Atropine-induced rapid heart rate increase in LQT1 patients was associated with an augmented adaptation of global dispersion parameters, including a significantly larger overshoot for T amplitude.
Case-Control (n=52)
Does atropine-induced heart rate increase alter global ventricular repolarization dispersion parameters differently in LQT1 patients compared to healthy controls?
LQT1 patients exhibit an augmented adaptation of global repolarization dispersion parameters, particularly T amplitude, in response to rapid atropine-induced heart rate increases compared to healthy controls.
Abstract The long QT syndrome type 1 (LQT1) is caused by loss‐of‐function mutations affecting the potassium channel current I Ks important for repolarization adaptation at heart rate (HR) increase. We therefore compared changes in three global VR dispersion parameters following a rapid, atropine‐induced HR increase in LQT1 patients versus healthy controls applying Frank vectorcardiography. The adaptation patterns, magnitudes, and changing rates of T amplitude, T area, and the ventricular gradient were assessed during 5 min following injection. Twenty‐one LQT1 patients and 31 controls were enrolled. HR increased similarly within ~23 s. The majority had a tri‐phasic VR dispersion adaptation pattern: a rapid decrease to a minimum, a slower return to a slightly higher level, and a very slow almost horizontal decrease. In the LQT1 group, all three dispersion parameters had a longer lasting rapid phase and larger overshoot reaction, although statistically significant only for T amplitude. In conclusion, LQT1 was associated with an augmented adaptation of global dispersion parameters to a rapid HR increase versus healthy controls. Further studies are needed to determine how these observations relate to arrhythmogenesis and if the atropine test of QT interval and dispersion adaptation can be used in risk assessment on the individual level.
Dahlberg et al. (Wed,) conducted a case-control in Long QT syndrome type 1 (LQT1) (n=52). Atropine-induced heart rate increase vs. Healthy controls was evaluated on Changes in three global ventricular repolarization dispersion parameters (T amplitude, T area, and ventricular gradient). Atropine-induced rapid heart rate increase in LQT1 patients was associated with an augmented adaptation of global dispersion parameters, including a significantly larger overshoot for T amplitude.