TY - JOUR
T1 - Electrocardiographic T wave and its relation with ventricular repolarization along major anatomical axes
AU - Meijborg, Veronique M.F.
AU - Conrath, Chantal E.
AU - Opthof, Tobias
AU - Belterman, Charly N.W.
AU - De Bakker, Jacques M.T.
AU - Coronel, Ruben
PY - 2014/6
Y1 - 2014/6
N2 - Background-The genesis of the electrocardiographic T wave is incompletely understood and subject to controversy. We have correlated the ventricular repolarization sequence with simultaneously recorded T waves. Methods and Results-Nine pig hearts were Langendorff-perfused (atrial pacing, cycle length 650 ms). Local activation and repolarization times were derived from unipolar electrograms sampling the ventricular myocardium. Dispersion of repolarization time was determined along 4 anatomic axes: left ventricle (LV)-right ventricle (RV), LV:apico-basal, LV:anterior-posterior, and LV:transmural. The heart was immersed in a fuid-flled bucket containing 61 electrodes to determine T p (Tpeak in lead of maximum integral), TpT e (Tp to Tend), and TpT e-total (frst Tpeak in any lead to last Tend in any lead). Repolarization was nonlinearly distributed in time. RT25 (time at which 25% of sites were repolarized, 288±26 ms) concurred with Tp. TpTe was 38±8 ms, and T pTe-total was 75±9 ms. TpT e-total correlated with dispersion of repolarization time in the entire heart (73±18 ms), but not with dispersion of repolarization times along individual axes (LV-RV, 66±17 ms; LV:apico-basal, 51±18 ms; LV:anterior-posterior, 51±27 ms; mean LV:transmural, 14±7 ms; all n=9). Conclusions-We provide a correlation between local repolarization and T wave in a pseudo-ECG. Repolarization differences along all anatomic axes contribute to the T wave. TpTe-total represents total dispersion of repolarization. At Tp, ≈25% of ventricular sites have been repolarized.
AB - Background-The genesis of the electrocardiographic T wave is incompletely understood and subject to controversy. We have correlated the ventricular repolarization sequence with simultaneously recorded T waves. Methods and Results-Nine pig hearts were Langendorff-perfused (atrial pacing, cycle length 650 ms). Local activation and repolarization times were derived from unipolar electrograms sampling the ventricular myocardium. Dispersion of repolarization time was determined along 4 anatomic axes: left ventricle (LV)-right ventricle (RV), LV:apico-basal, LV:anterior-posterior, and LV:transmural. The heart was immersed in a fuid-flled bucket containing 61 electrodes to determine T p (Tpeak in lead of maximum integral), TpT e (Tp to Tend), and TpT e-total (frst Tpeak in any lead to last Tend in any lead). Repolarization was nonlinearly distributed in time. RT25 (time at which 25% of sites were repolarized, 288±26 ms) concurred with Tp. TpTe was 38±8 ms, and T pTe-total was 75±9 ms. TpT e-total correlated with dispersion of repolarization time in the entire heart (73±18 ms), but not with dispersion of repolarization times along individual axes (LV-RV, 66±17 ms; LV:apico-basal, 51±18 ms; LV:anterior-posterior, 51±27 ms; mean LV:transmural, 14±7 ms; all n=9). Conclusions-We provide a correlation between local repolarization and T wave in a pseudo-ECG. Repolarization differences along all anatomic axes contribute to the T wave. TpTe-total represents total dispersion of repolarization. At Tp, ≈25% of ventricular sites have been repolarized.
KW - Electrocardiography
KW - Electrophysiology
UR - http://www.scopus.com/inward/record.url?scp=84905861732&partnerID=8YFLogxK
U2 - 10.1161/CIRCEP.113.001622
DO - 10.1161/CIRCEP.113.001622
M3 - Article
C2 - 24837645
SN - 1941-3149
VL - 7
SP - 524
EP - 531
JO - Circulation. Arrhythmia and Electrophysiology
JF - Circulation. Arrhythmia and Electrophysiology
IS - 3
ER -