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Hearts and minds: linking vascular rigidity and aerobic fitness with cognitive aging
Claudine Joëlle Gauthier1, Muriel Lefort2, Saïd Mekary3
1Department of Physiology/Biomedical Engineering, Université de Montréal, Montreal, Canada; CRIUGM, Montreal, Canada; Department of Neurology, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.
Insights
Aging impairs cognitive function and vascular elasticity. This study found that better cognitive performance in older adults correlated with healthier blood vessels and higher cardiorespiratory fitness, suggesting exercise benefits brain health.
Area of Science:
- Gerontology
- Neuroscience
- Cardiovascular Science
Background:
- Human aging is characterized by concurrent vascular and cognitive declines.
- Arterial stiffening, beginning in the aorta, may progress to affect the brain, potentially contributing to age-related cognitive changes.
- Regular physical exercise is hypothesized to mitigate age-related vascular and metabolic changes.
Purpose of the Study:
- To investigate the impact of age-related vascular degradation on cognitive function in healthy adults.
- To examine the associations between executive function, aortic elasticity, cardiorespiratory fitness, and cerebrovascular reactivity in older adults.
Main Methods:
- Compared cognitive function (modified Stroop task), aortic pulse wave velocity, and maximal oxygen consumption (VO₂ max) between healthy younger and older adults.
- Quantified age-related changes in these parameters and their interrelationships within the older cohort.
- Assessed blood oxygenation level dependent cerebrovascular reactivity to CO₂ in specific brain regions.
Main Results:
- Older adults demonstrated reduced executive function, increased aortic stiffness (higher pulse wave velocity), and lower cardiorespiratory fitness (lower VO₂ max) compared to younger adults.
- Within the older group, faster executive function performance was linked to better aortic elasticity and higher VO₂ max.
- VO₂ max showed differential associations with cerebrovascular reactivity in various brain regions.
Conclusions:
- Cognitive status in aging is significantly associated with vascular health.
- Preservation of aortic elasticity, potentially through physical exercise, may be a key factor in attenuating cognitive aging.
- Findings support the role of physical activity in maintaining brain health during the aging process.
Abstract:
Human aging is accompanied by both vascular and cognitive changes. Although arteries throughout the body are known to become stiffer with age, this vessel hardening is believed to start at the level of the aorta and progress to other organs, including the brain. Progression of this vascular impairment may contribute to cognitive changes that arise with a similar time course during aging. Conversely, it has been proposed that regular exercise plays a protective role, attenuating the impact of age on vascular and metabolic physiology. Here, the impact of vascular degradation in the absence of disease was investigated within 2 groups of healthy younger and older adults. Age-related changes in executive function, elasticity of the aortic arch, cardiorespiratory fitness, and cerebrovascular reactivity were quantified, as well as the association between these parameters within the older group. In the cohort studied, older adults exhibited a decline in executive functions, measured as a slower performance in a modified Stroop task (1247.90 ± 204.50 vs. 898.20 ± 211.10 ms on the inhibition and/or switching component, respectively) than younger adults. Older participants also showed higher aortic pulse wave velocity (8.98 ± 3.56 vs. 3.95 ± 0.82 m/s, respectively) and lower VO₂ max (29.04 ± 6.92 vs. 42.32 ± 7.31 mL O2/kg/min, respectively) than younger adults. Within the older group, faster performance of the modified Stroop task was associated with preserved aortic elasticity (lower aortic pulse wave velocity; p = 0.046) and higher cardiorespiratory fitness (VO₂ max; p = 0.036). Furthermore, VO₂ max was found to be negatively associated with blood oxygenation level dependent cerebrovascular reactivity to CO₂ in frontal regions involved in the task (p = 0.038) but positively associated with cerebrovascular reactivity in periventricular watershed regions and within the postcentral gyrus. Overall, the results of this study support the hypothesis that cognitive status in aging is linked to vascular health, and that preservation of vessel elasticity may be one of the key mechanisms by which physical exercise helps to alleviate cognitive aging.
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