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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >A preliminary investigation of the potential of phase contrast x-ray imaging in the field of homeland security
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A preliminary investigation of the potential of phase contrast x-ray imaging in the field of homeland security

机译:相位对比X射线成像在国土安全领域的潜力的初步调查

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A novel technique based on coded apertures which makes x-ray phase contrast imaging (XPCi) feasible with conventional sources has been recently developed at University College London. This technique is expected to enable for the first time real-world applications of XPCi in fields as diverse as medical, biological and scientific imaging, industrial inspections and security scans. This paper focuses on XPCi applications in homeland security. A simulation of coded-aperture XPCi, which was experimentally validated in a previous work, has been used to produce images of potential threat objects, and to quantitatively assess detail visibility improvements in terms of contrast and signal-to-noise ratio over conventional techniques based on absorption. Free-space propagation phase contrast images taken with synchrotron radiation (SR) are also presented. Although not directly related to the coded-aperture technique used in the simulation, these can be considered indicative of the image quality that would be made available through coded-aperture XPCi with conventional sources: previous studies have demonstrated that this technique provides image enhancements compatible with those obtained with free-space propagation phase contrast with SR. Substantial enhancements in image quality and improvement in detail detectability in cluttered environments are demonstrated in this way. The results presented in this study and the software used to generate them will provide the basis for the design and realization of a dedicated imaging prototype.
机译:伦敦大学学院最近开发了一种基于编码孔径的新颖技术,该技术使得使用常规光源进行X射线相衬成像(XPCi)成为可能。预计该技术将首次使XPCi在医疗,生物学和科学成像,工业检查和安全扫描等领域的实际应用成为可能。本文重点介绍国土安全中的XPCi应用程序。编码孔径XPCi的仿真已在先前的工作中进行了实验验证,已用于生成潜在威胁对象的图像,并定量地评估了基于常规技术的对比度和信噪比方面的细节可见性改进吸收。还展示了用同步加速器辐射(SR)拍摄的自由空间传播相衬图像。尽管与模拟中使用的编码孔径技术没有直接关系,但可以将其视为通过常规来源的编码孔径XPCi可获得的图像质量的指示:先前的研究表明,该技术可提供与用自由空间传播相位获得的那些与SR形成对比。以此方式证明了图像质量的显着提高以及杂乱环境中细节检测能力的提高。这项研究中提出的结果以及用于生成结果的软件将为专用成像原型的设计和实现提供基础。

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