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A Model-Based Consecutive Scanline Tracking Method for Extracting Vascular Networks From 2-D Digital Subtraction Angiograms

机译:从二维数字减影血管造影图中提取血管网络的基于模型的连续扫描线跟踪方法

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摘要

We propose a new model-based algorithm for the automated tracking of vascular networks in 2-D digital subtraction angiograms. Consecutive scanline profiles are fitted by a parametric imaging model to estimate local vessel center point, radius, edge locations and direction. An adaptive tracking strategy is applied with appropriate termination criteria to track each vessel segment. When tracking stops, to prevent premature termination and to detect bifurcations, a look ahead detection scheme is used to search for possible continuation points of the same vessel segment or those of its bifurcated segments. The proposed algorithm can automatically extract the majority of the vascular network without human interaction other than initializing the start point and direction. Compared to other tracking methods, the proposed method highlights accurate estimation of local vessel geometry. Accurate geometric information and a hierarchical vessel network are obtained which can be used for further quantitative analysis of arterial networks to obtain flow conductance estimates.
机译:我们提出了一种基于模型的新算法,用于在二维数字减影血管造影图中自动跟踪血管网络。连续扫描线轮廓由参数化成像模型拟合,以估计局部血管的中心点,半径,边缘位置和方向。自适应跟踪策略与适当的终止标准一起应用于跟踪每个血管段。当跟踪停止时,为了防止过早终止并检测分支,将使用前瞻性检测方案来搜索同一血管段或其分支段的可能连续点。除了初始化起点和方向以外,所提出的算法可以自动提取大部分血管网络,而无需人工干预。与其他跟踪方法相比,该方法突出了对局部血管几何形状的准确估计。获得了准确的几何信息和分层的血管网络,可将其用于动脉网络的进一步定量分析以获得流量电导率估计值。

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