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Bayesian image segmentation of transmission electron tomography 3D reconstructions

机译:透射电子断层扫描3D重建的贝叶斯图像分割

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The use of transmission electron tomography for three dimensional morphology analysis of nanostructured materials has grown significantly in recent years due to the improved robustness of automated image collection, alignment and reconstruction routines. Although the amount of published 3D electron tomography data has increased accordingly, in many cases the data is used purely for visualization purposes, due to the difficulty of making quantitative measurements from the as-reconstructed data. This is due to the traditionally difficult step of segmentation of the 3D image volume, which has been hindered due to noise, artifacts and lack of necessary image detail or sharpness. In this work the Simultaneous Iterative Reconstruction Technique (SIRT) is used to reconstruct High Angle Annular Dark Field-Scanning Transmission Electron Microscopy (HAADF-STEM) tomography data. The number of SIRT iterations is varied to optimize the reconstruction for segmentation. In particular, signal to noise ratio, signal to artifact ratio, and image blur are identified as parameters which each contribute to the suitability of the reconstruction for segmentation. The Expectation Maximization/ Maximization of Posterior Marginals image segmentation algorithm is applied to the SIRT reconstructions, and the resulting Average Intensity Projection (AIP) of the segmented image stack is compared to the raw tomography projection data.
机译:近年来,由于自动图像收集,对准和重建程序的改进的鲁棒性,使用透射电子层析成像技术对纳米结构材料进行三维形态分析已得到显着增长。尽管已发布的3D电子断层扫描数据量相应增加,但由于难以从重建后的数据进行定量测量,因此在许多情况下,该数据仅用于可视化目的。这是由于传统上难以分割3D图像的步骤,该步骤由于噪声,伪影以及缺少必要的图像细节或清晰度而受到阻碍。在这项工作中,同时迭代重建技术(SIRT)用于重建大角度环形暗场扫描透射电子显微镜(HAADF-STEM)层析成像数据。 SIRT迭代的次数可以变化,以优化用于分段的重建。特别地,将信噪比,信噪比和图像模糊识别为参数,每个参数都有助于重建的分割。将后验边缘图像分割算法的期望最大化/最大化应用于SIRT重建,然后将分割后的图像堆栈的平均强度投影(AIP)与原始层析成像投影数据进行比较。

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