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Snakes with Coordinate Regeneration Technique: An Application to Retinal Disc Boundary Detection

机译:坐标再生技术的蛇:在视网膜盘边界检测中的应用

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摘要

A modified snake method based on the novel idea of coordinate regeneration is presented and is tested on an object with complex concavities and on retinal images for locating the boundaries of optic discs, where the conventional snake methods fail. We have demonstrated that the use of conventional snake method with our proposed coordinate regeneration technique gives ultimate solution for finding the boundaries of complex objects. The proposed method requires a Gaussian blur of the object with a large kernel so that the snake can be initialised away from the object boundaries. In the second and third steps the blurring kernel size is reduced so that exact boundaries can be located. Coordinate regeneration is applied at each step which ultimately converges the snake (active contour) to exact boundaries. For complex objects like optic discs in retinal images, vessels act as snake distracters and some preimage processing is required before the proposed technique is applied. We are demonstrating this technique to find the boundary of optic discs in retinal images. In principle, this technique can be extended to find the boundary of any object in other modalities of medical imaging. Simulation results are presented to support the idea.
机译:提出了一种基于坐标再生的新思想的改进的蛇形方法,并在具有复杂凹面的物体和视网膜图像上进行了测试,以定位光盘的边界,而传统的蛇形方法是失败的。我们已经证明,将传统的蛇形方法与我们提出的坐标再生技术结合使用,可以为找到复杂物体的边界提供最终的解决方案。所提出的方法需要对具有大核的对象进行高斯模糊,以便可以将蛇初始化为远离对象边界。在第二步和第三步中,减少了模糊内核的大小,以便可以找到确切的边界。在每个步骤都应用坐标再生,最终将蛇(活动轮廓)收敛到精确的边界。对于视网膜图像中的光盘等复杂物体,血管起着蛇的干扰作用,在应用所提出的技术之前,需要进行一些前像处理。我们正在演示这种技术来找到视网膜图像中视盘的边界。原则上,可以扩展此技术以在医学成像的其他方式中找到任何对象的边界。给出了仿真结果以支持该想法。

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