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单颗粒三维电子显微镜中取向分配的多分辨率方法。

A multiresolution approach to orientation assignment in 3D electron microscopy of single particles.

作者信息

Sorzano C O S, Jonić S, El-Bez C, Carazo J M, De Carlo S, Thévenaz P, Unser M

机构信息

Escuela Politécnica Superior, Universidad San Pablo-CEU, Campus Urb., Madrid, Spain.

出版信息

J Struct Biol. 2004 Jun;146(3):381-92. doi: 10.1016/j.jsb.2004.01.006.

Abstract

Three-dimensional (3D) electron microscopy (3DEM) aims at the determination of the spatial distribution of the Coulomb potential of macromolecular complexes. The 3D reconstruction of a macromolecule using single-particle techniques involves thousands of 2D projections. One of the key parameters required to perform such a 3D reconstruction is the orientation of each projection image as well as its in-plane orientation. This information is unknown experimentally and must be determined using image-processing techniques. We propose the use of wavelets to match the experimental projections with those obtained from a reference 3D model. The wavelet decomposition of the projection images provides a framework for a multiscale matching algorithm in which speed and robustness to noise are gained. Furthermore, this multiresolution approach is combined with a novel orientation selection strategy. Results obtained from computer simulations as well as experimental data encourage the use of this approach.

摘要

三维(3D)电子显微镜(3DEM)旨在确定大分子复合物库仑势的空间分布。使用单粒子技术对大分子进行三维重建涉及数千个二维投影。进行这种三维重建所需的关键参数之一是每个投影图像的取向及其面内取向。该信息在实验中是未知的,必须使用图像处理技术来确定。我们建议使用小波将实验投影与从参考三维模型获得的投影进行匹配。投影图像的小波分解为多尺度匹配算法提供了一个框架,该算法在速度和对噪声的鲁棒性方面具有优势。此外,这种多分辨率方法与一种新颖的取向选择策略相结合。从计算机模拟以及实验数据获得的结果鼓励使用这种方法。

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