电断层成像中的三维图像重建

Shihong Yue, Jianling Gao
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引用次数: 0

摘要

三维重建是计算机视觉中最重要的任务之一。在医学、化学、生物学等领域有许多高效、鲁棒的三维重建算法。但由于ET测量数据存在不确定性、不完全性和“软场”效应,目前尚无有效的电层析成像三维重建方法。本文提出了一种基于单传感器二维图像序列的三维重建方法。首先利用模糊聚类对图像序列中的任意原始二维图像进行分割,匹配任意一对相邻二维图像中的聚类原型,实现两帧图像中所有像素的匹配,最后利用插值算法实现所研究物镜的三维重建。该方法极大地克服了现有算法效率低的问题。通过一组实验验证了所提出的方法。
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 image reconstruction in electrical tomography
Three-dimensional reconstruction is one of the most important tasks in computer vision. There are many efficient and robust three-dimensional reconstruction algorithms in medicine, chemistry, biology and etc. But so far there is no efficient method for the three-dimensional reconstruction in electrical tomography since there are uncertainties, incompleteness, and “soft field” effects in ET measured data. In this paper, a novel three-dimensional reconstruction method is proposed in terms of two-dimensional image sequences from a single sensor. The fuzzy clustering first is applied to segment any original two-dimensional image in the image sequence, the clustering prototypes in any pair of adjacent two-dimensional images are matched to realize the matching of all pixels in the two frames of images, and finally the three-dimensional reconstruction of the investigated objectives is realized in terms of the interpolation algorithms. This proposed method can greatly overcome the problems of low efficiency in the existing algorithms. A group of experiments are performed to validate the proposed method.
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