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单轴传感器技术多电极导管在猪模型中用于高密度电生理标测的初步经验。

Initial experience with a multielectrode catheter equipped with the single-axis sensor technology for high-density electroanatomical mapping in a swine model.

机构信息

Heart Center, Massachusetts General Hospital, Boston, Massachusetts 02214, USA.

出版信息

J Cardiovasc Electrophysiol. 2010 Dec;21(12):1403-7. doi: 10.1111/j.1540-8167.2010.01829.x.

Abstract

INTRODUCTION

magnetic-based electroanatomical mapping systems are widely used during catheter ablation. Currently, the size of the sensor incorporated in the catheter to allow its localization is large, prohibiting the placement of more than one sensor on any single catheter. As a result, multielectrode catheters cannot be tracked by the magnetic-based mapping systems. Single-axis sensors (SAS) are new generation sensors that are significantly smaller in size. The small size of these new sensors allows the placement of more than one sensor on each catheter, allowing the tracking of multielectrode catheters. The objective of this study is to test the feasibility of creating high-density magnetic electroanatomical maps using a new generation multielectrode catheter equipped with the SAS technology.

METHODS AND RESULTS

anatomical reconstruction of cardiac chambers and the aorta, together with activation mapping of the right atrium during both sinus rhythm and pacing-induced premature atrial contractions (PACs), were performed in 5 swine using both a conventional mapping catheter and the novel multielectrode catheter equipped with SAS. The multielectrode mapping provided a detailed definition of cardiac anatomy while requiring shorter acquisition times. In addition, mapping of PACs origin was significantly faster using the multielectrode catheter.

CONCLUSION

the novel multielectrode catheter equipped with the SAS technology can be used in combination with magnetic electroanatomical mapping systems to generate high-density anatomical reconstructions and activation maps.

摘要

简介

基于磁的电解剖映射系统在导管消融术中被广泛应用。目前,集成在导管中以允许其定位的传感器的尺寸较大,禁止在任何单个导管上放置多个传感器。因此,多电极导管无法被基于磁的映射系统跟踪。单轴传感器(SAS)是新一代的传感器,其尺寸明显更小。这些新传感器的小巧尺寸允许在每个导管上放置多个传感器,从而能够跟踪多电极导管。本研究的目的是测试使用配备 SAS 技术的新一代多电极导管创建高密度磁电解剖图的可行性。

方法和结果

使用传统的映射导管和配备 SAS 的新型多电极导管,在 5 头猪中进行了心脏腔室和主动脉的解剖重建,以及窦性节律和起搏诱导的房性期前收缩(PACs)期间的右心房激活映射。多电极映射在需要更短采集时间的情况下,提供了对心脏解剖结构的详细定义。此外,使用多电极导管进行 PAC 起源的映射明显更快。

结论

配备 SAS 技术的新型多电极导管可与磁电解剖映射系统结合使用,以生成高密度的解剖重建和激活图。

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