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Stereo-vision three-dimensional reconstruction of curvilinear structures imaged with a TEM

机译:TEM成像曲线结构的立体视觉三维重建

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Deriving accurate three-dimensional (3-D) structural information of materials at the nanometre level is often crucial for understanding their properties. Tomography in transmission electron microscopy (TEM) is a powerful technique that provides such information. It is however demanding and sometimes inapplicable, as it requires the acquisition of multiple images within a large tilt arc and hence prolonged exposure to electrons. In some cases, prior knowledge about the structure can tremendously simplify the 3-D reconstruction if incorporated adequately. Here, a novel algorithm is presented that is able to produce a full 3-D reconstruction of curvilinear structures from stereo pair of TEM images acquired within a small tilt range that spans from only a few to tens of degrees. Reliability of the algorithm is demonstrated through reconstruction of a model 3-D object from its simulated projections, and is compared with that of conventional tomography. This method is experimentally demonstrated for the 3-D visualization of dislocation arrangements in a deformed metallic micro-pillar. (C) 2017 Published by Elsevier B.V.
机译:纳米级材料的准确三维(3-D)结构信息通常对理解其性质至关重要。透射电子显微镜(TEM)中的断层扫描是一种提供此类信息的强大技术。然而,它要求且有时不可应用,因为它需要在大倾斜弧内采集多个图像,因此长时间地暴露于电子。在某些情况下,关于该结构的先验知识可以极大地简化3-D重建,如果充分掺入。这里,提出了一种新的算法,其能够从在小倾斜范围内获取的立体对TEM图像产生完整的3-D重建曲线结构,该曲线对仅跨越几十度的小倾斜范围。通过从其模拟投影的模型3-D对象重建模型3-D对象来证明算法的可靠性,并与传统断层扫描的模型进行了比较。该方法是通过实验证明的,用于在变形的金属微柱中的位错布置的3-D可视化。 (c)2017年由Elsevier B.V发布。

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