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首页> 外文期刊>IEEE Transactions on Medical Imaging >Improvement on dynamic elastic interpolation technique for reconstructing 3-D objects from serial cross sections (biomedical application)
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Improvement on dynamic elastic interpolation technique for reconstructing 3-D objects from serial cross sections (biomedical application)

机译:动态弹性插值技术的改进,可从连续横截面重建3D对象(生物医学应用)

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摘要

An improved method for automatically reconstructing a three-dimensional object from serial cross sections is presented. The method improves the dynamic elastic contour interpolation technique. There are two major improvements: (1) in the case of branching that involves concave contours, instead of pairwise interpolation between the start contour and each goal contour, the goal image is considered globally and local constraints are imposed on the forces exerting upon the vertices; and (2) it takes the continuity of high-order derivatives into consideration and incorporates the schemes of spline theory, quadratic-variation-based surface interpolation, and finite-element-based multilevel surface interpolation to create smoother surfaces of the reconstructed object. Based on the output from the preliminary processing, two alternatives, a quadratic-variation-based surface interpolation algorithm and a finite-element-based multilevel surface interpolation algorithm, can be adopted to obtain the final surface representation.
机译:提出了一种从连续横截面自动重建三维对象的改进方法。该方法改进了动态弹性轮廓插值技术。有两个主要的改进:(1)在涉及凹轮廓的分支的情况下,而不是在开始轮廓和每个目标轮廓之间成对插值,全局考虑了目标图像,并且对施加在顶点上的力施加了局部约束; (2)考虑了高阶导数的连续性,并结合了样条理论,基于二次变量的表面插值和基于有限元的多级表面插值的方案,以创建重建对象的平滑表面。根据初步处理的输出,可以采用两种选择,一种基于二次变量的表面插值算法和一种基于有限元的多级表面插值算法,以获得最终的表面表示。

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