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Published on: July 18, 2014
Implications of Heart Rate in Patients with Left Ventricular Assist Devices
Teruhiko Imamura1,2, Koichiro Kinugawa1, Nikhil Narang3
1Second Department of Internal Medicine, University of Toyama.
Insights
Non-optimal heart rate (HR) in patients with left ventricular assist devices (LVAD) is linked to increased mortality and heart failure readmissions. Optimizing HR may improve clinical outcomes for these patients.
Area of Science:
- Cardiology
- Medical Devices
- Heart Failure Research
Background:
- Optimal heart rate (HR) is a therapeutic target for heart failure with reduced ejection fraction.
- The impact of optimal HR on patients with left ventricular assist devices (LVAD) is not well understood.
Purpose of the Study:
- To investigate the association between HR difference from an ideal HR and clinical outcomes in LVAD patients.
- To determine if HR optimization impacts 1-year mortality and heart failure readmissions in LVAD recipients.
Main Methods:
- Retrospective analysis of 143 patients with sinus rhythm undergoing LVAD implantation (2014-2018).
- Ideal HR calculated using the formula: 93 - 0.13 × (deceleration time [msec]).
- Patients categorized into optimal, suboptimal, and nonoptimal HR groups based on HR difference from ideal HR.
Main Results:
- The nonoptimal HR group showed a significantly higher 1-year cumulative incidence of mortality and readmissions (38%) compared to the optimal HR group (16%).
- A hazard ratio of 1.69 (95% CI 1.02-2.57) indicated increased risk in the nonoptimal HR group after adjusting for confounders.
Conclusions:
- Non-optimized HR negatively impacts clinical outcomes in patients with LVAD.
- Further research is needed to explore the benefits of deceleration time-guided HR optimization in LVAD patients.
Abstract:
Optimal heart rate (HR) is a promising therapeutic target in patients with heart failure with reduced ejection fraction. Nevertheless, the implication of optimal HR in patients with left ventricular assist devices (LVAD) remains unknown. The cohort included consecutive patients with sinus rhythm undergoing LVAD implantation between 2014 and 2018. Ideal HR was calculated as follows: 93 - 0.13 × (deceleration time [msec]). The impact of "HR difference," defined as an HR difference between the actual HR at discharge and the calculated ideal HR, on the 1-year mortality and heart failure readmissions was investigated. A total of 143 patients (55 years old, 101 men) was identified and tertiled considering their HR differences: (1) the optimal HR group (n = 49; HR difference < 27 bpm), (2) the suboptimal HR group (n = 47; HR difference = 27-42 bpm), and (3) the nonoptimal HR group; HR difference (n = 47; HR difference > 43 bpm). The nonoptimal HR group had a significantly higher 1-year cumulative incidence of the primary endpoint compared with the optimal HR group (38% versus 16%, P = 0.029) with a hazard ratio of 1.69 (95% confidence interval 1.02-2.57) adjusted for 6 potential confounders. In conclusion, nonoptimized HR negatively affected clinical outcomes in LVAD patients. The implication of deceleration time-guided HR optimization in LVAD patients should be further investigated.
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