Key result
Increased inotropic state via raised external calcium or stimulation frequency shortened action potentials, and D600 abolished the dependence of action potential duration on preceding stimulation interval.
The study suggests an inverse relationship between the amount of calcium in a membrane compartment and action potential duration in rabbit myocardium.
Hypothesis-generating for calcium-APD coupling in myocardium; leaves open human translation and clinical relevance.
It has been suggested that the amount of calcium in the myocardial cell determines force production as well as the duration of the action potential. We have examined two factors proposed to determine the action potential duration: (1) the inotropic state of the muscle and (2) the preceding stimulation interval. The experiments were performed on isolated papillary muscles from rabbits. The preparations were stimulated to contrast isometrically at a temperature of 37 degrees C and intracellular recordings of action potentials were made. An increased inotropic state produced either by raised external calcium concentration or by increased stimulation frequency was associated with shortened action potentials, confirming factor (1) above. The dependence of the action potential duration on the preceding stimulation interval (factor (2) above) disappeared over a wide range of intervals when the preparation was exposed to 4 microM D600. The action potential duration was, however, still dependent on the preceding stimulation interval when the extracellular calcium concentration had been lowered from 2.0 mM to 1.0 and 0.5 mM respectively. The results are discussed in terms of a model which postulates an inverse relationship between the amount of calcium in a membrane compartment and the action potential duration.
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Jóhannsson et al. (1980) studied Isolated rabbit papillary muscles. Raised external calcium concentration, increased stimulation frequency, and D600 was evaluated on Action potential duration. Increased inotropic state via raised external calcium or stimulation frequency shortened action potentials, and D600 abolished the dependence of action potential duration on preceding stimulation interval.
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