【24h】

Left atrium segmentation for atrial fibrillation ablation

机译:左心房分割术治疗房颤

获取原文
获取原文并翻译 | 示例

摘要

Segmentation of the left atrium is vital for pre-operative assessment of its anatomy in radio-frequency catheter ablation (RFC A) surgery. RFC A is commonly used for treating atrial fibrillation. In this paper we present an semi-automatic approach for segmenting the left atrium and the pulmonary veins from MR angiography (MRA) data sets. We also present an automatic approach for further subdividing the segmented atrium into the atrium body and the pulmonary veins. The segmentation algorithm is based on the notion that in MRA the atrium becomes connected to surrounding structures via partial volume affected voxels and narrow vessels, the atrium can be separated if these regions are characterized and identified. The blood pool, obtained by subtracting the pre- and post-contrast scans, is first segmented using a region-growing approach. The segmented blood pool is then subdivided into disjoint subdivisions based on its Euclidean distance transform. These subdivisions are then merged automatically starting from a seed point and stopping at points where the atrium leaks into a neighbouring structure. The resulting merged subdivisions produce the segmented atrium. Measuring the size of the pulmonary vein ostium is vital for selecting the optimal Lasso catheter diameter. We present a second technique for automatically identifying the atrium body from segmented left atrium images. The separating surface between the atrium body and the pulmonary veins gives the ostia locations and can play an important role in measuring their diameters. The technique relies on evolving interfaces modelled using level sets. Results have been presented on 20 patient MRA datasets.
机译:左心房的分割对于射频导管消融(RFC A)手术的术前评估其解剖结构至关重要。 RFC A通常用于治疗房颤。在本文中,我们提出了一种从MR血管造影(MRA)数据集中分割左心房和肺静脉的半自动方法。我们还提出了一种自动方法,可将细分的心房进一步细分为心房体和肺静脉。分割算法基于以下概念:在MRA中,心房通过部分体积受影响的体素和狭窄的血管与周围结构相连,如果对这些区域进行了特征化和识别,则可以将心房分开。首先通过使用区域增长方法将通过减去对比扫描前后的扫描结果获得的血池进行分割。然后根据其欧几里德距离变换将分段的血池细分为不相交的细分。这些细分然后自动从种子点开始合并,并在中庭泄漏到相邻结构的点处停止。由此产生的合并细分产生了分割的中庭。测量肺静脉口的大小对于选择最佳的套索导管直径至关重要。我们提出了第二种技术,用于从分段的左心房图像中自动识别心房体。心房体和肺静脉之间的分隔表面提供了孔口位置,并且在测量其直径方面可以发挥重要作用。该技术依赖于使用级别集建模的不断发展的接口。结果已在20个患者MRA数据集上显示。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号