首页> 外文会议>Visualization, Image-Guided Procedures, and Display; Progress in Biomedical Optics and Imaging; vol.7,no.27 >Integration of real-time X-ray fluoroscopy, rotational X-ray imaging and real-time catheter tracking for improved navigation in interventional cardiac electrophysiology procedures
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Integration of real-time X-ray fluoroscopy, rotational X-ray imaging and real-time catheter tracking for improved navigation in interventional cardiac electrophysiology procedures

机译:实时X射线荧光透视,旋转X射线成像和实时导管跟踪的集成,可改善介入性心脏电生理程序中的导航

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摘要

A novel approach is presented which combines rotational X-ray imaging, real-time fluoroscopic X-ray imaging and realtime catheter tracking for improved guidance in interventional electrophysiology procedures. Rotational X-ray data and real-time fluoroscopy data obtained from a Philips FD10 flat detector X-ray system and are registered with real-time localization data from catheter tracking equipment. The visualization and registration of rotational X-ray data with catheter location data enables the physician to better appreciate the underlying anatomy of interest in three dimensions and to navigate the interventional or mapping device more effectively. Furthermore, the fused information streams from rotational X-ray, real-time X-ray fluoroscopy and real-time three-dimensional catheter locations offer a direct imaging feedback during interventions, facilitating navigation and potentially improving clinical outcome. With the technique one is able to reduce the fluoroscopic time required in a procedure, since the catheter is registered and visualized with off-line projection data from various view angles. We show a demonstrator which integrates, registers, and visualizes the various data streams. It can be implemented in the clinical work-flow with reasonable effort. Results are presented based on an experimental setup. Furthermore, the robustness and the accuracy of this technique have been determined based on phantom studies.
机译:提出了一种新颖的方法,该方法结合了旋转X射线成像,实时荧光X射线成像和实时导管跟踪,以改善介入电生理程序的指导。从Philips FD10平板探测器X射线系统获得的旋转X射线数据和实时荧光检查数据,并与来自导管跟踪设备的实时定位数据进行配准。旋转X射线数据与导管位置数据的可视化和配准,使医生可以更好地了解三维内感兴趣的基础解剖结构,并更有效地导航介入或测绘设备。此外,来自旋转X射线,实时X射线荧光透视法和实时三维导管位置的融合信息流可在干预过程中提供直接的成像反馈,从而有助于导航并可能改善临床结果。利用该技术,能够减少手术所需的荧光检查时间,因为导管是通过离线投影数据从各种视角记录并可视化的。我们展示了一个演示器,它可以集成,注册和可视化各种数据流。它可以通过合理的努力在临床工作流程中实施。结果基于实验设置提供。此外,已基于幻象研究确定了该技术的鲁棒性和准确性。

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