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首页> 外文期刊>Journal of Structural Biology >In-situ integrity control of frozen-hydrated, vitreous lamellas prepared by the cryo-focused ion beam-scanning electron microscope
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In-situ integrity control of frozen-hydrated, vitreous lamellas prepared by the cryo-focused ion beam-scanning electron microscope

机译:冷冻聚焦离子束扫描电子显微镜制备的冷冻水合玻璃质薄片的原位完整性控制

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Recently a number of new approaches have been presented with the intention to produce electron beam transparent cryo-sections (lamellas in FIB-SEM terminology) from hydrated vitreously frozen cryo samples with a Focused Ion Beam (FIB) system, suitablefor cryo-Transmission Electron Microscopy (cryo-TEM). As the workflow is still challenging and time consuming, it is important to be able to determine the integrity and suitability (cells vs. no cells; vitreous vs. crystalline) of the lamellas. Here wepresent an in situ method that tests both conditions by using the cryo-Scanning Electron Microscope (cryo-SEM) in transmission mode (TSEM; Transmission Scanning Electron Microscope) once the FIB-made lamella is ready. Cryo-TSEM imaging of unstained cellsyields strong contrast, enabling direct imaging of material present in the lamellas. In addition, orientation contrast is shown to be suitable for distinguishing crystalline lamellas from vitreous lamellas. Tilting the stage a few degrees results in changes of contrast between ice grains as a function of the tilt angle, whereas the contrast of areas with vitreous ice remains unchanged as a function of the tilt angle. This orientation contrast has subsequently been validated by cryo-Electron BackScattered Diffraction (EBSD) in transmission mode. Integration of the presented method is discussed and the role it can play in future developments for a new and innovative all-in-one cryo-FIB-SEM life sciences instrument.
机译:最近,已经提出了许多新方法,目的是通过聚焦离子束(FIB)系统从水合玻璃态冷冻冷冻样品中制备电子束透明冷冻切片(FIB-SEM术语为薄片),适用于冷冻透射电子显微镜(低温TEM)。由于工作流程仍然充满挑战且耗时,因此重要的是要能够确定薄片的完整性和适用性(细胞对无细胞;玻璃体对晶体)。在这里,我们介绍了一种原位方法,一旦FIB制成的薄板准备好,就可以使用透射模式的低温扫描电子显微镜(cryo-SEM)(TSEM;透射扫描电子显微镜)测试两种条件。未染色细胞的低温TSEM成像具有很强的对比度,可直接对薄片中存在的物质进行成像。另外,显示出取向对比适于区分晶体薄片和玻璃薄片。将平台倾斜几度会导致冰粒之间的对比度随倾斜角度而变化,而带有玻璃冰的区域的对比度随倾斜角度而保持不变。随后,该取向对比已通过透射模式下的低温电子背散射衍射(EBSD)进行了验证。讨论了所提出的方法的集成及其在新型创新型一体式冷冻FIB-SEM生命科学仪器的未来开发中可以发挥的作用。

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