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EREL Selection Using Morphological Relation

机译:使用形态关系的EREL选择

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This work concentrates on Extremal Regions of Extremum Level (EREL) selection. EREL is a recently proposed feature detector aiming at detecting regions from a set of extremal regions. This is a branching problem derived from segmentation of arterial wall boundaries from Intravascular Ultrasound (IVUS) images. For each IVUS frame, a set of EREL regions is generated to describe the luminal area of human coronary. Each EREL is then fitted by an ellipse to represent the luminal border. The goal is to assign the most appropriate EREL as the lumen. In this work, EREL selection carries out in two rounds. In the first round, the pattern in a set of EREL regions is analyzed and used to generate an approximate luminal region. Then, the two-dimensional (2D) correlation coefficients are computed between this approximate region and each EREL to keep the ones with tightest relevance. In the second round, a compactness measure is calculated for each EREL and its fitted ellipse to guarantee that the resulting EREL has not affected by the common artifacts such as bifurcations, shadows, and side branches. We evaluated the selected ERELs in terms of Hausdorff Distance (HD) and Jaccard Measure (JM) on the train and test set of a publicly available dataset. The results show that our selection strategy outperforms the current state-of-the-art.
机译:这项工作集中于极值水平的极值区域(EREL)选择。 EREL是最近提出的一种特征检测器,旨在从一组极端区域中检测区域。这是源自血管内超声(IVUS)图像的动脉壁边界分割的分支问题。对于每个IVUS帧,都会生成一组EREL区域来描述人类冠状动脉的腔区域。然后用椭圆拟合每个EREL,以表示腔边界。目标是分配最合适的EREL作为流明。在这项工作中,EREL的选择分两轮进行。在第一轮中,分析一组EREL区域中的图案,并将其用于生成近似腔区域。然后,在此近似区域与每个EREL之间计算二维(2D)相关系数,以保持相关性最紧密。在第二轮中,将为每个EREL及其拟合的椭圆计算一个紧密度度量,以确保所得的EREL不受诸如分支,阴影和侧枝之类的常见伪影的影响。我们根据火车上的Hausdorff距离(HD)和Jaccard度量(JM)和公开数据集的测试集评估了选定的EREL。结果表明,我们的选择策略优于当前的最新技术。

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