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Coordinate transformation based cryo-correlative methods for electron tomography and focused ion beam milling

机译:基于坐标变换的电子层析成像和聚焦离子束铣削的低温相关方法

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摘要

Correlative microscopy allows imaging of the same feature over multiple length scales, combining light microscopy with high resolution information provided by electron microscopy. We demonstrate two procedures for coordinate transformation based correlative microscopy of vitrified biological samples applicable to different imaging modes. The first procedure aims at navigating cryo-electron tomography to cellular regions identified by fluorescent labels. The second procedure, allowing navigation of focused ion beam milling to fluorescently labeled molecules, is based on the introduction of an intermediate scanning electron microscopy imaging step to overcome the large difference between cryo-light microscopy and focused ion beam imaging modes. These methods make it possible to image fluorescently labeled macromolecular complexes in their natural environments by cryo-electron tomography, while minimizing exposure to the electron beam during the search for features of interest.
机译:相关显微镜允许将多个光学显微镜与电子显微镜提供的高分辨率信息相结合,从而在多个长度范围内对同一特征进行成像。我们演示了两种程序,适用于适用于不同成像模式的玻璃化生物样品的基于坐标变换的相关显微镜。第一个过程旨在将冷冻电子断层扫描导航到荧光标记识别的细胞区域。第二种方法允许将聚焦的离子束铣削导航到荧光标记的分子,该过程基于引入中间扫描电子显微镜成像步骤,以克服低温显微镜和聚焦离子束成像模式之间的巨大差异。这些方法使得通过低温电子断层成像在其自然环境中对荧光标记的高分子复合物进行成像成为可能,同时在寻找感兴趣特征期间将对电子束的曝光降至最低。

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