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生物大分子高分辨率电子显微镜中的图像对比度:冰中的烟草花叶病毒。

Image contrast in high-resolution electron microscopy of biological macromolecules: TMV in ice.

作者信息

Henderson R

机构信息

MRC Laboratory of Molecular Biology, Cambridge, UK.

出版信息

Ultramicroscopy. 1992 Oct;46(1-4):1-18. doi: 10.1016/0304-3991(92)90003-3.

Abstract

It is shown that the contrast in high-resolution electron micrographs of biological macromolecules, illustrated by a study of TMV in ice, falls considerably below the level which should theoretically be attained. The factors which contribute to the low contrast include radiation damage, inelastic scattering, specimen movement and charging. Future progress depends on improved understanding of their contributions and relative importance. Contrast is defined as the amplitude of a particular Fourier component extracted from an image in comparison to that expected by extrapolation from separate electron or X-ray diffraction measurements. The fall in contrast gets worse with increased resolution and is particularly serious at 10 A and beyond for specimens embedded in vitreous ice, a method of specimen preparation which is otherwise particularly desirable because of the expectation that the embedded molecules should be well preserved in a near-native environment. This low contrast at high resolution is the principal limitation to atomic-resolution structure determination by electron microscopy. In spite of good progress in the direction of better images, it remains a major problem which prevents electron microscopy from becoming a simple and rapid method for biological atomic structure determination.

摘要

通过对冰中烟草花叶病毒(TMV)的研究表明,生物大分子高分辨率电子显微照片中的对比度,大大低于理论上应达到的水平。导致低对比度的因素包括辐射损伤、非弹性散射、样品移动和电荷积累。未来的进展取决于对它们的贡献和相对重要性有更深入的了解。对比度定义为从图像中提取的特定傅里叶分量的振幅,与通过单独的电子或X射线衍射测量外推得到的预期值相比。随着分辨率的提高,对比度下降得更严重,对于嵌入玻璃态冰中的样品,在10埃及更高分辨率时尤为严重,这种样品制备方法在其他方面特别理想,因为预计嵌入的分子在近乎天然的环境中应得到很好的保存。高分辨率下的这种低对比度是通过电子显微镜确定原子分辨率结构的主要限制。尽管在获得更好图像方面取得了良好进展,但它仍然是一个主要问题,阻碍了电子显微镜成为一种简单快速的生物原子结构测定方法。

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