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Three-dimensional reconstruction methods in Single Particle Analysis from transmission electron microscopy data

机译:基于透射电子显微镜数据的单粒子分析中的三维重建方法

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摘要

The Transmission Electron Microscope provides two-dimensional (2D) images of the specimens under study. However, the architecture of these specimens is defined in a three-dimensional (3D) coordinate space, in volumetric terms, making the direct microscope output somehow "short" in terms of dimensionality. This situation has prompted the development of methods to quantitatively estimate 3D volumes from sets of 2D images, which are usually referred to as "three-dimensional reconstruction methods". These 3D reconstruction methods build on four considerations: (1) The relationship between the 2D images and the 3D volume must be of a particularly simple type, (2) many 2D images are needed to gain 3D volumetric information, (3) the 2D images and the 3D volume have to be in the same coordinate reference frame and (4), in practical terms, the reconstructed 3D volume will only be an approximation to the original 3D volume which gave raise to the 2D projections. In this work we will adopt a quite general view, trying to address a large community of interested readers, although some sections will be particularly devoted to the 3D analysis of isolated macromolecular complexes in the application area normally referred to as Single Particle Analysis (SPA). (C) 2015 Elsevier Inc. All rights reserved.
机译:透射电子显微镜提供正在研究的标本的二维(2D)图像。但是,这些标本的体系结构是在三维(3D)坐标空间(以体积计)中定义的,这使得直接显微镜输出在尺寸上某种程度上“短”。这种情况促使人们开发了从2D图像集中定量估计3D体积的方法,这些方法通常被称为“三维重建方法”。这些3D重建方法基于四个考虑因素:(1)2D图像和3D体积之间的关系必须是特别简单的类型;(2)需要许多2D图像才能获得3D体积信息;(3)2D图像并且3D体积必须在相同的坐标参考系中,并且(4)实际上,重建的3D体积将仅是原始3D体积的近似值,从而提高了2D投影。在这项工作中,我们将采用一种相当笼统的观点,试图解决广大感兴趣的读者群体的问题,尽管有些部分将特别致力于应用领域中分离的大分子复合物的3D分析,通常称为单颗粒分析(SPA) 。 (C)2015 Elsevier Inc.保留所有权利。

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