Lawrence Albert, Bouwer James C, Perkins Guy, Ellisman Mark H
National Center for Microscopy and Imaging Research, Center for Research in Biological Structure, University of California at San Diego, La Jolla, CA 92093-0608, USA.
J Struct Biol. 2006 May;154(2):144-67. doi: 10.1016/j.jsb.2005.12.012. Epub 2006 Feb 17.
Alignment of the individual images of a tilt series is a critical step in obtaining high-quality electron microscope reconstructions. We report on general methods for producing good alignments, and utilizing the alignment data in subsequent reconstruction steps. Our alignment techniques utilize bundle adjustment. Bundle adjustment is the simultaneous calculation of the position of distinguished markers in the object space and the transforms of these markers to their positions in the observed images, along the bundle of particle trajectories along which the object is projected to each EM image. Bundle adjustment techniques are general enough to encompass the computation of linear, projective or nonlinear transforms for backprojection, and can compensate for curvilinear trajectories through the object, sample warping, and optical aberration. We will also report on new reconstruction codes and describe our results using these codes.
倾斜系列中各个图像的对齐是获得高质量电子显微镜重建的关键步骤。我们报告了产生良好对齐的通用方法,以及在后续重建步骤中利用对齐数据的方法。我们的对齐技术利用了光束平差法。光束平差法是同时计算物体空间中显著标记的位置,以及这些标记在观察图像中的位置变换,沿着物体投影到每个电子显微镜图像的粒子轨迹束进行计算。光束平差法技术具有足够的通用性,能够涵盖用于反投影的线性、投影或非线性变换的计算,并且可以补偿通过物体的曲线轨迹、样品变形和光学像差。我们还将报告新的重建代码,并描述使用这些代码的结果。