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Non-rigid image registration to reduce beam-induced blurring of cryo-electron microscopy images

机译:非刚性图像配准可减少电子显微镜图像的射线诱导模糊

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摘要

The typical dose used to record cryo-electron microscopy images from vitrified biological specimens is so high that radiation-induced structural alterations are bound to occur during data acquisition. Integration of all scattered electrons into one image can lead to significant blurring, particularly if the data are collected from an unsupported thin layer of ice suspended over the holes of a support film. Here, the dose has been fractioned and exposure series have been acquired in order to study beam-induced specimen movements under low dose conditions, prior to bubbling. Gold particles were added to the protein sample as fiducial markers. These were automatically localized and tracked throughout the exposure series and showed correlated motions within small patches, with larger amplitudes of motion vectors at the start of a series compared with the end of each series. A non-rigid scheme was used to register all images within each exposure series, using natural neighbor interpolation with the gold particles as anchor points. The procedure increases the contrast and resolution of the examined macromolecules.
机译:用于记录玻璃化的生物样本的冷冻电子显微镜图像的典型剂量非常高,以至于在数据采集过程中必然会发生辐射引起的结构变化。将所有散射的电子集成到一个图像中会导致明显的模糊,特别是如果数据是从悬浮在支撑膜孔上方的不受支撑的薄冰层收集的,则尤其如此。在这里,为了研究起泡之前在低剂量条件下光束引起的样品运动,已经对剂量进行了分度并获得了曝光系列。金颗粒被添加到蛋白质样品中作为基准标记。它们在整个曝光系列中被自动定位和跟踪,并显示了小块内的相关运动,与每个系列结束时相比,系列开始时的运动矢量幅度更大。使用非刚性方案对每个曝光系列中的所有图像进行配准,方法是使用自然邻居插值法,其中金粒子作为锚点。该程序增加了所检查的大分子的对比度和分辨率。

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