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A charge coupled device camera with electron decelerator for intermediate voltage electron microscopy

机译:带电子减速器的电荷耦合器件照相机,用于中压电子显微镜

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摘要

Electron microscopists are increasingly turning to intermediate voltage electron microscopes (IVEMs) operating at 300–400 kV for a wide range of studies. They are also increasingly taking advantage of slow-scan charge coupled device (CCD) cameras, which have become widely used on electron microscopes. Under some conditions, CCDs provide an improvement in data quality over photographic film, as well as the many advantages of direct digital readout. However, CCD performance is seriously degraded on IVEMs compared to the more conventional 100 kV microscopes. In order to increase the efficiency and quality of data recording on IVEMs, we have developed a CCD camera system in which the electrons are decelerated to below 100 kV before impacting the camera, resulting in greatly improved performance in both signal quality and resolution compared to other CCDs used in electron microscopy. These improvements will allow high-quality image and diffraction data to be collected directly with the CCD, enabling improvements in data collection for applications including high-resolution electron crystallography, single particle reconstruction of protein structures, tomographic studies of cell ultrastructure, and remote microscope operation. This approach will enable us to use even larger format CCD chips that are being developed with smaller pixels.
机译:电子显微镜学家越来越多地转向在300-400 kV下工作的中压电子显微镜(IVEM)进行广泛的研究。他们还越来越多地利用慢扫描电荷耦合器件(CCD)相机,该相机已广泛用于电子显微镜。在某些情况下,CCD可以提供比胶卷更好的数据质量,以及直接数字读出的许多优点。但是,与更传统的100 kV显微镜相比,IVEM上的CCD性能严重下降。为了提高IVEM上数据记录的效率和质量,我们开发了一种CCD摄像头系统,在该系统中,电子在撞击摄像头之前已减速至100 kV以下,与其他同类产品相比,信号质量和分辨率均得到了极大的提高电子显微镜中使用的CCD。这些改进将允许直接通过CCD收集高质量的图像和衍射数据,从而改善数据收集的应用,包括高分辨率电子晶体学,蛋白质结构的单颗粒重建,细胞超微结构的层析成像研究以及远程显微镜操作。这种方法将使我们能够使用更大像素的CCD芯片。

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