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August 1, 1993Journal of Cardiovascular Electrophysiology20 citations

Effects of Overdrive Stimulation on Functional Reentrant Circuits Causing Ventricular Tachycardia in the Canine Heart:

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SDStephen M. DillonJCJames CoromilasBWBernd Waldecker

Key Result

Overdrive stimulation of functional reentrant circuits in infarcted canine ventricles can either maintain the original circuit or alter it, leading to changes in QRS morphology or fibrillation.

Structured PICO

Does overdrive stimulation alter functional reentrant circuits causing ventricular tachycardia in infarcted canine ventricles?

P
Population
Infarcted canine ventricles (canine heart model)
I
Intervention
Overdrive stimulation
O
Outcome
Effects on reentrant circuits and characteristics of tachycardia (activation patterns, QRS morphology, cycle length)surrogate

Overdrive stimulation of ventricular tachycardia in infarcted canine hearts can either maintain or alter functional reentrant circuits, providing a mechanistic explanation for clinical observations during overdrive pacing.

Abstract

INTRODUCTION: The purpose of the experiments described in this article was to investigate the effects of overdrive stimulation on functional anisotropic reentrant circuits causing ventricular tachycardia in infarcted canine ventricles. We determined how overdrive stimuli affect reentrant circuits to alter characteristics of the tachycardia. METHODS AND RESULTS: Activation patterns were determined by mapping excitation with a 192 bipolar electrode array. We found that overdrive stimuli could activate the circuits with the same pattern as the reentrant wavefront and that after overdrive stopped either the last or the next to last stimulated wavefront continued propagating through the circuit as a new reentrant impulse and tachycardia continued. When the circuit was not altered after overdrive, the exit route that the stimulated wavefront took from the circuit to activate the rest of the ventricles was also not altered and the tachycardia after overdrive had the same cycle length and QRS morphology as prior to overdrive. In some experiments, however, the overdrive stimuli did not follow the original reentrant pathway but led to the formation of a different circuit with a different exit route to the ventricles. As a result, after overdrive stimulation tachycardia had a different QRS morphology and cycle length than prior to stimulation. When the new circuit after overdrive was small and the revolution time of the reentrant impulse around the circuit was short, fibrillation occurred. CONCLUSION: Functional reentrant circuits can either be maintained or altered after a period of overdrive stimulation. The results explain many of the effects that have been seen during overdrive stimulation of clinical ventricular tachycardia.

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Cite This Study

Dillon et al. (1993) studied Ventricular tachycardia in infarcted canine ventricles. Overdrive stimulation was evaluated on Activation patterns and characteristics of tachycardia. Overdrive stimulation of functional reentrant circuits in infarcted canine ventricles can either maintain the original circuit or alter it, leading to changes in QRS morphology or fibrillation.

synapsesocial.com/papers/6a0f7a2f2badbc352afe39d3https://doi.org/10.1111/j.1540-8167.1993.tb01279.x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Overdrive stimulation of functional reentrant circuits causing ventricular tachycardia in the infarcted canine heart. Resetting and entrainment.1993 · 51 citations
  2. 2Reentrant Ventricular Arrhythmias in the Late Myocardial Infarction Period: 14. Mechanisms of Resetting, Entrainment, Acceleration, or Termination of Reentrant Tachycardia by Programmed Electrical Stimulation1987 · 89 citations
  3. 3Overdrive pacing of early ischemic ventricular tachycardia: evidence for both reentry and triggered activity2005 · 8 citations
  4. 4Observations on rapid ventricular pacing during reentrant ventricular tachycardia in canine myocardial infarction. The use of epicardial mapping in demonstrating the modes of resetting, concealed perpetuation and termination of reentry.1988 · 7 citations
  5. 5The relationship between overdrive suppression and overdrive excitation in ventricular pacemakers in dogs.1976 · 34 citations