首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >X-ray beam design for multi-energy imaging with charge-integrating detector: A simulation study
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X-ray beam design for multi-energy imaging with charge-integrating detector: A simulation study

机译:带有电荷积分检测器的多能量成像的X射线束设计:仿真研究

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Multi-energy X-ray imaging systems have been widely used for clinical examinations. In order to enhance the imaging quality of these X-ray systems, a dual-energy system that can obtain specific information has been developed in order to discriminate different materials. Although the dual-energy system shows reliable performance for clinical applications, it is necessary to improve the method in order to minimize radiation dose, reduce projection error, and increase image contrast The purpose of this study is to develop a triple energy technique that can discriminate three materials for the purpose of enhancing imaging quality and patient safety. The X-ray system tube voltage was varied from 40 to 90 kV, and filters (that can generate three X-ray energies) were installed, consisting of pure elemental materials in foil form (including Al, Cu, I, Ba, Ce, Gd, Er, and W). The X-ray beam was evaluated with respect to mean energy ratio, contrast variation ratio, and exposure efficiency. In order to estimate the performance of the suggested technique, Monte Carlo was conducted, and the results were compared to the photon-counting method. As a result, the density maps of iodine, aluminum, and polymethyl methacrylate (PMMA) using the X-ray beam were more accurate in comparison to that obtained with the photon-counting method. According to the results, the suggested triple energy technique can improve the accuracy of the determination of thickness of density. Moreover, the X-ray beam could reduce unnecessary patient dose.
机译:多能量X射线成像系统已被广泛用于临床检查。为了提高这些X射线系统的成像质量,已经开发了可以获取特定信息的双能量系统,以区分不同的材料。尽管双能量系统在临床应用中显示出可靠的性能,但是有必要改进该方法以最小化辐射剂量,减少投影误差并增加图像对比度。本研究的目的是开发一种可以区分的三能量技术。三种材料以提高成像质量和患者安全。 X射线系统的管电压在40 kV至90 kV之间变化,并安装了过滤器(可以产生三种X射线能量),该过滤器由箔形式的纯元素材料(包括Al,Cu,I,Ba,Ce, Gd,Er和W)。评估X射线束的平均能量比,对比度变化比和曝光效率。为了评估所建议技术的性能,进行了蒙特卡洛法,并将结果与​​光子计数法进行了比较。结果,与使用光子计数法获得的密度图相比,使用X射线束的碘,铝和聚甲基丙烯酸甲酯(PMMA)的密度图更加准确。根据结果​​,建议的三重能量技术可以提高密度测定厚度的准确性。而且,X射线束可以减少不必要的患者剂量。

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