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Applications of Direct Detection Device in Transmission Electron Microscopy

机译:直接检测装置在透射电子显微镜中的应用

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摘要

A prototype Direct Detection Device (DDD) camera system has shown great promise in improving both the spatial resolution and the signal to noise ratio for electron microscopy at 120–400 keV beam energies (. Methods in Cell Biology, 79, 721–739). Without the need for a resolution-limiting scintillation screen as in the charge coupled device (CCD), the DDD camera can outperform CCD based systems in terms of spatial resolution, due to its small pixel size (5 μm). In this paper, the modulation transfer function (MTF) of the DDD prototype is measured and compared with the specifications of commercial scientific CCD camera systems. Combining the fast speed of the DDD with image mosaic techniques, fast wide-area imaging is now possible. In this paper, the first large area mosaic image and the first tomography dataset from the DDD camera are presented, along with an image processing algorithm to correct the specimen drift utilizing the fast readout of the DDD system.
机译:原型直接检测设备(DDD)相机系统在提高电子显微镜在120–400 keV束能量下的空间分辨率和信噪比方面显示出了巨大的希望(。细胞生物学方法,79,721–739)。不需要像电荷耦合器件(CCD)中那样的分辨率受限的闪烁屏幕,DDD相机由于其较小的像素尺寸(5μm),在空间分辨率方面可以胜过基于CCD的系统。本文测量了DDD原型的调制传递函数(MTF),并将其与商业科学CCD相机系统的规格进行了比较。将DDD的快速速度与图像镶嵌技术相结合,现在可以实现快速的广域成像。本文介绍了DDD相机的第一个大面积马赛克图像和第一个断层扫描数据集,以及利用DDD系统的快速读数来校正标本漂移的图像处理算法。

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