Reconstruction of Three-Dimensional Blood Vessel Model Using Fractal Interpolation

H. Guedri, H. Belmabrouk
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引用次数: 0

Abstract

Fractal method is used in the image processing and studying the irregular and the complex shapes in the image. It is also used in the reconstruction and smoothing of one-, two-, and three-dimensional data. In this chapter, we present an interpolating fractal algorithm to reconstruct 3D blood vessels. Firstly, the proposed method determines the blood vessel centerline from the 2D retina image, and then it uses the Douglas-Peucker algorithm to detect the control points. Secondly, we use the 3D fractal interpolation and iterated function systems for the visualization and reconstruction of these blood vessels. The results showed that the obtained reduction rate is between 71 and 94% depending on the tolerance value. The 3D blood vessels model can be reconstructed efficiently by using the 3D fractal interpolation method.
三维血管模型的分形插值重建
将分形方法用于图像处理,研究图像中的不规则形状和复杂形状。它也用于一维、二维和三维数据的重建和平滑。在本章中,我们提出了一种插值分形算法来重建三维血管。该方法首先从二维视网膜图像中确定血管中心线,然后使用Douglas-Peucker算法检测控制点。其次,利用三维分形插值和迭代函数系统对这些血管进行可视化和重建。结果表明,根据公差值的不同,得到的还原率在71% ~ 94%之间。采用三维分形插值方法可以有效地重建三维血管模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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