Literature DB >> 11502711

His electrogram alternans reveal dual-wavefront inputs into and longitudinal dissociation within the bundle of His.

Y Zhang1, S Bharati, K A Mowrey, S Zhuang, P J Tchou, T N Mazgalev.   

Abstract

BACKGROUND: His electrogram (HE) amplitude and morphology changes were observed in our previous studies during transition from "fast" to "slow" atrioventricular nodal (AVN) conduction. This phenomenon and its significance for the dual-AVN electrophysiology are not well recognized and have not been studied. METHODS AND
RESULTS: Experiments were performed on 17 healthy rabbit atrial-AVN preparations during standard programmed electrical pacing. HEs were mapped along the His bundle with roving surface electrodes, along with recording of cellular action potentials (APs). HEs recorded from the superior margin of the His bundle were of greater amplitude during basic beats and decreased substantially, by 42+/-19% (P<0.01), when premature A(1)A(2) shortened to 178+/-20 ms. In contrast, the HEs from the inferior margin increased dramatically, 2.9+/-1.7 times (P<0.01), during short A(1)A(2) and remained high until AVN block occurred. In addition, during long A(1)A(2), the superior HEs consistently preceded the inferior by 1.9+/-0.7 ms. In contrast, at short A(1)A(2), the superior HEs occurred 2.7+/-0.8 ms after the inferior. Cellular AP recordings demonstrated clearly the presence of and the transition between early (fast) and late (slow) excitation wavefronts that accompanied HE alternans.
CONCLUSIONS: The morphological-electrophysiological evidence from the AV junction suggests that fast and slow wavefronts reach the His bundle differently, producing functional longitudinal dissociation into 2 domains. The characteristic HE alternans recorded from these domains are a new sensitive tool to determine the presence of distinctly different wavefronts and their participation in the conduction during reentrant or other arrhythmias. These findings provide further understanding of the mechanisms of dual-AVN electrophysiology.

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Year:  2001        PMID: 11502711     DOI: 10.1161/hc3301.092804

Source DB:  PubMed          Journal:  Circulation        ISSN: 0009-7322            Impact factor:   29.690


  9 in total

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2.  Stable patterns of AH block arising from longitudinal dissociation and reentry within the superfused rabbit AV junction.

Authors:  Eugene Patterson; Benjamin J Scherlag; Ralph Lazzara
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3.  In vivo recording of Zhang's phenomenon (His electrogram alternans): a novel index of atrioventricular node dual pathway conduction.

Authors:  Youhua Zhang
Journal:  J Interv Card Electrophysiol       Date:  2014-06-04       Impact factor: 1.900

Review 4.  Anatomy and electrophysiology of the human AV node.

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Review 5.  His electrogram alternans (Zhang's phenomenon) and a new model of dual pathway atrioventricular node conduction.

Authors:  Youhua Zhang
Journal:  J Interv Card Electrophysiol       Date:  2015-11-27       Impact factor: 1.900

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Review 8.  Connexins and the atrioventricular node.

Authors:  Ian P Temple; Shin Inada; Halina Dobrzynski; Mark R Boyett
Journal:  Heart Rhythm       Date:  2012-10-22       Impact factor: 6.343

9.  Ex vivo, microelectrode analysis of conduction through the AV node of wild-type and Nkx2-5 mutant mouse hearts as guided by a Cx40-eGFP transgenic reporter.

Authors:  Avihu Z Gazit; Alex Li; Jacob S Choi; Lucile Miquerol; Patrick Y Jay
Journal:  Physiol Rep       Date:  2014-04-22
  9 in total

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