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One or more keywords matched the following items that are connected to Burashnikov, Alexander
Item TypeName
Concept Dogs
Academic Article Prominent I(Ks) in epicardium and endocardium contributes to development of transmural dispersion of repolarization but protects against development of early afterdepolarizations.
Academic Article Cellular mechanisms underlying the development of catecholaminergic ventricular tachycardia.
Academic Article Role of repolarization restitution in the development of coarse and fine atrial fibrillation in the isolated canine right atria.
Academic Article Electrophysiological effects of ranolazine, a novel antianginal agent with antiarrhythmic properties.
Academic Article Transmembrane action potential heterogeneity in the canine isolated arterially perfused right atrium: effect of IKr and IKur/Ito block.
Academic Article Reinduction of atrial fibrillation immediately after termination of the arrhythmia is mediated by late phase 3 early afterdepolarization-induced triggered activity.
Academic Article Fever accentuates transmural dispersion of repolarization and facilitates development of early afterdepolarizations and torsade de pointes under long-QT Conditions.
Academic Article Cellular basis for atrial fibrillation in an experimental model of short QT1: implications for a pharmacological approach to therapy.
Academic Article Does Tpeak-Tend provide an index of transmural dispersion of repolarization?
Academic Article Atria are More Sensitive Than Ventricles to GS-458967-Induced Inhibition of Late Sodium Current.
Academic Article Modulation of canine cardiac sodium current by Apelin.
Academic Article Developmental changes in expression and biophysics of ion channels in the canine ventricle.
Academic Article Synergistic electrophysiologic and antiarrhythmic effects of the combination of ranolazine and chronic amiodarone in canine atria.
Academic Article Ranolazine effectively suppresses atrial fibrillation in the setting of heart failure.
Academic Article Atrial-selective sodium channel block as a strategy for suppression of atrial fibrillation.
Academic Article Atrium-selective sodium channel block as a strategy for suppression of atrial fibrillation: differences in sodium channel inactivation between atria and ventricles and the role of ranolazine.
Academic Article AZD1305 exerts atrial predominant electrophysiological actions and is effective in suppressing atrial fibrillation and preventing its reinduction in the dog.
Academic Article Atrial-selective prolongation of refractory period with AVE0118 is due principally to inhibition of sodium channel activity.
Academic Article Rate-dependent effects of vernakalant in the isolated non-remodeled canine left atria are primarily due to block of the sodium channel: comparison with ranolazine and dl-sotalol.
Academic Article A temporal window of vulnerability for development of atrial fibrillation with advancing heart failure.
Academic Article Mechanisms underlying atrial-selective block of sodium channels by Wenxin Keli: Experimental and theoretical analysis.
Academic Article Acacetin suppresses the electrocardiographic and arrhythmic manifestations of the J wave syndromes.
Academic Article Atrial-selective effects of chronic amiodarone in the management of atrial fibrillation.
Academic Article Atrial-selective sodium channel block strategy to suppress atrial fibrillation: ranolazine versus propafenone.
Academic Article Acute dronedarone is inferior to amiodarone in terminating and preventing atrial fibrillation in canine atria.
Academic Article Can inhibition of IKur promote atrial fibrillation?
Academic Article Atrial-selective inhibition of sodium-channel current by Wenxin Keli is effective in suppressing atrial fibrillation.
Academic Article Synergistic effect of the combination of ranolazine and dronedarone to suppress atrial fibrillation.
Academic Article The Small Conductance Calcium-Activated Potassium Channel Inhibitors NS8593 and UCL1684 Prevent the Development of Atrial Fibrillation Through Atrial-Selective Inhibition of Sodium Channel Activity.
Academic Article Inhibition of IKr potentiates development of atrial-selective INa block leading to effective suppression of atrial fibrillation.
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