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Whole-cell phase contrast imaging at the nanoscale using Fresnel Coherent Diffractive Imaging Tomography

机译:使用菲涅耳相干衍射成像层析成像技术在纳米级进行全细胞相衬成像

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X-ray tomography can provide structural information of whole cells in close to their native state. Radiation-induced damage, however, imposes a practical limit to image resolution, and as such, a choice between damage, image contrast, and image resolution must be made. New coherent diffractive imaging techniques, such Fresnel Coherent Diffractive Imaging (FCDI), allows quantitative phase information with exceptional dose efficiency, high contrast, and nano-scale resolution. Here we present three-dimensional quantitative images of a whole eukaryotic cell by FCDI at a spatial resolution below 70?nm with sufficient phase contrast to distinguish major cellular components. From our data, we estimate that the minimum dose required for a similar resolution is close to that predicted by the Rose criterion, considerably below accepted estimates of the maximum dose a frozen-hydrated cell can tolerate. Based on the dose efficiency, contrast, and resolution achieved, we expect this technique will find immediate applications in tomographic cellular characterisation.
机译:X射线断层扫描可以提供接近原始状态的整个细胞的结构信息。然而,辐射引起的损坏对图像分辨率施加了实际限制,因此,必须在损坏,图像对比度和图像分辨率之间进行选择。菲涅耳相干衍射成像(FCDI)等新的相干衍射成像技术可提供定量相位信息,并具有出色的剂量效率,高对比度和纳米级分辨率。在这里,我们通过FCDI提出了一个完整的真核细胞三维定量图像,其空间分辨率低于70?nm,具有足够的相衬以区分主要的细胞成分。根据我们的数据,我们估计达到类似分辨率所需的最小剂量接近罗斯标准所预测的最小剂量,远低于公认的冷冻水合细胞可以耐受的最大剂量估计值。基于所获得的剂量效率,对比度和分辨率,我们期望该技术将在断层摄影细胞表征中找到直接的应用。

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