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Updated: Jun 3, 2026

Transthoracic Speckle Tracking Echocardiography for the Quantitative Assessment of Left Ventricular Myocardial Deformation
Published on: October 20, 2016
High frame rate speckle tracking echocardiography to image the left ventricular mechanical activation sequence in
Konstantina Papangelopoulou1, Laurine Wouters1, Marta Orlowska1
1Department of Cardiovascular Sciences, KU Leuven, Herestraat 49, Leuven 3000, Belgium.
Aims:
Electrical activation mapping is essential for identifying ablation targets in the treatment of cardiac arrhythmias. This study investigates high-frame-rate (HFR) speckle-tracking echocardiography (STE) as a non-invasive alternative to conventional electrophysiologic studies for constructing mechanical activation maps and defining left ventricular (LV) activation onset.
Methods And Results:
Twenty healthy volunteers (HV) and 25 patients with a biventricular pacemaker (BiV) underwent HFR ultrasound scanning. Patients were scanned during BiV on and off, hence reintroducing native activation-left bundle branch block (LBBB) pattern. Five patients were additionally scanned after changing the LV lead pacing pole. A custom-made 2D-HFR-STE algorithm tracked the cardiac wall in the three conventional apical echocardiographic views. Strain rate (SR) curves were computed for each wall segment in a 16-segment LV model to measure the time between electrical and mechanical activation (i.e. time between QRS onset and first positive-to-negative zero-crossing in the SR curve). The timings were displayed in a bull's-eye plot, representing each subject's activation map. For most HV, activation started from mid-anteroseptum, at 23 ± 5 ms, spreading basal-inferolaterally at 50 ± 8 ms. During BiV off, the average septal activation was 36 ± 2 ms; the average lateral was 81 ± 21 ms (P < 0.01). During BiV on, the respective times were 53 ± 6 ms and 52 ± 6 ms (P = 0.3). Altering the LV lead pacing pole changed the lateral wall activation onset accordingly.
Conclusion:
HFR-STE was able to map normal activation, measure the known septal-to-lateral LBBB dyssynchrony, and identify the paced segment in 92% of the cases. HFR-STE could be a promising tool in constructing LV activation maps.
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