Key result
Varying the extrasystole coupling interval and compensatory pause in isolated canine hearts showed that postextrasystolic potentiation decays always contain exponential and sinusoidal components.
In canine hearts, postextrasystolic potentiation decay consistently contains exponential and sinusoidal components, validating an alternative method for determining calcium recirculation fraction.
Requires validation in human myocardium before any clinical consideration; extends mechanistic models of calcium recirculation in isolated preparations.
In isolated, blood-perfused canine hearts, postextrasystolic potentiation (PESP) decays monotonically after a noncompensatory pause following a spontaneous extrasystole (ES). The monotonic PESP decay yields myocardial internal Ca(2+) recirculation fraction (RF). We have found that after a compensatory pause (CP), PESP decays in alternans, consisting of an exponential and a sinusoidal decay component. We have proposed that this exponential component also yields RF. In the present study, we examined the reliability of this alternative method by widely changing the ES coupling interval (ESI), CP, and heart rate in the canine excised, cross-circulated left ventricle. We found that all PESP decays consisted of the sum of an exponential and a sinusoidal decay component of variable magnitudes whether a CP existed or not. Their decay constants as well as the calculated RF were independent of the ESI and CP. This confirmed the utility of our alternative RF determination method regardless of the ESI, CP, and heart rate. Direct experimental evidence of Ca(2+) dynamics supportive of this alternative method, however, remains to be obtained.
No takes yet. Share an insight, caveat, or question.
Shimizu et al. (2000) studied Canine heart physiology. Varying extrasystole coupling interval, compensatory pause, and heart rate was evaluated on Postextrasystolic potentiation (PESP) decay components and calculated RF. Varying the extrasystole coupling interval and compensatory pause in isolated canine hearts showed that postextrasystolic potentiation decays always contain exponential and sinusoidal components.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: