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应用于等距电极阵列的全方位极性标测用于室性心动过速基质标测。

Omnipolarity applied to equi-spaced electrode array for ventricular tachycardia substrate mapping.

机构信息

Dept de Medicina, Universitat de Barcelona, Barcelona and Centro Nacional de Investigaciones Cardiovasculares Carlos III (CNIC), Madrid, Spain.

Department of Medicine, Toronto General Hospital, University Health Network, Toronto, Ontario, Canada.

出版信息

Europace. 2019 May 1;21(5):813-821. doi: 10.1093/europace/euy304.

Abstract

AIMS

Bipolar electrogram (BiEGM)-based substrate maps are heavily influenced by direction of a wavefront to the mapping bipole. In this study, we evaluate high-resolution, orientation-independent peak-to-peak voltage (Vpp) maps obtained with an equi-spaced electrode array and omnipolar EGMs (OTEGMs), measure its beat-to-beat consistency, and assess its ability to delineate diseased areas within the myocardium compared against traditional BiEGMs on two orientations: along (AL) and across (AC) array splines.

METHODS AND RESULTS

The endocardium of the left ventricle of 10 pigs (three healthy and seven infarcted) were each mapped using an Advisor™ HD grid with a research EnSite Precision™ system. Cardiac magnetic resonance images with late gadolinium enhancement were registered with electroanatomical maps and were used for gross scar delineation. Over healthy areas, OTEGM Vpp values are larger than AL bipoles by 27% and AC bipoles by 26%, and over infarcted areas OTEGM Vpp values are 23% larger than AL bipoles and 27% larger than AC bipoles (P < 0.05). Omnipolar EGM voltage maps were 37% denser than BiEGM maps. In addition, OTEGM Vpp values are more consistent than bipolar Vpps showing less beat-by-beat variation than BiEGM by 39% and 47% over both infarcted and healthy areas, respectively (P < 0.01). Omnipolar EGM better delineate infarcted areas than traditional BiEGMs from both orientations.

CONCLUSION

An equi-spaced electrode grid when combined with omnipolar methodology yielded the largest detectable bipolar-like voltage and is void of directional influences, providing reliable voltage assessment within infarcted and non-infarcted regions of the heart.

摘要

目的

双极电图(BiEGM)为基础的底物图受到波前到映射双极的方向的强烈影响。在这项研究中,我们评估了使用等间距电极阵列和全极电图(OTEGMs)获得的高分辨率、无方向依赖性的峰峰值电压(Vpp)图,测量其逐搏一致性,并评估其与两种方向的传统 BiEGM 相比在心肌内描绘病变区域的能力:沿(AL)和跨(AC)阵列样条线。

方法和结果

用Advisor™ HD 网格和研究型 EnSite Precision™系统对 10 头猪(3 头健康,7 头梗死)的左心室心内膜进行了映射。将心脏磁共振成像与晚期钆增强图像进行了配准,并用于大体瘢痕的描绘。在健康区域,OTEGM Vpp 值比 AL 双极高 27%,比 AC 双极高 26%,而在梗死区域,OTEGM Vpp 值比 AL 双极高 23%,比 AC 双极高 27%(P<0.05)。全极电图电压图比 BiEGM 图密集 37%。此外,OTEGM Vpp 值比双极 Vpp 值更一致,在梗死区和健康区分别比 BiEGM 减少了 39%和 47%的逐搏变化(P<0.01)。与传统的 BiEGM 相比,OTEGM 可以更好地描绘两种方向的梗死区域。

结论

当等间距电极网格与全极方法结合使用时,可以产生最大可检测的双极样电压,并且没有方向影响,在心脏的梗死和非梗死区域提供可靠的电压评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a615/6479413/d2469ffa6b2c/euy304f1.jpg

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