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

Circulation
|March 3, 2004
PubMed

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.
Abstract

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