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电子衍射在生物电子显微镜中的应用。

Application of electron diffraction to biological electron microscopy.

作者信息

Glaeser R M, Thomas G

出版信息

Biophys J. 1969 Sep;9(9):1073-99. doi: 10.1016/S0006-3495(69)86437-4.

Abstract

Three methods by which electron diffraction may be applied to problems in electron microscopy are discussed from a fundamental point of view, and experimental applications with biological specimens are demonstrated for each case. It is shown that wide-angle electron diffraction provides valuable information for evaluating specimen damage that can occur either during specimen preparation or while in the electron beam. Dark-field electron microscopy can be used both to enhance the image contrast and to provide highly restricted and therefore highly specific information about the object. Low-angle electron diffraction provides quantitative information about the object structure in the range from 20 A to approximately 1000 A. Lowangle electron diffraction also demonstrates the important role of Fourier contrast with biological specimens, which are usually characterized by structural features with dimensions of 20 A or larger.

摘要

从基本观点出发讨论了三种可将电子衍射应用于电子显微镜问题的方法,并针对每种情况展示了对生物标本的实验应用。结果表明,广角电子衍射为评估在标本制备过程中或处于电子束中时可能发生的标本损伤提供了有价值的信息。暗场电子显微镜既可以用于增强图像对比度,又可以提供关于物体的高度受限因而高度特异的信息。低角电子衍射提供了关于物体结构在20埃至约1000埃范围内的定量信息。低角电子衍射还证明了傅里叶对比度在生物标本中的重要作用,生物标本通常具有尺寸为20埃或更大的结构特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b282/1367545/f404910fed6c/biophysj00683-0007-a.jpg

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