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High Energy X-ray Phase-Contrast Imaging Using Glancing Angle Grating Interferometers

机译:使用掠角光栅干涉仪的高能X射线相衬成像

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The Talbot-Lau grating interferometer enables refraction based imaging with conventional X-ray tubes, offering the promise of a new medical imaging modality. The fringe contrast of the normal incidence interferometer is however insufficient at the >40 keV photon energies needed to penetrate thick body parts, because the thin absorption gratings used in the interferometer become transparent. To solve this problem we developed a new interferometer design using gratings at glancing incidence. For instance, using 120 urn thick Au gratings at 10° incidence we increased several fold the interferometer contrast for a spectrum with ~58 keV mean energy. Tests of DPC-CT at 60-80kVp using glancing angle interferometers and medically relevant samples indicate high potential for clinical applications. A practical design for a slot-scan DPC-CT system for the knee is proposed, using glancing angle gratings tiled on a single substrate.
机译:Talbot-Lau光栅干涉仪可通过常规X射线管实现基于折射的成像,从而有望实现新的医学成像方式。但是,法线入射干涉仪的条纹对比度在穿透厚的身体部位所需的> 40 keV光子能量时是不够的,因为干涉仪中使用的薄吸收光栅变得透明。为了解决这个问题,我们开发了一种使用光栅的新型干涉仪设计,其入射角一目了然。例如,对于入射角约为58keV的光谱,使用入射角为10°的120微米厚的金光栅,我们将干涉仪的对比度提高了几倍。使用掠角干涉仪和医学相关样品在60-80kVp进行DPC-CT测试,表明其在临床应用中具有很大的潜力。提出了一种用于膝关节的缝隙扫描DPC-CT系统的实用设计,它使用平铺在单个基板上的掠角光栅。

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