Circus movement in rabbit atrial muscle as a mechanism of tachycardia. II. The role of nonuniform recovery of excitability in the occurrence of unidirectional block, as studied with multiple microelectrodes.
- 1 August 1976
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation Research
- Vol. 39 (2), 168-177
- https://doi.org/10.1161/01.res.39.2.168
Abstract
Periods of tachycardia were induced in isolated segments (15 X 15 mm) of rabbit left atrium by local application of a properly timed premature stimulus. We used a special device for multiple synchronous microelectrode recordings of responses of more than 100 fibers during the initiation of tachycardia. We clearly demonstrated circus movement of the impulse through a small area of atrial muscle as the underlying mechanism. The premature impulse was conducted antegrade in only one direction, whereas in the other directions antegrade conduction failed. The local responses of the fibers in the blocked area served as a temporary obstacle for return of the premature impulse. When these fibers recovered their excitability before extinction of the premature impulse, they were reentered in a retrograde direction, and the impulse traveled in a circular route. During the propagation of a premature beat, local block, which set the stage for circus movement, was caused by nonuniform recovery of excitability of the atrium. We related the spread of activation of a premature impulse to the naturally occurring spatial dispersion in refractory periods and found that local conduction block invariably was associated with an area of delayed restoration of excitability. Artificial induction of differences in refractory periods by regional application of carbamylcholine made it clear that a disparity in refractory periods of only 11-6 msec between adjacent areas may be sufficient to cause local conduction block of a properly timed premature impulse.This publication has 12 references indexed in Scilit:
- Evidence for reentry as a mechanism of cardiac arrhythmiasReviews of physiology, biochemistry and pharmacology, 1975
- Effects of selective vagal and stellate ganglion stimulation on atrial refractorinessCardiovascular Research, 1974
- Newer concepts in the genesis of cardiac arrhythmiasAmerican Heart Journal, 1968
- Physiologic evidence concerning the re-entry hypothesis for ectopic beatsAmerican Heart Journal, 1966
- Mechanisms of Ventricular FibrillationJapanese Heart Journal, 1966
- A computer model of atrial fibrillationAmerican Heart Journal, 1964
- Nonuniform Distribution of Vagal Effects on the Atrial Refractory PeriodAmerican Journal of Physiology-Legacy Content, 1958
- The effect of the cardiac membrane potential on the rapid availability of the sodium‐carrying systemThe Journal of Physiology, 1955
- On dynamic equilibrium in the heartThe Journal of Physiology, 1913