Abstract
Background:
With increasing life expectancy, more individuals will face age-related cognitive difficulties, including Alzheimer's disease. It is, therefore, important to identify early, potentially modifiable risk factors for cognitive impairment. Lower heart rate variability (HRV), reflecting worse cardiac autonomic function, may be one such factor, though its link to cognition remains unclear.
Objective:
This study investigates whether lower HRV is associated with worse cognitive performance.
Methods:
We used population-based cross-sectional data from The Maastricht Study (N = 9187 participants, mean age 59.5 years, 50.2% women, 21% with type 2 diabetes) to investigate the associations of 24-h HRV with memory function, executive function, and information processing speed. Linear regression analyses adjusted for potential cardiovascular confounders were conducted, and we tested for interactions by sex, age, and glucose metabolism status (prediabetes and type 2 diabetes versus normal glucose metabolism).
Results:
After adjusting for covariates, both lower time and frequency domain HRV (per 1 standard deviation [SD]) were associated with worse memory function (-0.04 SD [95%CI -0.06; -0.02] and -0.02 SD [95%CI -0.04; -0.00], respectively), equivalent to aging by 1-1.5 years. HRV was not significantly associated with executive function (-0.00 SD [95%CI -0.02; 0.02] and -0.02 SD [95%CI -0.04; 0.00]) or information processing speed (0.01 SD [95%CI -0.01; 0.03] and -0.00 SD [95%CI -0.02; 0.02]). No interactions with sex, age, or glucose metabolism status were found.
Conclusions:
Lower HRV was associated with worse memory function in mid- to late-life individuals, independent of cardiovascular risk factors.
With increasing life expectancy, more individuals will face age-related cognitive difficulties, including Alzheimer's disease. It is, therefore, important to identify early, potentially modifiable risk factors for cognitive impairment. Lower heart rate variability (HRV), reflecting worse cardiac autonomic function, may be one such factor, though its link to cognition remains unclear.
Objective:
This study investigates whether lower HRV is associated with worse cognitive performance.
Methods:
We used population-based cross-sectional data from The Maastricht Study (N = 9187 participants, mean age 59.5 years, 50.2% women, 21% with type 2 diabetes) to investigate the associations of 24-h HRV with memory function, executive function, and information processing speed. Linear regression analyses adjusted for potential cardiovascular confounders were conducted, and we tested for interactions by sex, age, and glucose metabolism status (prediabetes and type 2 diabetes versus normal glucose metabolism).
Results:
After adjusting for covariates, both lower time and frequency domain HRV (per 1 standard deviation [SD]) were associated with worse memory function (-0.04 SD [95%CI -0.06; -0.02] and -0.02 SD [95%CI -0.04; -0.00], respectively), equivalent to aging by 1-1.5 years. HRV was not significantly associated with executive function (-0.00 SD [95%CI -0.02; 0.02] and -0.02 SD [95%CI -0.04; 0.00]) or information processing speed (0.01 SD [95%CI -0.01; 0.03] and -0.00 SD [95%CI -0.02; 0.02]). No interactions with sex, age, or glucose metabolism status were found.
Conclusions:
Lower HRV was associated with worse memory function in mid- to late-life individuals, independent of cardiovascular risk factors.
| Original language | English |
|---|---|
| Number of pages | 11 |
| Journal | Journal of Alzheimers Disease |
| Early online date | 29 Oct 2025 |
| DOIs | |
| Publication status | Published - 29 Oct 2025 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 3 Good Health and Well-being
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