Beyond QRS Duration: Myocardial Work Indices for the Assessment of Left Bundle Branch Block

Magdalena Potapowicz-Krysztofiak1, Martyna Dąbrowska1, Małgorzata Maciorowska1

  • 1Department of Cardiology and Internal Diseases, Military Institute of Medicine-National Research Institute, 04-141 Warsaw, Poland.

Biomedicines
|May 4, 2026
PubMed

Insights

Myocardial work (MW) indices, particularly MWI dispersion (IQR), effectively identify left bundle branch block (LBBB) in heart failure patients. These echocardiographic markers show strong associations with QRS duration and may predict CRT response.

Area of Science:

  • Cardiology
  • Echocardiography
  • Heart Failure Research

Background:

  • Left bundle branch block (LBBB) and prolonged QRS duration indicate electrical dyssynchrony in heart failure but don't fully capture mechanical consequences.
  • Myocardial work (MW)-derived indices offer a more comprehensive assessment of left ventricular (LV) mechanical dyssynchrony.

Purpose of the Study:

  • To evaluate associations between LV MW parameters, QRS duration, and LBBB in patients with heart failure with reduced ejection fraction (HFrEF).
  • To assess the discriminative performance of MW-derived dyssynchrony parameters for LBBB.

Main Methods:

  • Observational cross-sectional study of 89 HFrEF patients undergoing ICD/CRT implantation.
  • Standardized echocardiography with advanced MW analysis, including MWI dispersion (SD and IQR).
  • Evaluation of associations between QRS duration, MW parameters, and LBBB detection.

Main Results:

  • All analyzed LV MW indices significantly correlated with QRS duration (q < 0.01).
  • MWI dispersion (IQR) showed the strongest correlation with QRS duration (r = 0.58).
  • MWI dispersion (IQR) demonstrated the best discrimination for LBBB (AUC = 0.852), outperforming composite indices.

Conclusions:

  • Myocardial work-derived LV dyssynchrony indices strongly associate with QRS duration and LBBB presence in HFrEF.
  • MWI dispersion (IQR) is the most effective MW marker for identifying LBBB in this population.
  • MW dispersion shows potential as a robust echocardiographic marker for mechanical dyssynchrony and predicting CRT response.

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