Optimal left ventricular lead position predicts reverse remodeling and survival after cardiac resynchronization therapy

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Abstract

Objectives: The aim of the current study was to evaluate echocardiographic parameters after 6 months of cardiac resynchronization therapy (CRT) as well as long-term outcome in patients with the left ventricular (LV) lead positioned at the site of latest activation (concordant LV lead position) as compared with that seen in patients with a discordant LV lead position. Background: A nonoptimal LV pacing lead position may be a potential cause for nonresponse to CRT. Methods: The site of latest mechanical activation was determined by speckle tracking radial strain analysis and related to the LV lead position on chest x-ray in 244 CRT candidates. Echocardiographic evaluation was performed after 6 months. Long-term follow-up included all-cause mortality and hospitalizations for heart failure. Results: Significant LV reverse remodeling (reduction in LV end-systolic volume from 189 ± 83 mL to 134 ± 71 mL, P < 001) was noted in the group of patients with a concordant LV lead position (n = 153, 63%), whereas patients with a discordant lead position showed no significant improvements. In addition, during long-term follow-up (32 ± 16 months), less events (combined for heart failure hospitalizations and death) were reported in patients with a concordant LV lead position. Moreover, a concordant LV lead position appeared to be an independent predictor of hospitalization-free survival after long-term CRT (hazard ratio: 0.22, P = 004). Conclusions: Pacing at the site of latest mechanical activation, as determined by speckle tracking radial strain analysis, resulted in superior echocardiographic response after 6 months of CRT and better prognosis during long-term follow-up. © 2009 Wiley Periodicals, Inc.

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Tepper, D., Harris, S., & Ip, R. (2009). Optimal left ventricular lead position predicts reverse remodeling and survival after cardiac resynchronization therapy. Congestive Heart Failure. https://doi.org/10.1111/j.1751-7133.2009.00059.x

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