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利用新型介电系统实现人体高分辨率、实时、无荧光透视三维心脏成像和导管导航。

High-resolution, real-time, and nonfluoroscopic 3-dimensional cardiac imaging and catheter navigation in humans using a novel dielectric-based system.

机构信息

E. Meshalkin National Medical Research Center of the Ministry of Health of the Russian Federation, Novosibirsk, Russia.

EPD Research, Caesarea, Israel.

出版信息

Heart Rhythm. 2019 Dec;16(12):1883-1889. doi: 10.1016/j.hrthm.2019.06.020. Epub 2019 Jun 27.

Abstract

BACKGROUND

Catheter navigation and 3-dimensional (3D) cardiac mapping are essential components of minimally invasive electrophysiological procedures.

OBJECTIVE

The purpose of this study was to develop a novel 3D mapping system (KODEX - EPD, EPD Solutions, Best, The Netherlands) that measures changing electric field gradients induced on intracardiac electrodes to enable catheter localization and real-time 3D cardiac mapping.

METHODS

We first validated the accuracy of the system's measurement and localization capabilities by comparing known and KODEX - EPD-measured distances and locations at 12 anatomical landmarks in both the atria and ventricles of 4 swine. Next, in vivo images of 3D porcine cardiac anatomy generated by KODEX - EPD and widely used CARTO 3 system (Biosense Webster, Inc., Diamond Bar, CA) were compared with gold standard computed tomography images acquired from the same animals. Finally, 3D maps of atrial anatomy were created for 22 patients with paroxysmal atrial fibrillation (Dielectric Unravelling of Radiofrequency ABLation Effectiveness trial).

RESULTS

First, the mean error between known and measured distances was 1.08 ± 0.11 mm (P < .01) and the overall standard deviation between known and measured locations in 12 areas of the porcine heart was 0.35 mm (P < .01). Second, an expert comparison of 3D image quality revealed that KODEX - EPD is noninferior to CARTO 3. Third, the system enabled 3D imaging of atrial anatomy in humans, provided real-time images of atrioventricular valves, and detected important anatomical variations in a subset of patients.

CONCLUSION

The KODEX - EPD system is a novel 3D mapping system that accurately detects catheter location and can generate high-resolution images without the need for preacquired imaging, specialty catheters, or a point-by-point mapping procedure.

摘要

背景

导管导航和三维(3D)心脏标测是微创电生理程序的重要组成部分。

目的

本研究旨在开发一种新型的 3D 标测系统(KODEX-EPD,EPD Solutions,Best,荷兰),该系统通过测量心内电极上诱导的变化电场梯度来实现导管定位和实时 3D 心脏标测。

方法

我们首先通过在 4 头猪的心房和心室的 12 个解剖学标志处比较已知和 KODEX-EPD 测量的距离和位置,验证了系统测量和定位能力的准确性。接下来,比较了 KODEX-EPD 和广泛使用的 CARTO 3 系统(Biosense Webster,Inc.,Diamond Bar,CA)生成的 3D 猪心脏解剖图像与来自同一动物的金标准计算机断层扫描图像。最后,为 22 例阵发性心房颤动患者(Dielectric Unravelling of Radiofrequency ABLation Effectiveness 试验)创建了心房解剖 3D 图谱。

结果

首先,已知和测量距离之间的平均误差为 1.08±0.11mm(P<.01),12 个猪心区域的已知和测量位置之间的总体标准偏差为 0.35mm(P<.01)。其次,专家比较 3D 图像质量显示,KODEX-EPD 不劣于 CARTO 3。第三,该系统能够实现人类心房解剖的 3D 成像,提供房室瓣的实时图像,并在一部分患者中检测到重要的解剖变异。

结论

KODEX-EPD 系统是一种新型的 3D 标测系统,能够准确检测导管位置,并能够生成高分辨率图像,而无需预先获取图像、专用导管或逐点标测程序。

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