Key result
Lower systolic left ventricular function was associated with lower total brain volume (beta 14.9±3.2 cm3, P<0.0001) and hippocampal volume in a community-based sample of older adults.
Why the study?
Is left ventricular dysfunction associated with structural and functional measures of the brain in older individuals?
Cross-Sectional (n=1,338)
Is left ventricular dysfunction associated with structural and functional measures of the brain in older individuals?
Effect estimate: beta 14.9
p-value: p=<0.0001
Subclinical left ventricular dysfunction is associated with lower brain volumes and poorer cognitive function in older adults, independent of traditional cardiovascular risk factors.
LV dysfunction links to brain structure/function in older adults; leaves open causality and clinical relevance pending longitudinal studies.
Background Subclinical left ventricular ( LV ) dysfunction has been inconsistently associated with early cognitive impairment, and mechanistic pathways have been poorly considered. We investigated the cross‐sectional relationship between LV dysfunction and structural/functional measures of the brain and explored the role of potential mechanisms. Method and Results A total of 1338 individuals (69±6 years) from the Southall and Brent Revisited study underwent echocardiography for systolic (tissue Doppler imaging peak systolic wave) and diastolic (left atrial diameter) assessment. Cognitive function was assessed and total and hippocampal brain volumes were measured by magnetic resonance imaging. Global LV function was assessed by circulating N‐terminal pro–brain natriuretic peptide. The role of potential mechanistic pathways of arterial stiffness, atherosclerosis, microvascular disease, and inflammation were explored. After adjusting for age, sex, and ethnicity, lower systolic function was associated with lower total brain (beta±standard error, 14.9±3.2 cm 3 ; P <0.0001) and hippocampal volumes (0.05±0.02 cm 3 , P =0.01). Reduced diastolic function was associated with poorer working memory (−0.21±0.07, P =0.004) and fluency scores (−0.18±0.08, P =0.02). Reduced global LV function was associated with smaller hippocampal volume (−0.10±0.03 cm 3 , P =0.004) and adverse visual memory (−0.076±0.03, P =0.02) and processing speed (0.063±0.02, P =0.006) scores. Separate adjustment for concomitant cardiovascular risk factors attenuated associations with hippocampal volume and fluency only. Further adjustment for the alternative pathways of microvascular disease or arterial stiffness attenuated the relationship between global LV function and visual memory. Conclusions In a community‐based sample of older people, measures of LV function were associated with structural/functional measures of the brain. These associations were not wholly explained by concomitant risk factors or potential mechanistic pathways.
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Park et al. (2017) conducted a cross-sectional in Subclinical left ventricular dysfunction (n=1,338). Left ventricular dysfunction vs. Normal or higher left ventricular function was evaluated on Total brain volume (beta 14.9, p=<0.0001). Lower systolic left ventricular function was associated with lower total brain volume (beta 14.9±3.2 cm3, P<0.0001) and hippocampal volume in a community-based sample of older adults.
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