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首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >In-Focus Electrostatic Zach Phase Plate Imaging for Transmission Electron Microscopy with Tunable Phase Contrast of Frozen Hydrated Biological Samples
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In-Focus Electrostatic Zach Phase Plate Imaging for Transmission Electron Microscopy with Tunable Phase Contrast of Frozen Hydrated Biological Samples

机译:聚焦静电Zach相板成像的透射电子显微镜与冷冻水合生物样品的可调相差。

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摘要

Transmission electron microscopy (TEM) images of beam sensitive weak-phase objects such as biological cryo samples usually show a very low signal-to-noise ratio. These samples have almost no amplitude contrast and instead structural information is mainly encoded in the phase contrast. To increase the sample contrast in the image, especially for low spatial frequencies, the use of phase plates for close to focus phase contrast enhancement in TEM has long been discussed. Electrostatic phase plates are favorable in particular, as their tunable potential will allow an optimal phase shift adjustment and higher resolution than film phase plates as they avoid additional scattering events in matter. Here we show the first realization of close to focus phase contrast images of actin filament cryo samples acquired using an electrostatic Zach phase plate. Both positive and negative phase contrast is shown, which is obtained by applying appropriate potentials to the phase plate. The dependence of phase contrast improvement on sample orientation with respect to the phase plate is demonstrated and single-sideband artifacts are discussed. Additionally, possibilities to reduce contamination and charging effects of the phase plate are shown.
机译:射线束敏感的弱相物体(例如生物低温样品)的透射电子显微镜(TEM)图像通常显示出非常低的信噪比。这些样本几乎没有幅度对比度,而是主要在相位对比度中编码结构信息。为了增加图像中的样品对比度,特别是对于低空间频率,长期以来一直在讨论使用相板在TEM中接近聚焦的相衬增强。静电相板特别有利,因为它们的可调电位将提供最佳的相移调节和比薄膜相板更高的分辨率,因为它们避免了物质中的其他散射事件。在这里,我们展示了使用静电Zach相板获得的肌动蛋白丝冷冻样品的接近聚焦相衬图像的第一个实现。同时显示了正负相位对比,这是通过将适当的电势施加到相位板上获得的。证明了相衬对比度改善对样品相对于相板取向的依赖性,并讨论了单边带伪像。另外,示出了减少相板的污染和充电效果的可能性。

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