首页> 外文期刊>Journal of Microscopy >Biological ultrastructure as revealed by high resolution cryo-SEM of block faces after cryo-sectioning.
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Biological ultrastructure as revealed by high resolution cryo-SEM of block faces after cryo-sectioning.

机译:冷冻切片后高分辨率冷冻切片显示的生物学超微结构。

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摘要

Ultrastructural information was obtained by imaging the block face of high-pressure-frozen cryo-sectioned biological samples in a high-resolution cryo-SEM. Cryo-sectioning leads to a well-defined flat artificial surface in contrast to cryo-fracturing. Typical artefacts of cryo-sections such as compression and crevasses were not visible on the block face. The ultrastructural features known from resin sections and from freeze-fractures could also be found on the block faces. The cytoplasms show particles of different size which most likely represent proteins. The effects of radiation damage could be reduced considerably by applying the double layer coating technique and backscattered electron imaging. High quality cryo-sections are only obtained from vitrified material. Reasonably flat block faces were, however, also obtained from adequately frozen microcrystalline samples, thereby facilitating ultrastructural studies in the frozen hydrated state.
机译:通过在高分辨率冷冻SEM中对高压冷冻冷冻切片的生物样品的块面进行成像,可以获得超微结构信息。与冷冻破碎相反,冷冻切片可产生清晰的人造平整表面。在块体表面上看不到冷冻切片的典型伪像,例如压缩和裂缝。从树脂截面和冻裂已知的超微结构特征也可以在砌块面上找到。细胞质显示出不同大小的颗粒,最有可能代表蛋白质。通过应用双层涂层技术和反向散射电子成像,可以大大降低辐射损伤的影响。高质量的冷冻切片只能从玻璃化材料中获得。但是,还可以从充分冷冻的微晶样品中获得合理的平坦面,从而有助于在冷冻水合状态下进行超微结构研究。

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