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Advanced phase-contrast imaging using a grating interferometer

机译:使用光栅干涉仪的高级相衬成像

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Phase-sensitive X-ray imaging methods can provide substantially increased contrast over conventional absorption-based imaging, and therefore new and otherwise inaccessible information. Differential phase-contrast (DPC) imaging, which uses a grating interferometer and a phase-stepping technique, has been integrated into TOMCAT, a beamline dedicated to tomographic microscopy and coherent radiology experiments at the Swiss Light Source. Developments have been made focusing on the fast acquisition and post-processing of data to enable a high- roughput of samples, with obvious advantages, also through increasing he fficiency of the detecting system, of helping to reduce radiation dose imparted to the sample. A novel aquarium design allows a vertical rotation axis below the sample with measurements performed in aqueous environment. Optimization of the data acquisition procedure enables a full phase volume (1024 1024 pixels 1000 projections 9 phase steps, i.e. 9000 projections in total) to be acquired in 20 min (with a pixel size of 7.4 mm), and the subsequent post-processing has been integrated into the beamline pipeline for sinogram generation. Local DPC tomography allows one to focus with higher magnification on a particular region of interest of a sample without the presence of local tomography reconstruction artifacts. Furthermore, ‘widefield’ imaging is shown for DPC scans for the first time, enabling the field of view of the imaging system to be doubled for samples that are larger than the magnification allows. A case study is illustrated focusing on the visualization of soft tissue features, and particularly the substantia nigra of a rat brain. Darkfield images, based on local X-ray scattering, can also be extracted from a gratingbased DPC scan: an example of the advantages of darkfield contrast is shown and the potential of darkfield X-ray tomography is discussed.
机译:相敏X射线成像方法与常规的基于吸收的成像相比,可以提供显着增强的对比度,因此可以提供新的信息或其他无法访问的信息。使用光栅干涉仪和相位步进技术的差分相衬(DPC)成像已集成到TOMCAT中,该束线专门用于X射线断层扫描显微镜和瑞士光源的相干放射学实验。已经进行了针对快速采集和后处理数据的开发,以实现具有高优势的样品高通量,同时还通过提高检测系统的效率来帮助减少赋予样品的辐射剂量,从而具有明显的优势。新颖的水族箱设计允许在水样环境下进行测量的情况下使样品下方的垂直旋转轴旋转。数据采集​​程序的优化使得能够在20分钟(像素大小为7.4 mm)中采集完整的相体积(1024个1024像素1000个投影,共9个相位步长,即总共9000个投影),随后的后处理具有已集成到光束线管道中以生成正弦图。局部DPC层析成像可以在不存在局部层析成像重建伪影的情况下,以更高的放大倍率聚焦于样品的特定目标区域。此外,首次显示了用于DPC扫描的“宽视场”成像,这使得成像系统的视场对于倍率大于放大倍数的样本而言可以加倍。案例研究的重点是软组织特征的可视化,尤其是大鼠脑的黑质。还可以从基于光栅的DPC扫描中提取基于局部X射线散射的暗场图像:显示了暗场对比度优势的示例,并讨论了暗场X射线层析成像的潜力。

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