Related Experiment Video
Updated: Sep 2, 2026

Programmed Electrical Stimulation in Mice
Published on: May 26, 2010
Value of electrophysiologic testing in patients with nonsustained ventricular tachycardia
Abstract:
This study was undertaken to determine the value of electrophysiologic testing in 61 patients with nonsustained ventricular tachycardia (VT) (3 or more beats) on ambulatory monitoring and no history of sustained ventricular arrhythmia. The study group consisted of 38 patients with coronary artery disease (CAD), 9 with idiopathic dilated cardiomyopathy and 14 with a normal heart. Nonsustained VT (at least 3 but not more than 15 beats) was induced in 46%, sustained VT (more than 15 beats) in 15% and no VT in 39%. Sustained VT was induced more frequently in the presence of left ventricular dysfunction (p = 0.005) but was not related to the presence of CAD. Over a mean follow-up of 26 months, 10 patients died from cardiac causes (4 suddenly), including 1 patient with inducible sustained VT, 2 with nonsustained VT and 7 with no inducible VT. Inducibility was not related to survival, either as a single variable or when combined with CAD, left ventricular dysfunction or recent myocardial infarction. Left ventricular function alone was a good predictor of outcome. Of 46 patients with an ejection fraction of 35% more or in New York Heart Association functional class I or II, 3 (7%) died from cardiac causes, compared with 7 of 13 patients (54%) with an ejection fraction of less than 35% or in functional class III or IV (p = 0.0001). Thus, in patients with nonsustained VT, the incidence of sustained VT during electrophysiologic testing is low and is related to the degree of left ventricular dysfunction.(ABSTRACT TRUNCATED AT 250 WORDS)
Related Concept Videos
Electrophysiology of Normal Cardiac Rhythm
Electrocardiogram
Three major waveforms are present in a typical ECG recording: the P wave, the QRS complex, and the T...
Cardiac Action Potential
The cardiac action potential process involves a series of phases characterized by the movement of ions across the cardiac cell membranes, leading to the depolarization and repolarization of the cardiac myocytes.
Ionic Basis of Cardiac Action Potentials
Dysrhythmias III: Characteristics of Dysrhythmias
Dysrhythmias V: Evaluating Dysrhythmias
ECG Interpretation of Arrhythmias II: Atrial, Junctional and Ventricular Arrhythmias

