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Updated: May 12, 2026

Benefits of Cardiac Resynchronization Therapy in an Asynchronous Heart Failure Model Induced by Left Bundle Branch Ablation and Rapid Pacing
Published on: December 11, 2017
Characterization of left ventricular activation in patients with heart failure and left bundle-branch block
Angelo Auricchio1, Cecilia Fantoni, Francois Regoli
1Division of Cardiology, University Hospital, Leipzigerstrasse 44, D-39120 Magdeburg, Germany. angelo.auricchio@medizin.uni-magdeburg.de
Insights
A U-shaped activation pattern in the left ventricle (LV) is caused by a functional line of block in patients with left bundle-branch block (LBBB). Noncontact mapping aids in identifying optimal sites for cardiac resynchronization therapy.
Area of Science:
- Cardiology
- Electrophysiology
- Medical Imaging
Background:
- Conventional activation mapping in dilated left ventricles (LV) with left bundle-branch block (LBBB) is limited by recording site availability and precision.
- Accurate LV activation mapping is crucial for understanding heart failure pathophysiology and guiding therapy.
Purpose of the Study:
- To investigate LV activation sequences in patients with heart failure and LBBB morphology.
- To evaluate the utility of simultaneous 3D contact and noncontact mapping in characterizing LV activation patterns.
- To identify the impact of functional block lines on LV activation and their potential role in cardiac resynchronization therapy.
Main Methods:
- Simultaneous 3D contact and noncontact mapping were applied in 24 patients with heart failure and LBBB.
- LV activation sequences were studied during intrinsic rhythm and asynchronous pacing.
- The location and functional behavior of conduction block lines were analyzed.
Main Results:
- A 'U-shaped' activation wavefront was observed in most patients due to a transmural line of block.
- The line of block was located anteriorly, laterally, or inferiorly, influencing QRS and activation durations.
- Functional changes in the block line's location were demonstrated during asynchronous pacing.
Conclusions:
- A U-shaped conduction pattern is imposed by a functional line of block in the LV, prolonging activation time.
- Noncontact mapping effectively assesses functional block, aiding in identifying optimal targets for cardiac resynchronization therapy.
Background:
Conventional activation mapping in the dilated human left ventricle (LV) with left bundle-branch block (LBBB) morphology is incomplete given the limited number of recording sites that may be collected in a reasonable time and given the lack of precision in marking specific anatomic locations.
Methods And Results:
We studied LV activation sequences in 24 patients with heart failure and LBBB QRS morphology with simultaneous application of 3D contact and noncontact mapping during intrinsic rhythm and asynchronous pacing. Approximately one third of the patients with typical LBBB QRS morphology had normal transseptal activation time and a slightly prolonged or near-normal LV endocardial activation time. A "U-shaped" activation wave front was present in 23 patients because of a line of block that was located anteriorly (n=12), laterally (n=8), and inferiorly (n=3). Patients with a lateral line of block had significantly shorter QRS (P<0.003) and transseptal durations (P<0.001) and a longer distance from the LV breakthrough site to line of block (P<0.03). Functional behavior of the line of block was demonstrated by a change in its location during asynchronous ventricular pacing at different sites and cycle lengths.
Conclusions:
A U-shaped conduction pattern is imposed on the LV activation sequence by a transmural functional line of block located between the LV septum and the lateral wall with a prolonged activation time. Assessment of functional block is facilitated by noncontact mapping, which may be useful for identifying and targeting specific locations that are optimal for successful cardiac resynchronization therapy.
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