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首页> 外文期刊>Journal of medical systems >Morphological multiscale enhancement, fuzzy filter and watershed for vascular tree extraction in angiogram.
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Morphological multiscale enhancement, fuzzy filter and watershed for vascular tree extraction in angiogram.

机译:形态学多尺度增强,模糊过滤器和分水岭,用于血管造影术中血管树的提取。

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摘要

This paper presented an automatic morphological method to extract a vascular tree using an angiogram. Under the assumption that vessels are connected in a local linear pattern in a noisy environment, the algorithm decomposes the vessel extraction problem into several consecutive morphological operators, aiming to characterize and distinguish different patterns on the angiogram: background, approximate vessel region and the boundary. It started with a contrast enhancement and background suppression process implemented by subtracting the background from the original angiogram. The background was estimated using multiscale morphology opening operators by varying the size of structuring element on each pixel. Subsequently, the algorithm simplified the enhanced angiogram with a combined fuzzy morphological opening operation, with linear rotating structuring element, in order to fit the vessel pattern. This filtering process was then followed by simply setting a threshold to produce approximate vessel region. Finally, the vessel boundaries were detected using watershed techniques with the obtained approximate vessel centerline, thinned result of the obtained vessel region, as prior marker for vessel structure. Experimental results using clinical digitized vascular angiogram and some comparative performance of the proposed algorithm were reported.
机译:本文提出了一种自动形态学方法使用血管造影术提取血管树。假设在嘈杂的环境中血管以局部线性模式连接,该算法将血管提取问题分解为几个连续的形态学算子,旨在表征和区分血管造影照片上的不同模式:背景,近似血管区域和边界。它从对比度增强和背景抑制过程开始,该过程通过从原始血管造影图中减去背景来实现。通过改变每个像素上的结构元素的大小,使用多尺度形态学开放算子来估计背景。随后,该算法通过组合模糊形态学打开操作(带有线性旋转结构元素)简化了增强型血管造影照片,以适应血管图案。然后,在此过滤过程之后,只需设置一个阈值即可产生近似的血管区域。最终,使用分水岭技术检测血管边界,将获得的近似血管中心线,获得的血管区域的变薄结果作为血管结构的先验标记。报告了使用临床数字化血管造影的实验结果以及该算法的一些比较性能。

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