Key result
Among patients with atrial fibrillation, systolic blood pressure ≥160 mm Hg was strongly associated with white matter lesions compared to <120 mm Hg (OR 2.54; 95% CI 1.65-3.95; P<0.001 for trend).
Why the study?
The association of blood pressure and hypertension with the presence of different types of brain lesions in patients with atrial fibrillation was unclear.
Is blood pressure associated with the presence of different types of brain lesions in patients with atrial fibrillation?
Cross-Sectional (n=1,738)
Yes
Is blood pressure associated with the presence of different types of brain lesions in patients with atrial fibrillation?
Odds Ratio: 2.54 (95% CI 1.65–3.95)
p-value: p=<0.001
In patients with atrial fibrillation, higher blood pressure is strongly associated with the presence and extent of white matter lesions and small noncortical infarcts, but not with large noncortical or cortical infarcts.
Should not yet change BP targets in AF; leaves open whether intensive SBP control reduces white-matter lesions.
The association of blood pressure (BP) and hypertension with the presence of different types of brain lesions in patients with atrial fibrillation is unclear. BP values were obtained in a multicenter cohort of patients with atrial fibrillation. Systolic and diastolic BP was categorized in predefined groups. All patients underwent brain magnetic resonance imaging and neurocognitive testing. Brain lesions were classified as large noncortical or cortical infarcts, small noncortical infarcts, microbleeds, or white matter lesions. White matter lesions were graded according to the Fazekas scale. Overall, 1738 patients with atrial fibrillation were enrolled in this cross-sectional analysis (mean age, 73 years, 73% males). Mean BP was 135/79 mm Hg, and 67% of participants were taking BP-lowering treatment. White matter lesions Fazekas ≥2 were found in 54%, large noncortical or cortical infarcts in 22%, small noncortical infarcts in 21%, and microbleeds in 22% of patients, respectively. Compared with patients with systolic BP <120 mm Hg, the adjusted odds ratios (95% CI) for Fazekas≥2 was 1.25 (0.94–1.66), 1.41 (1.03–1.93), and 2.54 (1.65–3.95) among patients with systolic BP of 120 to 140, 140 to 160, and ≥160 mm Hg ( P for linear trend<0.001). Per 5 mm Hg increase in systolic and diastolic BP, the adjusted β-coefficient (95% CI) for log-transformed white matter lesions was 0.04 (0.02–0.05), P <0.001 and 0.04 (0.01–0.06), P =0.004. Systolic BP was associated with small noncortical infarcts (odds ratios [95% CI] per 5 mm Hg 1.05 [1.01–1.08], P =0.006), microbleeds were associated with hypertension, but large noncortical or cortical infarcts were not associated with BP or hypertension. After multivariable adjustment, BP and hypertension were not associated with neurocognitive function. Among patients with atrial fibrillation, BP is strongly associated with the presence and extent of white matter lesions, but there is no association with large noncortical or cortical infarcts. Registration: URL: https://www.clinicaltrials.gov ; Unique identifier: NCT02105844.
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Aeschbacher et al. (2020) conducted a cross-sectional in Atrial fibrillation (n=1,738). Systolic blood pressure ≥160 mm Hg vs. Systolic blood pressure <120 mm Hg was evaluated on White matter lesions (Fazekas ≥2) (OR 2.54, 95% CI 1.65-3.95, p=<0.001). Among patients with atrial fibrillation, systolic blood pressure ≥160 mm Hg was strongly associated with white matter lesions compared to <120 mm Hg (OR 2.54; 95% CI 1.65-3.95; P<0.001 for trend).
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