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Experimental Realisation of High-sensitivity Laboratory X-ray Grating-based Phase-contrast Computed Tomography

机译:基于高灵敏度实验室X射线光栅的相衬计算机断层扫描的实验实现

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The possibility to perform high-sensitivity X-ray phase-contrast imaging with laboratory grating-based phase-contrast computed tomography (gbPC-CT) setups is of great interest for a broad range of high-resolution biomedical applications. However, achieving high sensitivity with laboratory gbPC-CT setups still poses a challenge because several factors such as the reduced flux, the polychromaticity of the spectrum, and the limited coherence of the X-ray source reduce the performance of laboratory gbPC-CT in comparison to gbPC-CT at synchrotron facilities. In this work, we present our laboratory X-ray Talbot-Lau interferometry setup operating at 40 kVp and describe how we achieve the high sensitivity yet unrivalled by any other laboratory X-ray phase-contrast technique. We provide the angular sensitivity expressed via the minimum resolvable refraction angle both in theory and experiment, and compare our data with other differential phase-contrast setups. Furthermore, we show that the good stability of our high-sensitivity setup allows for tomographic scans, by which even the electron density can be retrieved quantitatively as has been demonstrated in several preclinical studies.
机译:利用实验室基于光栅的相衬计算机断层扫描(gbPC-CT)设置来执行高灵敏度X射线相衬成像的可能性,对于各种高分辨率的生物医学应用都引起了极大兴趣。但是,通过实验室gbPC-CT装置实现高灵敏度仍然带来挑战,因为相比之下,通量降低,光谱的多色性以及X射线源的有限相干性等几个因素降低了实验室gbPC-CT的性能同步加速器设施中的gbPC-CT。在这项工作中,我们介绍了在40 kVp下运行的实验室X射线Talbot-Lau干涉仪设置,并描述了我们如何实现高灵敏度,这是其他任何实验室X射线相衬技术都无法比拟的。我们提供了在理论上和实验上均通过最小可分辨折射角表示的角度灵敏度,并将我们的数据与其他差分相衬设置进行了比较。此外,我们表明,我们的高灵敏度设置具有良好的稳定性,可以进行断层扫描,甚至可以像一些临床前研究中所证实的那样,对电子密度进行定量检索。

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