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February 24, 2003Circulation39 citationsOpen Access

His Electrogram Alternans Reveal Dual Atrioventricular Nodal Pathway Conduction During Atrial Fibrillation

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YZYouhua ZhangSBSaroja BharatiKMKent A. Mowrey

Structured PICO

Does slow-pathway modification guided by His electrogram alternans increase the His-His interval during atrial fibrillation in rabbit AVN preparations?

P
Population
12 rabbit atrioventricular nodal (AVN) preparations
I
Intervention
Slow-pathway (SP) modification guided by His electrogram (HE) alternans during atrial fibrillation
C
Comparator
Baseline (before SP modification)
O
Outcome
Change in average His-His interval and presence of dual pathways indicated by HE alternanssurrogate

His electrogram alternans can identify dual-pathway AV nodal conduction during AF and guide selective slow-pathway ablation to slow the ventricular rate in a rabbit model.

Abstract

BACKGROUND: Traditional tools to study dual-pathway atrioventricular nodal (AVN) electrophysiology are not applicable in subjects with permanent atrial fibrillation (AF). The presence of fast-pathway (FP) and slow-pathway (SP) wavefronts and their possible modification remain uncertain in this condition. We demonstrated previously that His electrogram (HE) alternans can determine whether the FP or the SP reaches the His bundle on a beat-by-beat basis. We have now applied this novel index to monitor dual-pathway conduction and the effects of SP modification during AF. METHODS AND RESULTS: In 12 rabbit AVN preparations, HE alternans were confirmed during a standard A(1)A(2) pacing protocol. During AF, in 9 of the 12 hearts, HE alternans indicated the presence of dual pathways. Successful SP modification guided by the HE alternans eliminated the SP, resulting in a predominantly FP conduction during AF in all hearts. This increased the average His-His interval (204+/-14 versus 276+/-51 ms, P<0.001). Morphological studies revealed that SP modification damaged only the posterior extension of the AVN. CONCLUSIONS: We have demonstrated for the first time in rabbits that HE alternans permit "visualization" of dual-pathway electrophysiology and confirmed the presence of both FP and SP wavefronts during AF. This novel index has been used in a selective SP ablation that resulted in a significant slowing of the ventricular rate. HE alternans provide a new insight into the mechanisms of AVN conduction and could guide AVN modification for ventricular rate control in AF clinically.

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Zhang et al. (2003) studied this question.

synapsesocial.com/papers/6a21c3f03f99faaa70eca971https://doi.org/10.1161/01.cir.0000051464.52601.f4
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