Key result
Echo assessment of intra-ventricular mechanical dyssynchrony optimizes candidate selection for CRT.
Why the study?
QRS duration does not accurately distinguish responders to cardiac resynchronization therapy, and there is no consensus on the best ultrasound approach to assess mechanical dyssynchrony for selecting CRT candidates.
Does echocardiographic assessment of myocardial dyssynchrony improve the selection of candidates for cardiac resynchronization therapy compared to ECG-derived QRS duration?
Does echocardiographic assessment of myocardial dyssynchrony improve the selection of candidates for cardiac resynchronization therapy compared to ECG-derived QRS duration?
Echocardiographic assessment of mechanical dyssynchrony may better identify CRT responders than QRS duration alone, though standardization of ultrasound parameters remains a challenge.
QRS-based CRT selection warrants caution in severe LV dysfunction; leaves open need for refined dyssynchrony markers beyond QRS duration.
Morbidity and mortality rates are higher in patients with severe left ventricular (LV) systolic dysfunction and ECG-derived prolonged QRS interval than in those with normal QRS duration. QRS duration is currently used on the grounds that it reflects the presence of ventricular dyssynchrony. However, 30-40% of patients selected on the basis of a prolonged QRS do not receive benefit by cardiac resynchronization therapy (CRT) since they do not show any significant inverse LV remodeling and QRS duration does not accurately distinguish responders to CRT. Consequently, mechanical dyssynchrony (particularly intra-ventricular dyssynchrony) seems to be much more important than electrical dyssinchrony. Pre- and post-echocardiographic assessment should require the combination of conventional and specific applications ranging from M-mode and pulsed/continuous Doppler, to pulsed Tissue Doppler, the off-line analysis of colour Tissue Velocity Imaging, Strain Rate Imaging, and real time three-dimensional reconstruction However, there is not no consensus about the best approach and the best ultrasound parameter for selecting candidates to CRT and ECG representation of abnormal cardiac conduction still remains as the main criterion in guidelines. This review is a practical update of ultrasound methods and measurements of atrio-ventricular, inter-ventricular and intra-ventricular dyssynchrony and describes experiences which used either conventional Doppler echocardiography and more advanced techniques. By these experiences, the global amount of LV dyssynchrony seems to be critical: the greater intra-ventricular dyssynchrony, the higher the possibility of significant LV inverse remodeling. After CRT, it is necessary also to evaluate the optimal atrio-ventricular delay and ventricular-ventricular delay setting that maximizes LV systolic function.
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Galderisi et al. (2007) conducted a review in Heart failure with myocardial dyssynchrony. Echocardiographic assessment of myocardial dyssynchrony was evaluated. Echocardiographic assessment of mechanical dyssynchrony, particularly intra-ventricular dyssynchrony, is crucial for selecting candidates for cardiac resynchronization therapy.
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