Three-Dimensional Reconstruction of Blood Vessels of the Human Retina by Fractal Interpolation.

Hichem Guedri, Jihen Malek, Hafedh Belmabrouk
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引用次数: 6

Abstract

In this work, data from two-dimensional (2D) images of the human retina were taken as a case study. First, the characteristic data points had been removed using the Douglas-Peucker (DP) method, and subsequently, more data points were added using random fractal interpolation approach, to reconstruct a three-dimensional (3D) model of the blood vessel. By visualizing the result, we can see that all the small blood vessels in the human retina are more visible and detailed. This algorithm of 3D reconstruction has the advantage of being fast with calculation time less than 40 s and also can reduce the 3D image storage level on a disk with a reduction ratio between 78% and 96.65%.
基于分形插值的人眼视网膜血管三维重建。
在这项工作中,来自人类视网膜的二维(2D)图像的数据被作为一个案例研究。首先使用Douglas-Peucker (DP)方法去除特征数据点,然后使用随机分形插值方法添加更多数据点,重建血管的三维模型。通过可视化的结果,我们可以看到人类视网膜上所有的小血管都更加清晰和详细。该三维重建算法具有计算速度快,计算时间小于40 s的优点,并且可以降低磁盘上的三维图像存储水平,降低率在78% ~ 96.65%之间。
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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