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Relation of Cognitive Reserve Indicator to Heart Disease and Cardiac Structure and Function: A Large Community-Based
Xuerui Li1, Wenzhe Yang2,3, Yuyang Miao1
1Department of Geriatrics, Tianjin Medical University General Hospital Tianjin Geriatrics Institute Tianjin China.
Insights
High cognitive reserve (CR) is linked to better heart health, reducing heart disease (HD) risk and delaying onset. This benefit extends beyond dementia prevention to cardiovascular well-being.
Area of Science:
- Cardiology
- Neuroscience
- Public Health
Background:
- Cognitive reserve (CR) is known to reduce dementia risk.
- The association between CR and heart disease (HD) risk and cardiac function is not well understood.
Purpose of the Study:
- To investigate the relationship between cognitive reserve (CR) and the risk of developing heart disease (HD).
- To explore the association of CR with cardiac structure and function.
Main Methods:
- Utilized UK Biobank data from 349,907 participants free of HD.
- Developed a composite CR indicator based on education, occupation, leisure activities, and social connections.
- Employed Cox regression, Laplace regression, and linear regression for data analysis, including cardiac MRI for a subsample.
Main Results:
- High CR was associated with a reduced risk of any HD (HR 0.78), coronary HD (HR 0.68), cardiac arrhythmia (HR 0.91), and heart failure (HR 0.63) compared to low CR.
- High CR was linked to a 1.59-year delay in HD onset.
- High CR correlated with improved cardiac function, including larger left ventricular end-diastolic volume, end-systolic volume, stroke volume, and ejection fraction.
Conclusions:
- Elevated cognitive reserve (CR) is associated with improved heart disease (HD) health outcomes.
- The protective effects of CR extend beyond dementia prevention to encompass cardiovascular health.
Background:
High cognitive reserve (CR) has been related to lower dementia risk, but its association with heart disease (HD) is unknown. We aimed to explore the relation of CR to HD and cardiac structure and function.
Methods And Results:
Within the UK Biobank, 349 907 HD-free participants were followed up. A composite CR indicator involving education/occupation attainment/television viewing time/confiding frequency/social connection frequency/variety of leisure activities was generated, and further categorized into low/moderate/high levels. Incident HD, including coronary HD, cardiac arrhythmia, and heart failure, was ascertained on the basis of medical records. During the follow-up, a subsample (n=31 182) underwent cardiac magnetic resonance imaging to assess ventricular structure and function. Data were analyzed using Cox regression, Laplace regression, and linear regression. Compared with low CR, the hazard ratio and 95% CI of any HD for high CR was 0.78 (0.75-0.80) (including 0.68 [0.66-0.71] for coronary HD, 0.91 [0.87-0.95] for cardiac arrhythmia, and 0.63 [0.58-0.68] for heart failure). Furthermore, high CR was associated with delayed HD onset by 1.59 (95% CI, 1.37-1.82) years compared with low CR. In cardiac magnetic resonance imaging data analysis, compared with low CR, high CR was associated with larger left ventricular end-diastolic volume (β, 0.13 [95% CI, 0.09-0.17]), left ventricular end-systolic volume (β, 0.05 [95% CI, 0.01-0.10]), left ventricular stroke volume (β, 0.16 [95% CI, 0.12-0.21]), and left ventricular ejection fraction (β, 0.08 [95% CI, 0.03-0.13]).
Conclusions:
High CR is associated with favorable HD health. Our findings suggest that the beneficial effect of CR is not limited to dementia but also HD.
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