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Electrophysiologic mechanisms for modification and abolition of atrioventricular junctional tachycardia with simultaneous and sequential atrial and ventricular pacing.
Author(s) -
M Akhtar,
C J Gilbert,
Mamoun B. Al-Nouri,
Donald H. Schmidt
Publication year - 1979
Publication title -
circulation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 7.795
H-Index - 607
eISSN - 1524-4539
pISSN - 0009-7322
DOI - 10.1161/01.cir.60.7.1443
Subject(s) - medicine , cardiology , atrial fibrillation , tachycardia
SUMMARYThe role of simultaneous and sequential atrioventricular (AV) stimulation in prevention of tachyeardia induction, and the underlying electrophysiologic mechanisms involved, were studied in 10 patients with documented paroxysmal reentrant supraventricular tachycardia (PSVT). Reentry circuit was localized to the AV node in seven of 10. The remaining three cases had Wolff-Parkinson-White (WPW) syndrome and the reentrant circuit retrogradely incorporated an accessory pathway. Progressively earlier atrial premature beats (A2) were introduced while the basic cycle length (BCL) consisted of either atrial pacing alone or simultaneous A and V pacing. Compared with atrial pacing alone, simultaneous A and V pacing during the basic drive completely abolished the PSVT zone in two of seven with AV nodal reentrant PSVT, narrowed the zone in four of seven and facilitated PSVT induction in the other patient. In all patients with AV nodal reentry, significant shortening of AV nodal refractoriness caused by simultaneous antegrade and retrograde AV nodal excitation was responsible for the results. In the three patients with ventricular preexcitation, simultaneous A and V pacing abolished or shortened the PSVT zone in the two cases with type B WPW, but had no effect in the other case (with type A WPW). Introduction of programmed ventricular premature complexes after A2 capable of initiating PSVT (sequential AV premature stimulation) prevented PSVT induction by prematurely interrupting the reentry pathway in all instances. Sequential AV premature stimulation was more effective in preventing PSVT when the BCL consisted of simultaneous A and V pacing than was atrial pacing alone. We conclude that simultaneous or sequential AV pacing can either abolish or significantly narrow the PSVT zone, although paradoxical facilitation of reentrant process can occur.

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