三维重建细胞从连续切片和全细胞安装使用立体显微镜的多层次轮廓。

M Marko, A Leith, D Parsons
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引用次数: 60

摘要

一个全面的计算机图形为基础的系统(STERECON)描述了跟踪和数字化轮廓从个人或立体对电子显微照片。等高线是在显微镜内平行的平面上画出来的。还为沿着诸如细胞骨架要素等线性结构在任何方向上以全三维坐标进行跟踪和数字化编列了经费。在图形终端监视器上与所跟踪的轮廓相结合地观察立体对显微照片。这可以通过将原始的电子显微照片(EM)底片投影到屏幕上,并将这些图像与显示器上绘制的等高线光学组合,或者首先将图像数字化并将它们与等高线一起直接显示在显示器上。先验图像数字化允许计算机增强结构轮廓。校正和对准程序包括处理可变切片厚度,切片畸变和质量损失,在电子显微镜下的摄影变化,和终端屏幕曲率时,结合投影图像与轮廓线在监视器上。STERECON系统将连续剖面的数字化数据组织并显示为三维重建。重建可以在任何方向上视为去除隐藏线的轮廓叠加;如线框模型;或作为阴影,实体模型与可变照明,透明度和反射率。可以确定重建物体的体积和表面积。特别注意使系统方便于生物用户。用户可以选择三种不同的立体观看方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three-dimensional reconstruction of cells from serial sections and whole-cell mounts using multilevel contouring of stereo micrographs.

A comprehensive computer-graphics-based system (STERECON) is described for tracing and digitizing contours from individual or stereopair electron micrographs. The contours are drawn in parallel planes within the micrographs. Provision is also made for tracing and digitizing in full three-dimensional (3-D) coordinates in any direction along linear structures such as cytoskeletal elements. The stereopair micrographs are viewed in combination with the contours being traced on a graphics terminal monitor. This is done either by projecting original electron micrograph (EM) negatives onto a screen and optically combining these images with contour lines being drawn on the monitor, or by first digitizing the images and displaying them directly on the monitor along with the contour lines. Prior image digitization allows computer enhancement of the structures to be contoured. Correction and alignment routines are included to deal with variable section thickness, section distortion and mass loss, variations in photography in the electron microscope, and terminal screen curvature when combining projected images with contour lines on the monitor. The STERECON system organizes and displays the digitized data from successive sections as a 3-D reconstruction. Reconstructions can be viewed in any orientation as contour stacks with hidden lines removed; as wire-frame models; or as shaded, solid models with variable lighting, transparency, and reflectivity. Volumes and surface areas of the reconstructed objects can be determined. Particular attention was paid to making the system convenient for the biological user. Users are given a choice of three different stereo-viewing methods.

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