Simulated wave propagation and traceback in vascular extraction

Francis K. H. Quek, C. Kirbas
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引用次数: 10

Abstract

We present an approach for the extraction of vasculature from angiography images by using a wave propagation and traceback mechanism. We discuss both the theory and the implementation of the approach. Using a dual-sigmoidal filter, we label each pixel in an angiogram with the likelihood that it is within a vessel. Representing the reciprocal of this likelihood image as an array of refractive indices, we propagate a digital wave through the image from the base of the vascular tree. This wave 'washes' over the vasculature, ignoring local noise perturbations. The extraction of the vasculature becomes that of tracing the wave along the local normals to the waveform. While the approach is inherently SIMD, we present an efficient sequential algorithm for the wave propagation, and discuss the traceback algorithm. We demonstrate the effectiveness of our integer image neighborhood-based algorithm and its robustness to image noise.
血管提取中的模拟波传播与回溯
我们提出了一种利用波传播和回溯机制从血管造影图像中提取血管系统的方法。我们讨论了该方法的理论和实现。使用双s型滤波器,我们标记血管造影中的每个像素与它在血管内的可能性。将该似然图像的倒数表示为折射率阵列,我们从血管树的底部传播数字波。这种波“冲刷”了脉管系统,忽略了局部的噪声扰动。脉管系统的提取变成了沿着波形的局部法线追踪波。虽然该方法本质上是SIMD,但我们提出了一种有效的波传播顺序算法,并讨论了回溯算法。我们证明了基于整数图像邻域的算法的有效性及其对图像噪声的鲁棒性。
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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