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New antiarrhythmic agent to stabilize functional activity of rat heart sinus node cardiomyocytesThe aim of this study was to explore the antiarrhythmic activity of the new antiarrhythmic drug

On mechanism of antiarrhythmic action of some dimethylphenylacetamide derivativesThe study aim was to identify essential elements of the antiarrhythmic action mechanism of tertiary

Anticholinergic activity and pharmacokinetic parameters of agent SS-68 with properties of class III antiarrhythmic drugs was not observed. High antiarrhythmic activity of SS-68 to neurogenic AF may be due to the IKAch inhibition

2-phenyl-1-(3-pyrrolidin-1-il-propyl)-1H-indole hydrochloride (SS-68): antiarrhythmic and cardioprotective activity and Its molecular mechanisms of action (Part II) for this study. From the point of view of molecular pharmacology, SS-68 can be attributed to an antiarrhythmic

2-phenyl-1-(3-pyrrolidin-1-il-propyl)-1H-indole hydrochloride (SS-68): antiarrhythmic and cardioprotective activity and Its molecular mechanisms of action chemical group in terms of their cardio-pharmacological activity

Pharmacokinetic Parameters of the Lappaconitine, Glycyrrhizic Acid and Methyluracil Combination Exhibiting Antiarrhythmic Properties upon Single Intragastric Administration in Various Dose, glycyrrhizic acid, and methyluracil (LGM) possessing antiarrhythmic activity were studied. The FDF of LGM upon

Pleyotropic antiaggregant effects of an innovative antiarrhythmic of class III SS-68, an indole derivativeA new indole derivative with the lab code-number SS-68 demonstrates a significant antiarrhythmic

ANTIARRHYTHMIC THERAPY OF PAROXYSMAL TACHYCARDIAS AND EXTRASYSTOLES IN PATIENTS WITH SINUS NODE DYSFUNCTIONAntiarrhythmic therapy of patients with disturbed automatism of the sinus node and impaired

Anticholinergic activity and pharmacokinetic parameters of agent SS-68 with properties of class III antiarrhythmic drugs was not observed. High antiarrhythmic activity of SS-68 to neurogenic AF may be due to the IKAch inhibition

On mechanism of antiarrhythmic action of some dimethylphenylacetamide derivativesThe study aim was to identify essential elements of the antiarrhythmic action mechanism of tertiary

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