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首页> 外文期刊>Journal of Structural Biology >Markov random field based automatic image alignment for electron tomography.
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Markov random field based automatic image alignment for electron tomography.

机译:基于马尔可夫随机场的电子断层扫描自动图像对准。

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We present a method for automatic full-precision alignment of the images in a tomographic tilt series. Full-precision automatic alignment of cryo electron microscopy images has remained a difficult challenge to date, due to the limited electron dose and low image contrast. These facts lead to poor signal to noise ratio (SNR) in the images, which causes automatic feature trackers to generate errors, even with high contrast gold particles as fiducial features. To enable fully automatic alignment for full-precision reconstructions, we frame the problem probabilistically as finding the most likely particle tracks given a set of noisy images, using contextual information to make the solution more robust to the noise in each image. To solve this maximum likelihood problem, we use Markov Random Fields (MRF) to establish the correspondence of features in alignment and robust optimization for projection model estimation. The resulting algorithm, called Robust Alignment and Projection Estimation for Tomographic Reconstruction, or RAPTOR, has not needed any manual intervention for the difficult datasets we have tried, and has provided sub-pixel alignment that is as good as the manual approach by an expert user. We are able to automatically map complete and partial marker trajectories and thus obtain highly accurate image alignment. Our method has been applied to challenging cryo electron tomographic datasets with low SNR from intact bacterial cells, as well as several plastic section and X-ray datasets.
机译:我们提出了一种在层析X射线断层扫描系列中自动对图像进行全精度对齐的方法。迄今为止,由于有限的电子剂量和较低的图像对比度,冷冻电子显微镜图像的全自动精确对准仍然是一项艰巨的挑战。这些事实导致图像中较差的信噪比(SNR),即使使用高对比度的金颗粒作为基准特征,也会导致自动特征跟踪器生成错误。为了实现高精度重建的全自动对齐,我们使用上下文信息使解决方案对每个图像中的噪声更加鲁棒,从而概率地将问题归结为在给定一组嘈杂图像的情况下找到最可能的粒子轨迹。为了解决这个最大似然问题,我们使用马尔可夫随机场(MRF)建立对准特征和投影模型估计的鲁棒优化的对应关系。所产生的算法称为“断层扫描重建的稳健对准和投影估计”或RAPTOR,对于我们尝试过的困难数据集,不需要任何人工干预,并且提供的亚像素对准与专家用户的人工方法一样好。我们能够自动映射完整和部分标记轨迹,从而获得高度精确的图像对齐。我们的方法已经应用于完整细菌细胞低信噪比的低温电子断层扫描数据集,以及一些塑料切片和X射线数据集。

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