Detection of myocardial injury after internal cardioversion for atrial fibrillation
B Gorenek1, G Kudaiberdieva, O Goktekin
1Department of Cardiology, Osmangazi University School of Medicine, Eskisehir, Turkey. bgorenek@hotmail.com
Insights
Internal cardioversion (IC) for atrial fibrillation does not significantly elevate cardiac biomarkers, indicating no significant myocardial injury from standard shock dosages. This finding supports the safety of IC in managing atrial fibrillation.
Area of Science:
- Cardiology
- Electrophysiology
- Biomarker Research
Background:
- External cardioversion for atrial fibrillation typically shows minimal troponin elevation.
- Controversy exists regarding troponin level changes after implantable cardioverter-defibrillator discharges.
Purpose of the Study:
- To investigate if cardiac injury biomarkers increase after internal cardioversion (IC) for atrial fibrillation.
Main Methods:
- 44 patients with chronic atrial fibrillation underwent IC using electrode catheters.
- Shocks were delivered incrementally (1-15 J) until cardioversion was achieved.
- Serum levels of cardiac troponin T, troponin I, creatine kinase MB, and myoglobin were measured pre- and post-IC (2, 4, 8, 24 hours).
Main Results:
- Successful IC was achieved in 40 out of 44 patients at a mean threshold of 7.6 J.
- While biomarker levels showed a slight trend upwards, no significant elevations were detected (P>0.05).
- No correlation was found between biomarker levels and the number or energy of shocks; no severe complications occurred.
Conclusions:
- Uncomplicated internal cardioversion for atrial fibrillation does not lead to significant increases in cardiac biomarkers.
- This suggests that standard dosages of electrical shocks used in IC do not cause substantial myocardial injury.
Background:
Cardiac troponin levels do not rise to marked levels after external cardioversion of atrial fibrillation. Subsequent test discharges during implantation of cardioverter defibrillators may cause an elevation of cardiac troponin levels, but are still controversial.
Objective:
To determine whether the biomarkers of cardiac injury increase after internal cardioversion (IC) of atrial fibrillation.
Methods:
Forty-four patients with chronic atrial fibrillation were studied (mean age 59 +/-7 years). Electrode catheters were inserted through the femoral vein. One of these was positioned in the lower right atrium. A second defibrillation electrode was placed in the coronary sinus and an additional catheter was positioned in the right ventricular apex in order to obtain satisfactory R wave synchronization and to provide postshock ventricular pacing. The shocks were delivered by external defibrillator. Starting with a test shock of 1 J intensity, the energy was increased in steps (to maximum 15 J) until cardioversion was achieved. At least 1 min was permitted to elapse between unsuccessful defibrillation attempts before the next shock was applied. Blood samples for serum levels of cardiac troponin T, cardiac troponin I, creatine kinase MB and myoglobin were drawn before and 2 h, 4 h, 8 h and 24 h after IC. Each level of biomarker was compared with baseline.
Results:
In 40 of 44 patients, IC was successful at a mean cardioversion threshold of 7.6+/-3.3 J. Although the serum levels of these biomarkers tended to rise, marked elevation was not detected in any of samples (P>0.05 for each). There was no correlation between the levels of biomarkers and the number and energy of shocks applied. No severe complications were observed.
Conclusions:
Following uncomplicated IC of atrial fibrillation, cardiac biomarkers do not rise to marked levels, which indicates that significant myocardial injury does not occur by shocks in the usual dosage.
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