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A fast catheter segmentation and tracking from echocardiographic sequences based on corresponding X-ray fluoroscopic image segmentation and hierarchical GRAPH modelling

机译:基于相应的X射线荧光透视图像分割和分级图建模的超声心动图序列的快速导管分割和跟踪

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3D soft tissue information, which X-ray images cannot provide but 3D echocardiographic imaging can, may be required in cardiac catheter-based interventions. In this paper, we propose a real-time catheter tracking strategy in echocardiographic sequences based on catheter segmentation in 2D X-ray images and registration between these two modalities. Firstly the segmentation from X-ray and the registration between X-ray and ultrasound is computed. The results from these steps reduce the search space in the ultrasound volume to a limited space surrounding a curved surface. This space is straightened and 2D SURF is calculated on the sampled cross-sections. All features are organized as a two level hierarchical graph. The longest path on the top-level graph and shortest paths on the bottom level graphs are solved. This combined path is considered as the potential catheter after B-Spline modelling and growing. The experiments on clinical data (2000 pairs of frames) show a better performance than a previous method and some dominant vesselness filters.
机译:三维的软组织信息,其X射线图像不能提供但三维超声心动图显像罐,也可以在心脏导管为基础的干预是必需的。在本文中,我们提出基于在2D X射线图像导管分割和配准这两个模式之间的超声心动图序列的实时导管跟踪策略。首先从X射线和X射线和超声之间的配准的分割计算。从这些步骤的结果减少超声体积的搜索空间向周围的弯曲表面的有限的空间。该空间被拉直和2D SURF是所采样的横截面计算。所有功能组织成两级分层图。在顶层图形和底部电平曲线图的最短路径的最长路径都解决了。该组合路径被认为是后B样条曲线建模和生长潜力导管。临床数据的实验(2000帧对)表现出比以前的方法和一些主要的血管性过滤器具有更好的性能。

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