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Electrophysiology Catheter Detection and Reconstruction From Two Views in Fluoroscopic Images

机译:荧光图像中两种视角的电生理导管检测与重建

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摘要

Electrophysiology (EP) studies and catheter ablation have become important treatment options for several types of cardiac arrhythmias. We present a novel image-based approach for automatic detection and 3-D reconstruction of EP catheters where the physician marks the catheter to be reconstructed by a single click in each image. The result can be used to provide 3-D information for enhanced navigation throughout EP procedures. Our approach involves two X-ray projections acquired from different angles, and it is based on two steps: First, we detect the catheter in each view after manual initialization using a graph-search method. Then, the detection results are used to reconstruct a full 3-D model of the catheter based on automatically determined point pairs for triangulation. An evaluation on 176 different clinical fluoroscopic images yielded a detection rate of 83.4%. For measuring the error, we used the coupling distance which is a more accurate quality measure than the average point-wise distance to a reference. For successful outcomes, the 2-D detection error was mm. Using successfully detected catheters for reconstruction, we obtained a reconstruction error of mm on phantom data. On clinical data, our method yielded a reconstruction error of mm.
机译:电生理(EP)研究和导管消融已成为几种类型的心律不齐的重要治疗选择。我们提出了一种基于图像的新型方法,用于EP导管的自动检测和3-D重建,其中,医师通过单击每个图像中的标记来标记要重建的导管。结果可用于提供3-D信息,以增强整个EP程序的导航。我们的方法涉及从不同角度获取的两个X射线投影,它基于两个步骤:首先,我们使用图形搜索方法在手动初始化后检测每个视图中的导管。然后,基于自动确定的三角测量点对,将检测结果用于重建导管的完整3-D模型。对176幅不同的临床荧光透视图像进行的评估得出检出率为83.4%。为了测量误差,我们使用了耦合距离,它是比到参考点的平均点距更精确的质量度量。对于成功的结果,二维检测误差为mm。使用成功检测到的导管进行重建,我们在幻像数据上获得了mm的重建误差。根据临床数据,我们的方法产生的重建误差为mm。

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