Key result
HR ≥90 bpm linked to ~288% higher risk of unfavorable 3-month functional outcomes versus <70 bpm.
Why the study?
Increased heart rate has been associated with stroke risk and outcomes, motivating evaluation of initial in-hospital heart rate and heart rate variability on post-stroke functional outcomes.
Does a higher initial in-hospital heart rate predict unfavorable 3-month functional outcomes in patients with acute ischemic stroke?
Cohort (n=1,420)
No
Does a higher initial in-hospital heart rate predict unfavorable 3-month functional outcomes in patients with acute ischemic stroke?
Effect estimate: OR 3.88 (95% CI 2.20-6.85)
Absolute Event Rate: 73% vs 21%
p-value: p=<0.001
Higher initial in-hospital heart rate and heart rate variability are independently associated with an increased risk of death or major disability at 3 months in patients with acute ischemic stroke.
Should not yet change acute ischemic stroke management; leaves open whether heart rate modulation improves 3-month outcomes.
BACKGROUND: Increased heart rate (HR) has been associated with stroke risk and outcomes. MATERIAL AND METHODS: We analyzed 1,420 patients from a hospital-based stroke registry with acute ischemic stroke (AIS). Mean initial in-hospital HR and the coefficient of variation of HR (HR-CV) were derived from the values recorded during the first 3 days of hospitalization. The study outcome was the 3-month functional outcome. Odds ratios (ORs) with 95% confidence intervals (CIs) were estimated using multivariable logistic regression analysis. RESULTS: A higher mean HR level was significantly and continuously associated with a higher probability of unfavorable functional outcomes. Compared with the reference group (mean HR < 70 beats per minute), the multivariate-adjusted OR for an unfavorable outcome was 1.81 (95% CI, 1.25-2.61) for a mean HR ≥ 70 and < 80 beats per minute, 2.52 (95% CI, 1.66 - 3.52) for a mean HR ≥ 80 and < 90 beats per minute, and 3.88 (95% CI, 2.20-6.85) for mean HR ≥ 90 beats per minute. For stroke patients with a history of hypertension, the multivariate-adjusted OR for patients with a HR-CV ≥ 0.12 (versus patients with a HR-CV < 0.08 as a reference) was 1.73 (95% CI, 1.11-2.70) for an unfavorable outcome. CONCLUSIONS: Our results indicated that a high initial in-hospital HR was significantly associated with unfavorable 3-month functional outcomes in patients with AIS. In addition, stroke patients with a HR-CV ≥ 0.12 also had unfavorable outcomes compared with those with a HR-CV < 0.08 if they had a history of hypertension.
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Kuo et al. (2021) conducted a cohort in Acute ischemic stroke (n=1,420). Mean initial in-hospital heart rate ≥ 90 beats per minute vs. Mean initial in-hospital heart rate < 70 beats per minute was evaluated on Unfavorable functional outcome (modified Rankin Scale score 3-6) at 3 months (OR 3.88, 95% CI 2.20-6.85, p=<0.001). A mean initial in-hospital heart rate ≥ 90 beats per minute was associated with a significantly higher probability of unfavorable 3-month functional outcomes compared to a heart rate < 70 beats per minute (OR 3.88).
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