Effects of pirmenol hydrochloride on the spontaneous action potentials and membrane current systems of rabbit sinoatrial node cells.
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J. Hasegawa | H. Kotake | H. Mashiba | T. Kinugawa | S. Hirai | T. Ito | J. Yamasaki
[1] J. Hasegawa,et al. Effect of class I antiarrhythmic agents on slow Ca2+ channels of myocardial cells. , 1988, Japanese circulation journal.
[2] T. Campbell. Differing electrophysiological effects of class IA, IB and IC antiarrhythmic drugs on guinea‐pig sinoatrial node , 1987, British journal of pharmacology.
[3] J. Toyama,et al. Block of activated and inactivated sodium channels by class-I antiarrhythmic drugs studied by using the maximum upstroke velocity (Vmax) of action potential in guinea-pig cardiac muscles. , 1987, Journal of molecular and cellular cardiology.
[4] I. Hisatome,et al. Inhibitory action of 711389-S on the electrical activity of rabbit sinoatrial node. , 1987, Cardiovascular research.
[5] K. Kamiya,et al. Frequency- and Voltage‐Dependent Effects of Aprindine on the Upstroke Velocity of Action Potential in Guinea Pig Ventricular Muscles , 1987, Journal of Cardiovascular Pharmacology.
[6] H. Kotake,et al. Electrophysiological actions of mexiletine on rabbit sinoatrial node cells. , 1986, European journal of pharmacology.
[7] I. Dukes,et al. Electrophysiological and Cardiovascular Effects of Pirmenol, a New Class 1 Antiarrhythmic Drug , 1986, Journal of cardiovascular pharmacology.
[8] M. Ninomiya,et al. Electrophysiological effects of 711389-S, a new antiarrhythmic agent, on guinea-pig isolated cardiac muscle. , 1984, Journal of cardiovascular pharmacology.
[9] J. Anderson,et al. Pirmenol for control of ventricular arrhythmias: oral dose-ranging and short-term maintenance study. , 1984, The American journal of cardiology.
[10] H. Brown. Electrophysiology of the sinoatrial node. , 1982, Physiological reviews.
[11] E. Pritchett,et al. Pirmenol, A New Antiarrhythmic Agent: Initial Study of Efficacy, Safety and Pharmacokinetics , 1982, Circulation.
[12] K. Courtney. Interval-dependent effects of small antiarrhythmic drugs on excitability of guinea-pig myocardium. , 1980, Journal of molecular and cellular cardiology.
[13] M. Rosen,et al. Effects of pirmenol HCl on electrophysiologic properties of cardiac Purkinje fibers. , 1980, European journal of pharmacology.
[14] A E Becker,et al. Functional and Morphological Organization of the Rabbit Sinus Node , 1980, Circulation research.
[15] B. Katzung,et al. Time- and voltage-dependent interactions of antiarrhythmic drugs with cardiac sodium channels. , 1977, Biochimica et biophysica acta.
[16] B. Hille,et al. Local anesthetics: hydrophilic and hydrophobic pathways for the drug- receptor reaction , 1977, The Journal of general physiology.
[17] J. Hasegawa,et al. Studies on the bradycardia induced by aprindine in rabbit sinoatrial node cells. , 1986, Pharmacology.
[18] J. Hasegawa,et al. Electrophysiological effect of disopyramide on rabbit sinus node cells. , 1985, Journal of electrocardiology.
[19] A. Noma,et al. Kinetics and rectification of the slow inward current in the rabbit sinoatrial node cell. , 1981, The Japanese journal of physiology.
[20] H. Irisawa,et al. Effect of procaine amide on the membrane currents of the sino-atrial node cells of rabbits. , 1981, The Japanese journal of physiology.
[21] Williams,et al. Classification of antiarrhythmic drugs , 1975 .