器中采用新的电池布置以减少电池间X射线串扰。想法是使检测器单元朝向检测器的开口端。方法:将蒙特卡洛模拟用于定向细胞检测器设计的性能评估。使用GATE Monte Carlo软件包,将先前发布的VRX检测器的设计参数和X射线串扰的模拟结果用于模型验证。在第一步中,根据FOV计算实际VRX检测器模型的小区间X射线串扰。获得的结果表明,最佳的细胞取向角为28度,可最大程度地减少VRX检测器中的X射线串扰。此后,对定向细胞检测器中的细胞间X射线串扰进行建模和量化。结果:实际探测器模型中的小区间X射线串扰相当高,在24至38 cm的FOV处达到12%。对于所有可能的FOV,定向细胞检测器中的X射线串扰均小于5%,但40 cm(最大FOV)除外。定向的细胞检测器可以为VRX检测器显着降低细胞间X射线串扰,从而导致空间分辨率的显着提高和整个检测器长度的空间分辨率不均匀性的降低。结论:拟议的定向细胞探测器是用于VRX CT扫描仪的第一个专用探测器设计。将此概念应用于多层和平板VRX检测器还将导致更高的空间分辨率。

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