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A Vessel Active Contour Model for Vascular Segmentation

机译:血管分割的血管主动轮廓模型

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摘要

This paper proposes a vessel active contour model based on local intensity weighting and a vessel vector field. Firstly, the energy function we define is evaluated along the evolving curve instead of all image points, and the function value at each point on the curve is based on the interior and exterior weighted means in a local neighborhood of the point, which is good for dealing with the intensity inhomogeneity. Secondly, a vascular vector field derived from a vesselness measure is employed to guide the contour to evolve along the vessel central skeleton into thin and weak vessels. Thirdly, an automatic initialization method that makes the model converge rapidly is developed, and it avoids repeated trails in conventional local region active contour models. Finally, a speed-up strategy is implemented by labeling the steadily evolved points, and it avoids the repeated computation of these points in the subsequent iterations. Experiments using synthetic and real vessel images validate the proposed model. Comparisons with the localized active contour model, local binary fitting model, and vascular active contour model show that the proposed model is more accurate, efficient, and suitable for extraction of the vessel tree from different medical images.
机译:本文提出了一种基于局部强度加权和血管矢量场的血管活动轮廓模型。首先,我们定义的能量函数是沿着演化的曲线而不是所有图像点进行评估的,曲线上每个点的函数值都是基于该点局部附近的内部和外部加权均值,这对于处理强度不均匀性。其次,从血管测量得到的血管矢量场被用来引导轮廓沿着血管中央骨架演变成薄弱血管。第三,开发了一种使模型快速收敛的自动初始化方法,该方法避免了传统局部区域活动轮廓模型中的重复轨迹。最后,通过标记稳定演化的点来实现加速策略,并且该策略避免了在后续迭代中重复计算这些点。使用合成和真实血管图像进行的实验验证了所提出的模型。与局部活动轮廓模型,局部二元拟合模型和血管活动轮廓模型的比较表明,所提出的模型更准确,有效,并且适合于从不同医学图像中提取血管树。

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