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Published on: February 28, 2012
Tedisamil increases coherence during ventricular fibrillation and decreases defibrillation energy requirements
Introduction:
Drugs which primarily prolong cardiac refractoriness decrease defibrillation voltage and energy requirements in animals and man. The effect of such drugs on ventricular fibrillation itself is not well understood. We hypothesized that tedisamil, an investigational antiarrhythmic drug which blocks Ito and IK repolarizing potassium channels, would increase organization of epicardial electrograms during ventricular fibrillation while it lowered defibrillation energy requirements.
Methods:
We measured magnitude-squared coherence, a measure of spatial organization, and ventricular fibrillation (VF) cycle length, ventricular effective refractory period (VERP), and monophasic action potential duration (APD90) as well as defibrillation energy threshold (E50) at baseline and after 150 micrograms/kg of tedisamil (n = 13) or saline control (n = 6) in an open chest dog model.
Results:
After tedisamil, mean magnitude-squared coherence increased by 132 +/- 133%, from 0.15 +/- 0.08 to 0.31 +/- 0.16 (P < 0.001); VF cycle length increased from 121 +/- 24 to 190 +/- 63 ms (P < 0.001) and became more regular, with the coefficient of variation between adjacent VF intervals decreasing from 14.1 +/- 6.9 to 3.9 +/- 2.2% (P < 0.001). Mean E50 decreased from 8.9 +/- 3.8 to 6.1 +/- 2.7 joules (P < 0.001); VERP increased from 158 +/- 30 to 201 +/- 31 ms (P < 0.001), and APD90 increased from 177 +/- 25 to 244 +/- 45 ms (P < 0.001) after tedisamil. No electrophysiologic parameter was changed after saline infusion.
Conclusions:
Tedisamil increases both spatial coherence and temporal regularity of ventricular fibrillation. These effects on 'order' during VF may be in part responsible for the observed reduction in defibrillation energy requirements.
Insights
Tedisamil, an antiarrhythmic drug, increases the organization of ventricular fibrillation (VF) and reduces the energy needed for defibrillation. This study investigated tedisamil's effects on VF organization and defibrillation energy requirements.
Area of Science:
- Cardiology
- Electrophysiology
- Pharmacology
Background:
- Drugs prolonging cardiac refractoriness can reduce defibrillation energy needs.
- The impact of such drugs on ventricular fibrillation (VF) organization is not fully understood.
- Tedisamil, an investigational antiarrhythmic drug, blocks potassium channels Ito and IK.
Purpose of the Study:
- To test the hypothesis that tedisamil increases epicardial electrogram organization during VF.
- To determine if tedisamil lowers defibrillation energy requirements.
- To evaluate tedisamil's effects on VF cycle length, ventricular effective refractory period (VERP), and action potential duration (APD90).
Main Methods:
- An open-chest dog model was used.
- Measurements included magnitude-squared coherence, VF cycle length, VERP, APD90, and defibrillation energy threshold (E50).
- Dogs received either tedisamil (150 µg/kg) or saline control.
Main Results:
- Tedisamil significantly increased magnitude-squared coherence (spatial organization) and VF cycle length, making VF more regular.
- Tedisamil reduced the defibrillation energy threshold (E50).
- Tedisamil prolonged VERP and APD90; saline had no effect.
Conclusions:
- Tedisamil enhances both spatial coherence and temporal regularity of ventricular fibrillation.
- These pro-arrhythmic effects may contribute to the observed decrease in defibrillation energy requirements.
- Tedisamil demonstrates potential for improving defibrillation efficacy.
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Dysrhythmias VI: Management of Dysrhythmias
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ECG Interpretation of Arrhythmias II: Atrial, Junctional and Ventricular Arrhythmias

