Key result
A change in QRS morphology during atrioventricular block was associated with significantly longer QT intervals (648 vs 561 ms; P<0.001) and a 7-fold higher risk of developing long QT.
Why the study?
Does the presence of QRS morphology changes during atrioventricular block increase QT prolongation in patients with AVB?
Observational (n=91)
Does the presence of QRS morphology changes during atrioventricular block increase QT prolongation in patients with AVB?
Effect estimate: 7-fold higher risk
Absolute Event Rate: 648% vs 561%
p-value: p=<0.001
Cardiac memory resulting from QRS morphology changes during atrioventricular block is associated with significant QT prolongation, identifying patients at higher risk for arrhythmogenic events.
May flag higher arrhythmic risk in AV block; leaves open whether cardiac memory drives QT prolongation.
BACKGROUND: The magnitude of QT prolongation in response to bradycardia, rather than the bradycardia per se, determines the risk for torsade de pointes during atrioventricular block (AVB). However, we do not know why some patients develop more QT prolongation than others, despite similar bradycardia. We hypothesized that in patients who develop significant QRS vector changes during AVB, the effects of cardiac memory lead to excessive QT prolongation. METHODS AND RESULTS: We studied 91 patients who presented with AVB and who also had an ECG predating the bradyarrhythmia for comparison. We correlated changes in QRS morphology and axis taking place during AVB with the bradycardia-induced QT prolongation. Patients with and without QRS morphology changes at the time of AVB were of similar age and sex. Moreover, despite similar R-R interval during AVB, cases with a QRS morphology change had significantly longer QT (648 ± 84 versus 561 ± 84; P<0.001) than those without. Patients who developed a change in QRS morphology at the time of AVB had a 7-fold higher risk of developing long QT. This risk nearly doubled when the change in QRS morphology was accompanied by a change in QRS axis. CONCLUSIONS: Cardiac memory resulting from a change in QRS morphology during AVB is independently associated with QT prolongation and may be arrhythmogenic during AVB.
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Rosso et al. (2014) conducted an observational in Atrioventricular block (n=91). QRS morphology change during AVB vs. No QRS morphology change during AVB was evaluated on QT interval (ms) (7-fold higher risk, p=<0.001). A change in QRS morphology during atrioventricular block was associated with significantly longer QT intervals (648 vs 561 ms; P<0.001) and a 7-fold higher risk of developing long QT.
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