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首页> 外文期刊>Journal of Structural Biology >Achievable resolution from images of biological specimens acquired from a 4k x 4k CCD camera in a 300-kV electron cryomicroscope.
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Achievable resolution from images of biological specimens acquired from a 4k x 4k CCD camera in a 300-kV electron cryomicroscope.

机译:在300 kV电子冷冻显微镜中从4k x 4k CCD相机获取的生物标本的图像可获得的分辨率。

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摘要

Bacteriorhodopsin and epsilon 15 bacteriophage were used as biological test specimens to evaluate the potential structural resolution with images captured from a 4k x 4k charge-coupled device (CCD) camera in a 300-kV electron cryomicroscope. The phase residuals computed from the bacteriorhodopsin CCD images taken at 84,000x effective magnification averaged 15.7 degrees out to 5.8-A resolution relative to Henderson's published values. Using a single-particle reconstruction technique, we obtained an 8.2-A icosahedral structure of epsilon 15 bacteriophage with the CCD images collected at an effective magnification of 56,000x. These results demonstrate that it is feasible to retrieve biological structures to a resolution close to 2/3 of the Nyquist frequency from the CCD images recorded in a 300-kV electron cryomicroscope at a moderately high but practically acceptable microscope magnification.
机译:细菌视紫红质和epsilon 15噬菌体被用作生物学测试标本,以在300kV电子冷冻显微镜中从4k x 4k电荷耦合器件(CCD)相机捕获的图像评估潜在的结构分辨率。从细菌视紫红质CCD图像以84,000倍的有效放大倍数计算出的相位残差相对于亨德森发表的值平均为5.8-A分辨率的15.7度。使用单粒子重建技术,我们获得了8.2A的ε15噬菌体的二十面体结构,并以56,000x的有效放大倍数收集了CCD图像。这些结果表明,从在300kV电子冷冻显微镜中记录的CCD图像以中等高但实际上可以接受的显微镜放大倍数将生物结构恢复到接近奈奎斯特频率的2/3的分辨率是可行的。

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