论文标题
使用电子的多个散射和菲涅尔衍射在小分子成像中的相对作用,第二部分:差异全息层析成像
Relative roles of multiple scattering and Fresnel diffraction in the imaging of small molecules using electrons, Part II: Differential Holographic Tomography
论文作者
论文摘要
有人认为,在原子分辨率透射电子显微镜(TEM)中,稀疏散射结构(例如小的生物分子)通常只有很小的影响,而由于本质上具有固有的焦点,因此多个电子散射通常只有很小的影响。这些事实表明,使用不连贯的第一天生近似值,可以分别对每个原子的多个旋转方向上收集的这种结构的三维重建。相应的重建方法在这里称为差异全息层析成像,在理论上开发并在几种生物分子的数值模型上进行了计算。结果表明,该方法能够通过以少数分子的随机取向收集的TEM数据来准确重建原子的位置,并且每个方向都有一个或多个散热器图像。简要讨论了在低温电子显微镜和其他区域的可能应用。
It has been argued that in atomic-resolution transmission electron microscopy (TEM) of sparse weakly scattering structures, such as small biological molecules, multiple electron scattering usually has only a small effect, while the in-molecule Fresnel diffraction can be significant due to the intrinsically shallow depth of focus. These facts suggest that the three-dimensional reconstruction of such structures from defocus image series collected at multiple rotational orientations of a molecule can be effectively performed for each atom separately, using the incoherent first Born approximation. The corresponding reconstruction method, termed here Differential Holographic Tomography, is developed theoretically and demonstrated computationally on several numerical models of biological molecules. It is shown that the method is capable of accurate reconstruction of the locations of atoms in a molecule from TEM data collected at a small number of random orientations of the molecule, with one or more defocus images per orientation. Possible applications to cryogenic electron microscopy and other areas are briefly discussed.