Key result
A 1-SD greater diastolic blood pressure variability was associated with lower information processing speed (β -0.10; 95% CI -0.20 to -0.00) and executive function (β -0.12; 95% CI -0.22 to -0.01).
Why the study?
Identifying modifiable risk factors for cognitive impairment is important, and very short-term to mid-term blood pressure variability may be one such factor because it may cause cerebral ischemia.
Does greater blood pressure variability reduce cognitive performance in 40- to 75-year-old individuals?
Cross-Sectional (n=1,804)
Does greater blood pressure variability reduce cognitive performance in 40- to 75-year-old individuals?
Effect estimate: β -0.10 (diastolic BPV on info processing speed) (95% CI -0.20 to -0.00)
Greater very short-term to mid-term diastolic and systolic blood pressure variability is cross-sectionally associated with lower cognitive performance, suggesting it may be a modifiable risk factor for cognitive deterioration.
Greater diastolic BPV associated with modestly lower cognition; hypothesis-generating and requires longitudinal studies before clinical relevance.
An increasing number of individuals will face age-related cognitive difficulties because life expectancy has increased. It is, therefore, important to identify modifiable risk factors for cognitive impairment. Very short-term to mid-term blood pressure variability (BPV) may be such a factor because it may cause cerebral ischemia. To this end, we investigated whether greater systolic and diastolic BPV are cross-sectionally associated with memory function (n=1804), information processing speed (n=1793), and executive function (n=1780) in 40- to 75-year-old individuals from The Maastricht Study. A composite BPV-index was derived by standardizing within-visit, 24-hour, and 7-day BPV. We performed linear regression with adjustments for age, sex, educational level, 24-hour systolic or diastolic pressure, and cardiovascular risk factors. We found that a 1-SD greater systolic BPV was not associated with information processing speed (β [SD difference], -0.10; 95% CI, -0.14 to 0.06), or executive function (-0.09; 95% CI, -0.20 to 0.02) but was marginally associated with lower memory function (-0.11; 95% CI, -0.21 to 0.00). A 1-SD greater diastolic BPV was associated with lower information processing speed (-0.10; 95% CI, -0.20 to -0.00) and executive function (-0.12; 95% CI, -0.22 to -0.01) and marginally associated with lower memory function (-0.09; 95% CI, -0.20 to 0.01). These effects on cognitive performance are equivalent to ≈3 additional years of aging. In conclusion, greater very short-term to mid-term diastolic and, to a lesser extent, systolic BPV may be a modifiable risk factor for cognitive deterioration in 40- to 75-year-old, community-dwelling individuals.
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Zhou et al. (2019) conducted a cross-sectional in Cognitive performance (n=1,804). Blood pressure variability (BPV) was evaluated on Memory function, information processing speed, and executive function (β -0.10 (diastolic BPV on info processing speed), 95% CI -0.20 to -0.00). A 1-SD greater diastolic blood pressure variability was associated with lower information processing speed (β -0.10; 95% CI -0.20 to -0.00) and executive function (β -0.12; 95% CI -0.22 to -0.01).
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