Electrotonic interactions in delayed propagation and block within the guinea pig SA node

Author:

Lipsius S. L.

Abstract

The influence of electrotonic interactions on propagation within the SA node was studied by recording transmembrane potentials simultaneously from two neighboring (less than 1 mm apart) subsidiary pacemaker cells within the sinoatrial (SA) node of the guinea pig. As single premature stimuli were delivered progressively earlier in diastole, retrograde propagation between cells was delayed progressively. Cells activated earlier displayed secondary depolarizations that were coincident with the depolarization of neighboring cells activated later. The secondary depolarizations increased action potential duration markedly. Rapid pacing elicited secondary depolarizations that resulted in a progressive increase in action potential duration and decrease in upstroke amplitude. These changes were associated with a progressive delay in retrograde propagation that led to intermittent block with Wenckebach periodicity. Exposure to tetrodotoxin (10(-5) g/ml) delayed antegrade propagation, resulting in electrotonically mediated secondary depolarizations and exit block with Wenckebach periodicity. It is concluded that delayed activation and electrotonically mediated interactions between cells can increase action potential duration and refractoriness. These changes contribute to progressive delays in propagation that may result in intermittent block with Wenckebach periodicity within the SA node.

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Autonomic Control of the Location and Rate of the Cardiac Pacemaker in the Sinoatrial Fat Pad of Parasympathetically Denervated Dog Hearts;Journal of Cardiovascular Electrophysiology;2002-09

2. Three ways of abolishing automaticity in sinoatrial node: ionic modeling and nonlinear dynamics;American Journal of Physiology-Heart and Circulatory Physiology;1992-04-01

3. Ionic Basis of the Wenckebach Phenomenon;Institute for Nonlinear Science;1991

4. Phase dependency of electrotonic spread of hyperpolarizing current pulses in the rabbit sinoatrial node;Journal of Molecular and Cellular Cardiology;1990-04

5. Electrophysiology of functional subsidiary pacemakers in canine right atrium;American Journal of Physiology-Heart and Circulatory Physiology;1985-09-01

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