Reductions in extracellular calcium or sodium concentration decreased the slope of phase 4 depolarization and reduced the range of maximum diastolic potentials and thresholds in guinea pig papillary muscles.
Various extracellular calcium and sodium concentrations and tetrodotoxin
Depolarization-induced automaticity (slope of phase 4 depolarization, maximum diastolic potentials, thresholds)
Regenerative discharge of action potentials is induced in mammalian papillary muscles by passage of small depolarizing currents. In this paper, the effects of various extracellular calcium and sodium concentrations and of tetrodotoxin on this phenomenon were studied in guinea pig papillary muscles in a sucrose gap chamber. Phase 4 diastolic depolarization was found to be associated with an increase in membrane resistance. The slope of phase 4 depolarization was decreased by reductions in extracellular calcium or sodium concentration. The range of maximum diastolic potentials and the thresholds from which regenerative potentials arose were reduced, especially at the positive limit of potentials, by a reduction in either ion. It was concluded that both calcium and sodium influence diastolic depolarization and participate in the regenerative action potentials of depolarization-induced ventricular automaticity.
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Bertram G. Katzung
Northwestern University
Circulation Research
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Bertram G. Katzung (Tue,) reported a other. Various extracellular calcium and sodium concentrations and tetrodotoxin was evaluated on Depolarization-induced automaticity (slope of phase 4 depolarization, maximum diastolic potentials, thresholds). Reductions in extracellular calcium or sodium concentration decreased the slope of phase 4 depolarization and reduced the range of maximum diastolic potentials and thresholds in guinea pig papillary muscles.
synapsesocial.com/papers/6a23a3e7c1f1c7a6bca04cc2 — DOI: https://doi.org/10.1161/01.res.37.1.118