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Phase-Sensitive Region-of-Interest Computed Tomography

机译:相位敏感的兴趣区域计算机断层扫描

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X-Ray Phase-Contrast Imaging (PCI) yields absorption, differential phase, and dark-field images. Computed Tomography (CT) of grating-based PCI can in principle provide high-resolution soft-tissue contrast. Recently, grating-based PCI took several hurdles towards clinical implementation by addressing, for example, acquisition speed, high X-ray energies, and system vibrations. However, a critical impediment in all grating-based systems lies in limits that constrain the grating diameter to few centimeters. In this work, we propose a system and a reconstruction algorithm to circumvent this constraint in a clinically compatible way. We propose to perform a phase-sensitive Region-of-Interest (ROI) CT within a full-field absorption CT. The biggest advantage of this approach is that it allows to correct for phase truncation artifacts, and to obtain quantitative phase values. Our method is robust, and shows high-quality results on simulated data and on a biological mouse sample. This work is a proof of concept showing the potential to use PCI in CT on large specimen, such as humans, in clinical applications.
机译:X射线相衬成像(PCI)产生吸收,差分相位和暗场图像。基于光栅的PCI的计算机断层扫描(CT)原则上可以提供高分辨率的软组织对比度。最近,基于光栅的PCI通过解决例如采集速度,高X射线能量和系统振动等问题,在临床实施方面遇到了许多障碍。然而,在所有基于光栅的系统中的关键障碍在于将光栅直径限制到几厘米的限制。在这项工作中,我们提出了一种系统和重建算法,以临床兼容的方式规避此约束。我们建议在全场吸收CT中执行相位敏感的兴趣区(ROI)CT。这种方法的最大优点是它可以校正相位截断伪像,并获得定量的相位值。我们的方法是可靠的,并且在模拟数据和生物小鼠样品上显示出高质量的结果。这项工作是一个概念证明,显示了在临床应用中在大样本(例如人)的CT中使用PCI的潜力。

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