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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Phase contrast electron microscopy: development of thin-film phase plates and biological applications
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Phase contrast electron microscopy: development of thin-film phase plates and biological applications

机译:相衬电子显微镜:薄膜相板的开发和生物学应用

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Phase contrast transmission electron microscopy (TEM) based on thin-film phase plates has been developed and applied to biological systems. Currently, development is focused on two techniques that employ two different types of phase plates. The first technique uses a Zernike phase plate, which is made of a uniform amorphous carbon film that completely covers the aperture of an objective lens and can retard the phase of electron waves by pi/2, except at the centre where a tiny hole is drilled. The other technique uses a Hilbert phase plate, which is made of an amorphous carbon film that is twice as thick as the Zernike phase plate, covers only half of the aperture and retards the electron wave phase by p. By combining the power of efficient phase contrast detection with the accurate preservation achieved by a cryotechnique such as vitrification, macromolecular complexes and supermolecular structures inside intact bacterial or eukaryotic cells may be visualized without staining. Phase contrast cryo-TEM has the potential to bridge the gap between cellular and molecular biology in terms of high-resolution visualization. Examples using proteins, viruses, cyanobacteria and somatic cells are provided.
机译:基于薄膜相板的相衬透射电子显微镜(TEM)已被开发并应用于生物系统。当前,开发集中在采用两种不同类型相板的两种技术上。第一种技术使用Zernike相板,该相板由均匀的无定形碳膜制成,该膜完全覆盖物镜的孔径,并且可以将电子波的相位延迟pi / 2,但在钻有小孔的中心除外。另一种技术是使用希尔伯特相位板,该板由非晶碳膜制成,该碳膜的厚度是泽尼尔克相位板的两倍,仅覆盖一半的孔径并将电子波相位延迟p。通过将有效的相位对比检测功能与通过冷冻技术(例如玻璃化)实现的精确保存相结合,可以观察完整细菌或真核细胞内部的大分子复合物和超分子结构,而无需染色。根据高分辨率可视化技术,相衬冷冻TEM有潜力弥合细胞生物学与分子生物学之间的鸿沟。提供了使用蛋白质,病毒,蓝细菌和体细胞的实例。

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