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一种基于透射电子图像进行埃瓦尔德球曲率校正的高分辨率三维重建方法。

A Method for High-Resolution Three-Dimensional Reconstruction with Ewald Sphere Curvature Correction from Transmission Electron Images.

作者信息

Gureyev Timur E, Paganin David M, Brown Hamish G, Quiney Harry M, Allen Leslie J

机构信息

ARC Centre in Advanced Molecular Imaging, School of Physics, The University of Melbourne, Parkville, VIC3010, Australia.

School of Physics and Astronomy, Monash University, Clayton, VIC3800, Australia.

出版信息

Microsc Microanal. 2022 Apr 29:1-17. doi: 10.1017/S1431927622000630.

Abstract

A method for three-dimensional reconstruction of objects from defocused images collected at multiple illumination directions in high-resolution transmission electron microscopy is presented. The method effectively corrects for the Ewald sphere curvature by taking into account the in-particle propagation of the electron beam. Numerical simulations demonstrate that the proposed method is capable of accurately reconstructing biological molecules or nanoparticles from high-resolution defocused images under conditions achievable in single-particle electron cryo-microscopy or electron tomography with realistic radiation doses, non-trivial aberrations, multiple scattering, and other experimentally relevant factors. The physics of the method is based on the well-known Diffraction Tomography formalism, but with the phase-retrieval step modified to include a conjugation of the phase (i.e., multiplication of the phase by a negative constant). At each illumination direction, numerically backpropagating the beam with the conjugated phase produces maximum contrast at the location of individual atoms in the molecule or nanoparticle. The resultant algorithm, Conjugated Holographic Reconstruction, can potentially be incorporated into established software tools for single-particle analysis, such as, for example, RELION or FREALIGN, in place of the conventional contrast transfer function correction procedure, in order to account for the Ewald sphere curvature and improve the spatial resolution of the three-dimensional reconstruction.

摘要

本文提出了一种在高分辨率透射电子显微镜中,根据在多个照明方向收集的散焦图像对物体进行三维重建的方法。该方法通过考虑电子束在粒子内的传播,有效地校正了埃瓦尔德球曲率。数值模拟表明,该方法能够在单粒子电子冷冻显微镜或电子断层扫描可实现的条件下,利用实际辐射剂量、显著像差、多次散射和其他实验相关因素,从高分辨率散焦图像中准确重建生物分子或纳米颗粒。该方法的物理原理基于著名的衍射断层扫描形式,但相位恢复步骤经过修改,包括相位共轭(即相位乘以负常数)。在每个照明方向上,用共轭相位对电子束进行数值反向传播,可在分子或纳米颗粒中单个原子的位置产生最大对比度。由此产生的算法——共轭全息重建算法,有可能被纳入现有的单粒子分析软件工具中,例如RELION或FREALIGN,以取代传统的对比度传递函数校正程序,从而考虑埃瓦尔德球曲率并提高三维重建的空间分辨率。

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