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Three-dimensional single-cell imaging with X-ray waveguides in the holographic regime

机译:全息领域中具有X射线波导的三维单细胞成像

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摘要

X-ray tomography at the level of single biological cells is possible in a low-dose regime, based on full-field holographic recordings, with phase contrast originating from free-space wave propagation. Building upon recent progress in cellular imaging based on the illumination by quasi-point sources provided by X-ray waveguides, here this approach is extended in several ways. First, the phase-retrieval algorithms are extended by an optimized deterministic inversion, based on a multi-distance recording. Second, different advanced forms of iterative phase retrieval are used, operational for single-distance and multi-distance recordings. Results are compared for several different preparations of macrophage cells, for different staining and labelling. As a result, it is shown that phase retrieval is no longer a bottleneck for holographic imaging of cells, and how advanced schemes can be implemented to cope also with high noise and inconsistencies in the data.
机译:基于全场全息记录,在低剂量方案中,单个生物细胞水平的X射线断层扫描是可能的,其相位差源自自由空间波的传播。在基于X射线波导提供的准点光源照明的细胞成像的最新进展的基础上,此方法以几种方式扩展。首先,基于多距离记录,通过优化的确定性反演扩展了相位检索算法。其次,使用了不同的迭代相位检索高级形式,可用于单距离和多距离记录。比较了几种不同制备的巨噬细胞,不同染色和标记的结果。结果表明,相位检索不再是细胞全息成像的瓶颈,并且如何实现高级方案以解决高噪声和数据不一致的问题。

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