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Helical x-ray differential phase contrast computed tomography

机译:螺旋X射线微分相位对比计算机断层扫描

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Helical computed tomography revolutionized the field of x-ray computed tomography two decades ago. The simultaneous translation of an image object with a standard computed tomography acquisition allows for fast volumetric scan for long image objects. X-ray phase sensitive imaging methods have been studied over the past few decades to provide new contrast mechanisms for imaging an object. A Talbot-Lau grating interferometer based differential phase contrast imaging method has recently demonstrated its potential for implementation in clinical and industrial applications. In this work, the principles of helical computed tomography are extended to differential phase contrast imaging to produce volumetric reconstructions based on fan-beam data. The method demonstrates the potential for helical differential phase contrast CT to scan long objects with relatively small detector coverage in the axial direction.
机译:螺旋计算机断层摄影术在二十年前改变了X射线计算机断层摄影术的领域。使用标准的计算机断层摄影术采集图像对象可以同时进行平移,从而可以对长图像对象进行快速体积扫描。在过去的几十年中,对X射线相位敏感成像方法进行了研究,以提供用于对物体成像的新的对比机制。基于Talbot-Lau光栅干涉仪的差分相衬成像方法最近证明了其在临床和工业应用中的应用潜力。在这项工作中,将螺旋计算机断层扫描的原理扩展到微分相衬成像,以基于扇形束数据产生体积重建。该方法证明了螺旋微分相位差CT扫描具有较长轴向检测器覆盖范围的长物体的潜力。

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