Key result
Digital electrocardiography methods extending ventricular repolarization analysis from QT interval duration to repolarization morphology provide valuable markers for assessing arrhythmogenic risks.
Extending the analysis of ventricular repolarization from simple duration to morphology offers advanced methods for assessing cardiac safety and arrhythmia risk.
May refine arrhythmia risk assessment beyond QT duration; leaves open prospective validation before clinical adoption.
Ventricular repolarization (VR) is a crucial step in cardiac electrical activity because it corresponds to a recovery period setting the stage for the next heart contraction. Small perturbations of the VR process can predispose an individual to lethal arrhythmias. In this review, I aim to provide an overview of the methods developed to analyse static and dynamic aspects of the VR process when recorded from a surface electrocardiogram (ECG). The first section describes the list of physiological and clinical factors that can affect the VR. Technical aspects important to consider when digitally processing ECGs are provided as well. Special attention is given to the analysis of the effect of heart rate on the VR and its regulation by the autonomic nervous system. The final section provides the rationale for extending the analysis of the VR from its duration to its morphology. Several modelling techniques and measurement methods will be presented and their role within the arena of cardiac safety will be discussed.
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Jean‐Philippe Couderc (2009) conducted a review in Cardiac ventricular repolarization abnormalities. Digital electrocardiography methods extending ventricular repolarization analysis from QT interval duration to repolarization morphology provide valuable markers for assessing arrhythmogenic risks.
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