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首页> 外文期刊>Journal of cardiovascular electrophysiology >Endocardial electrogram characteristics of epicardial ventricular arrhythmias
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Endocardial electrogram characteristics of epicardial ventricular arrhythmias

机译:心外膜室性心律失常的心电图特征

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Endocardial Electrograms in Epicardial VT/PVCs Introduction While most ventricular arrhythmias (VA) can be ablated successfully using an endocardial (endo) approach, epicardial (epi) mapping and ablation is sometimes required. There may be suggestive clues on the surface electrocardiogram; however, identification of an epi origin of VA with certainty remains problematic. Methods and Results All patients referred for ablation of ventricular tachycardia or frequent ventricular ectopy from June 2007 to July 2011 were evaluated. Patients with completed endo and epi electroanatomical activation maps of an epi VA were included (n = 10). Bipolar electrograms (EGMs) in the area of earliest endo activation were analyzed and compared to the area of early epi activation. An EGM component was characterized as far field if it was monophasic and there was inability to capture. We identified 3 characteristics from endo mapping that consistently indicated need for epi ablation: (1) Diffusely early activation (2 cm2 region of sites with equally earliest activation within 10 milliseconds). (2) Sequence of a far-field EGM followed by a near-field EGM in the region of earliest endo activation. (3) Inability to capture the far-field component of the earliest EGM (stim-QRS egm-QRS time) or reproduce morphological features of the VA complex with stimulation at the earliest endo site of activation. Conclusions The presence of a diffusely early area of activation and inability to capture a far-field endo EGM indicates that epi ablation may be needed to eliminate a VA.
机译:心外膜VT / PVC中的心内膜电描记法简介尽管可以使用心内膜(内膜)方法成功消融大多数室性心律不齐(VA),但有时仍需要心外膜(epi)定位和消融。表面心电图上可能有暗示性提示;然而,确定VA的Epi起源仍然存在问题。方法和结果对2007年6月至2011年7月间所有因室速或消融频发的患者进行评估。包括完整的Epi VA的内膜和Epi解剖解剖图的患者(n = 10)。分析了最早的内膜激活区域的双极电描记图(EGM),并将其与早期Epi激活区域进行了比较。如果EGM成分是单相的并且无法捕获,则将其表征为远场。我们从内切标图中确定了三个特征,这些特征始终表明需要进行Epi消融:(1)早期弥漫性激活(> 2 cm2的部位区域,在10毫秒内具有同样最早的激活)。 (2)在最早的内在活化区域中,远场EGM随后是近场EGM的序列。 (3)无法捕获最早的EGM的远场成分(stim-QRS

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