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首页> 外文期刊>Ultramicroscopy >Breaking the Crowther limit: Combining depth-sectioning and tilt tomography for high-resolution, wide-field 3D reconstructions
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Breaking the Crowther limit: Combining depth-sectioning and tilt tomography for high-resolution, wide-field 3D reconstructions

机译:突破Crowther极限:将深度剖分和倾斜层析成像相结合,可实现高分辨率,宽视场3D重建

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摘要

To date, high-resolution (< 1 nm) imaging of extended objects in three-dimensions (3D) has not been possible. A restriction known as the Crowther criterion forces a tradeoff between object size and resolution for 3D reconstructions by tomography. Further, the sub-Angstrom resolution of aberration-corrected electron microscopes is accompanied by a greatly diminished depth of field, causing regions of larger specimens ( > 6 nm) to appear blurred or missing. Here we demonstrate a three-dimensional imaging method that overcomes both these limits by combining through-focal depth sectioning and traditional tilt-series tomography to reconstruct extended objects, with high-resolution, in all three dimensions. The large convergence angle in aberration corrected instruments now becomes a benefit and not a hindrance to higher quality reconstructions. A through-focal reconstruction over a 390 nm 3D carbon support containing over 100 dealloyed and nanoporous PtCu catalyst particles revealed with sub-nanometer detail the extensive and connected interior pore structure that is created by the dealloying instability.
机译:迄今为止,还无法对三维(3D)扩展对象进行高分辨率(<1 nm)成像。称为Crowther准则的限制会迫使对象大小和分辨率在X射线断层扫描的3D重建之间进行权衡。此外,像差校正电子显微镜的亚埃分辨率伴随着景深的大大减小,从而导致较大样本(> 6 nm)的区域显得模糊或缺失。在这里,我们展示了一种三维成像方法,该方法通过结合焦点深度剖分和传统的倾斜系列层析成像技术来克服所有这些限制,从而在所有三个维度上以高分辨率重建扩展对象。像差校正仪器中的大会聚角现在成为优点,而不是更高质量重建的障碍。在390 nm 3D碳载体上进行的焦点重建,包含100多个脱合金和纳米孔PtCu催化剂颗粒,亚纳米级揭示了由脱合金不稳定性产生的广泛且连通的内部孔结构。

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