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一种用于心脏导管消融手术患者特异性引导的增强现实系统。

An augmented reality system for patient-specific guidance of cardiac catheter ablation procedures.

作者信息

De Buck Stijn, Maes Frederik, Ector Joris, Bogaert Jan, Dymarkowski Steven, Heidbüchel Hein, Suetens Paul

机构信息

Department of Electrical Engineering, Katholieke Universiteit Leuven, Herestraat 49, 3000 Leuven, Belgium.

出版信息

IEEE Trans Med Imaging. 2005 Nov;24(11):1512-24. doi: 10.1109/TMI.2005.857661.

Abstract

We present a system to assist in the treatment of cardiac arrhythmias by catheter ablation. A patient-specific three-dimensional (3-D) anatomical model, constructed from magnetic resonance images, is merged with fluoroscopic images in an augmented reality environment that enables the transfer of electrocardiography (ECG) measurements and cardiac activation times onto the model. Accurate mapping is realized through the combination of: a new calibration technique, adapted to catheter guided treatments; a visual matching registration technique, allowing the electrophysiologist to align the model with contrast-enhanced images; and the use of virtual catheters, which enable the annotation of multiple ECG measurements on the model. These annotations can be visualized by color coding on the patient model. We provide an accuracy analysis of each of these components independently. Based on simulation and experiments, we determined a segmentation error of 0.6 mm, a calibration error in the order of 1 mm and a target registration error of 1.04 +/- 0.45 mm. The system provides a 3-D visualization of the cardiac activation pattern which may facilitate and improve diagnosis and treatment of the arrhytmia. Because of its low cost and similar advantages we believe our approach can compete with existing commercial solutions, which rely on dedicated hardware and costly catheters. We provide qualitative results of the first clinical use of the system in 11 ablation procedures.

摘要

我们提出了一种通过导管消融辅助治疗心律失常的系统。由磁共振图像构建的患者特异性三维(3-D)解剖模型,在增强现实环境中与荧光透视图像合并,该环境能够将心电图(ECG)测量值和心脏激活时间转移到模型上。通过以下组合实现精确映射:一种适用于导管引导治疗的新校准技术;一种视觉匹配配准技术,使电生理学家能够将模型与对比增强图像对齐;以及使用虚拟导管,其能够在模型上标注多个ECG测量值。这些标注可以通过在患者模型上进行颜色编码来可视化。我们分别对这些组件进行了精度分析。基于模拟和实验,我们确定分割误差为0.6毫米,校准误差约为1毫米,目标配准误差为1.04±0.45毫米。该系统提供心脏激活模式的三维可视化,这可能有助于并改善心律失常的诊断和治疗。由于其成本低且具有类似优势,我们相信我们的方法可以与现有的商业解决方案竞争,现有商业解决方案依赖于专用硬件和昂贵的导管。我们提供了该系统在11例消融手术中的首次临床应用的定性结果。

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