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Journal of Cardiovascular Electrophysiology|March 25, 1999
The molecular and ionic specificity of antiarrhythmic drug actionsS NattelJournal of Cardiovascular Pharmacology|July 1, 1986
Pharmacodynamic studies of amiodarone and its active N-desethyl metaboliteS NattelCirculation|September 1, 1993
Comparative mechanisms of antiarrhythmic drug action in experimental atrial fibrillation. Importance of use-dependent effects on refractorinessJ Wang, G W Bourne, Z Wang, et al.The Journal of Pharmacology and Experimental Therapeutics|April 1, 1987
Interval-dependent effects of lidocaine on conduction in canine cardiac Purkinje fibers: experimental observations and theoretical analysisS NattelThe Journal of Pharmacology and Experimental Therapeutics|April 1, 1987
Relationship between use-dependent effects of antiarrhythmic drugs on conduction and Vmax in canine cardiac Purkinje fibersS NattelCirculation|October 1, 1985
Frequency-dependent effects of amitriptyline on ventricular conduction and cardiac rhythm in dogsS NattelCardiovascular Research|July 11, 1998
Experimental evidence for proarrhythmic mechanisms of antiarrhythmic drugsS NattelJournal of Cardiovascular Electrophysiology|November 26, 1999
Electrophysiologic remodeling: are ion channels static players or dynamic movers?S NattelCirculation|September 7, 2000
Nicotine is a potent blocker of the cardiac A-type K(+) channels. Effects on cloned Kv4.3 channels and native transient outward currentH Wang, H Shi, L Zhang, et al.Circulation|November 28, 2001
Phospholipid metabolite 1-palmitoyl-lysophosphatidylcholine enhances human ether-a-go-go-related gene (HERG) K(+) channel functionJ Wang, H Wang, H Han, et al.Pageof 933