Mechanically dependent changes in action potentials recorded from the intact frog ventricle.
- 1 April 1978
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation Research
- Vol. 42 (4) , 519-528
- https://doi.org/10.1161/01.res.42.4.519
Abstract
The wall of the ventricle contracts inhomogeneously during an isovolumic beat of an isolated, intact frog ventricle. Some epicardial segments actually lengthen while the pressure is rising. Almost simultaneously, the early repolarization phase of the monophasic action potential recorded from such a segment is accelerated, compared to the same phase for an isotonic beat in which the segment shortens. Segment lengthening during the isovolumic beat also may be seen during the late repolarization phase when, in contract to the above, it produces an afterdepolarization. These electrical changes disappear when isotonic contraction is restored. Corroborative findings were obtained from microelectrode and insulated gap recordings from isolated frog ventricular strip. Both electrical changes can be seen clearly when the segment is lengthened by intraventricular injections of Ringer's solution. There also is a short transition period toward the end of the action potential plateau when lengthening produces neither depolarization nor repolarization. The accelerated repolarization is manifest as a shortening of the Q-T interval in the ventricular electrogram. In all experimental preparations, the afterdepolarizations reached threshold for a propagated action potential. This mechanism may explain the generation of extrasystoles in myocardial ischemia.This publication has 28 references indexed in Scilit:
- Length-dependent electromechanical coupling in single muscle fibers.The Journal of general physiology, 1976
- Dependence of the contractile activation of skinned cardiac cells on the sarcomere lengthNature, 1975
- The contribution of activation processes to the length–tension relation of cardiac muscleNature, 1974
- Mechanical and Electrical Oscillations in Cardiac Muscle of the TurtleThe Journal of general physiology, 1973
- Heart: Excitation-Contraction CouplingAnnual Review of Physiology, 1973
- Excitation-contraction coupling in heart muscle: Membrane control of development of tensionProgress in Biophysics and Molecular Biology, 1973
- The effect of 2,4‐dinitrophenol on electrical and mechanical activity, metabolism and ion movements in guinea‐pig ventricular muscleBritish Journal of Pharmacology, 1972
- Swelling of the Transverse Tubular System in Frog SartoriusThe Journal of general physiology, 1969
- Action Potentials without Contraction in Frog Skeletal Muscle Fibers with Disrupted Transverse TubulesScience, 1967
- Some Relations between Changes in the Linear Electrical Properties of Striated Muscle Fibers and Changes in UltrastructureThe Journal of general physiology, 1967