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Box-Counting Fractal Dimension Algorithm Variations on Retina Images

机译:框计数视网膜图像的分形维数算法变化

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This research work investigates the influences of FD algorithm variation on the measurement of retinal vasculature complexity. Forty retinal vasculature images from publicly available dataset were subjected to four variations of box-counting FD algorithm. Different positions of box-grid were found to significantly affect the measurement of FD (p < 0.0001, d = 0.746) due to non-identical vessels captured for measurement. By averaging multiple box-grid placements the FD mean shows no significant difference (p = 0.12, d = 0.124). Using different smoothing effect (big versus small) results in significantly different FD mean, the variation however was small (d = 0.211). The FD of skeletonized vasculature is significantly different than the segmentation (p < 0.0001) with a modest effect size (d = 0.613). More reliable FD measurement on retinal vasculature could be obtained by averaging the FD values using multiple positions of the grid.
机译:本研究工作调查了FD算法变化对视网膜脉管系统复杂性测量的影响。来自公开可用数据集的四十个视网膜脉管系统图像进行了四个盒子计数FD算法的变体。由于非相同的血管被捕获用于测量,发现盒盖的不同位置显着影响FD(P <0.0001,D = 0.746)的测量。通过平均多箱网格放置,FD均值没有显着差异(P = 0.12,d = 0.124)。使用不同的平滑效果(大与小)导致显着不同的FD平均值,然而,变化较小(d = 0.211)。骨架脉管系统的FD与具有适度效果大小的分割(P <0.0001)有显着不同(D = 0.613)。通过使用网格的多个位置平均FD值来获得视网膜脉管系统上的更可靠的FD测量。

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