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Quantitative investigation of phase retrieval from X-ray phase-contrast tomographic images

机译:X射线相衬断层扫描图像的相位检索的定量研​​究

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X-ray phase-contrast tomographic microimaging is a powerful tool to reveal the internal structure of opaque soft-matter objects that are not easily seen in standard absorption contrast. In such low Z materials, the phase shift of X-rays transmitted can be important as compared to the absorption. An easy experimental set up that exploits refractive contrast formation can deliver images that are providing detailed structural information. Applications are abundant in fields including polymer science and engineering, biology, biomedical engineering, life sciences, zoology, water treatment and filtration, membrane science, and microanomanufacturing. However, available software for absorptive contrast tomography cannot be simply used for structure retrieval as the contrast forming effect is different. In response, CSIRO has developed a reconstruction code for phase-contrast imaging. Here, we present a quantitative comparison of a micro phantom manufactured at SSLS with the object reconstructed by the code using X-ray images taken at SSLS. The phantom is a 500 μm thick 800 μm diameter cylindrical disk of SU-8 resist having various eccentric cylindrical bores with diameters ranging from 350 μm to 40 μm. Comparison of these parameters that are well known from design and post-manufacturing measurements with reconstructed ones gives encouraging results.
机译:X射线相衬断层扫描显微成像是一种功能强大的工具,可揭示不透明软物质物体的内部结构,这些物体在标准吸收对比中不易看到。在这种低Z材料中,与吸收相比,透射的X射线的相移可能很重要。利用屈光对比形成的简单实验装置可以提供提供详细结构信息的图像。应用领域广泛,包括聚合物科学与工程,生物学,生物医学工程,生命科学,动物学,水处理与过滤,膜科学以及微/纳米制造。但是,由于对比度形成效果不同,因此用于吸收性对比层析成像的可用软件不能简单地用于结构检索。作为响应,CSIRO开发了用于相衬成像的重建代码。在这里,我们介绍了使用SSLS拍摄的X射线图像对SSLS制造的微型体模与通过代码重建的对象进行的定量比较。体模是直径为500μm的800μm直径的SU-8抗蚀剂圆柱盘,具有多个偏心圆柱孔,直径范围从350μm到40μm。将设计和制造后测量中众所周知的这些参数与重构后的参数进行比较,可以得出令人鼓舞的结果。

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