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A fully automatic 3D reconstruction method using simulated annealing enables accurate posterioric angular assignment of protein projections

机译:使用模拟退火的全自动3D重建方法可实现蛋白质投影的精确后验角度分配

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Single-particle analysis is a structure determining method using electron microscopic (EM) images, which does not require protein crystal. In this method, projections are picked up and used to reconstruct a three-dimensional (31)) structure. When the conical tilting method is not available, the particle images are usually classified and averaged to improve the signal-to-noise ratio. The Euler angles of these average images must be posteriorically assigned to create a primary 3D model. We developed a new, fully automatic unsupervised Euler angle assignment method, which does not require an initial 3D reference and which is applicable to asymmetric molecules. In this method, the Euler angle of each average image is initially set randomly and then automatically corrected in relation to those of the other averages by iterated optimizations using the Simulated Annealing (SA) algorithm. At each iteration, the 3D structure is reconstructed based on the current Euler angles and reprojected back in the average-input directions. A modified cross-correlation between each reprojection and its corresponding original average is then calculated. The correlations are summed as a total 3D echo-correlation score to evaluate the Euler angles at this iteration. Then, one of the projections is selected, its Euler angle is changed randomly, and the score is also calculated. Based on the score change, judgment of whether to accept or reject the new angle is made using the SA algorithm, which is introduced to overcome the local minimums. After a certain number of iterations of this process, the angles of all averages converge so as to create a reliable primary 3D model. This echo-correlated 3D reconstruction with simulated annealing also has potential for wide application to general 3D reconstruction from various types of 2D images. (c) 2006 Elsevier Inc. All rights reserved.
机译:单颗粒分析是一种使用电子显微镜(EM)图像的结构确定方法,该方法不需要蛋白质晶体。在这种方法中,拾取投影并将其用于重建三维(31)结构。当没有圆锥形倾斜方法时,通常对粒子图像进行分类和平均以提高信噪比。必须平均分配这些平均图像的欧拉角,以创建基本的3D模型。我们开发了一种新的全自动无监督欧拉角分配方法,该方法不需要初始3D参考,并且适用于不对称分子。在这种方法中,最初随机设置每个平均图像的欧拉角,然后使用模拟退火(SA)算法通过迭代优化相对于其他平均图像的欧拉角自动进行校正。每次迭代时,都会根据当前的Euler角度重建3D结构,并在平均输入方向上重新投影。然后计算每个重新投影与其对应的原始平均值之间的修正互相关。将相关性求和,作为总的3D回波相关性分数,以评估此迭代中的欧拉角。然后,选择一个投影,随机改变其欧拉角,并计算分数。根据分数变化,使用SA算法来判断是否接受或拒绝新角度,该算法被引入以克服局部最小值。经过此过程的一定次数的迭代后,所有平均值的角度会聚,从而创建可靠的主要3D模型。这种具有模拟退火的回声相关3D重构也具有广泛应用于从各种类型的2D图像进行一般3D重构的潜力。 (c)2006 Elsevier Inc.保留所有权利。

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