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A tomographical reconstruction method from unknown direction projections for 2D gray-level images

机译:基于未知方向投影的二维灰度图像层析重建方法

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This paper deals with the reconstruction of gray level images from unoriented tomographic projections as it occurs in cryo-electron microscopy. Classical methods proceed in three steps: first, angular assignation, then image reconstruction from angular information and input projections and finally angular assignation refinement from the reconstructed image. We propose in this paper to perform the angular assignation and the image reconstruction at the same time. The main idea is to compare the input projections with the projections obtained from the image being reconstructed and the angular information. Our method is available for ab initio reconstruction and based on a cost optimization using the simulated annealing algorithm. A comparison with a state-of-the-art method (based on the spherical Local Linear Embedding) from the literature on a set of 2D gray-level images is done and it shows the better result of our method. The case where projections from different objects are acquired can also occur in cryo-electron microscopy (e.g. deformable molecule reconstruction). The feasibility of a reconstruction by our method in this case is shown on 2D images. Moreover our method can be generalized to the 3D case. (C) 2017 Published by Elsevier B.V.
机译:本文介绍了在低温电子显微镜中从无方向的层析成像投影重建灰度图像的过程。经典方法分三个步骤进行:首先是角度分配,然后根据角度信息和输入投影重建图像,最后根据重建的图像进行角度分配细化。我们建议在本文中同时执行角度分配和图像重建。主要思想是将输入投影与从正在重建的图像获得的投影以及角度信息进行比较。我们的方法可用于从头开始重建,并且基于使用模拟退火算法的成本优化。与文献中的最新技术方法(基于球形局部线性嵌入)在一组二维灰度图像上进行了比较,它显示了我们方法的更好结果。在低温电子显微镜(例如,可变形分子重建)中也可能发生从不同物体获取投影的情况。在这种情况下,通过我们的方法进行重建的可行性显示在2D图像上。此外,我们的方法可以推广到3D情况。 (C)2017由Elsevier B.V.发布

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