Reduced cerebrovascular response to visual activation correlated significantly with poorer cognitive performance, explaining 11-13% of the variance in current intelligence and processing speed.
Cross-Sectional (n=187)
No
Is reduced cerebrovascular response to visual stimulation associated with subclinical cognitive deficits in mid-sixties men without neurodegenerative disease?
Reduced cerebrovascular response to visual activation is associated with subclinical cognitive deficits in mid-sixties men, suggesting cerebrovascular dysfunction may be an early sign preceding overt neurodegenerative disease.
Effect estimate: R2 0.13
p-value: p=< 10^-5
Abstract Reduced cerebrovascular response to neuronal activation is observed in patients with neurodegenerative disease. In the present study, we examined the correlation between reduced cerebrovascular response to visual activation (ΔCBF Vis.Act ) and subclinical cognitive deficits in a human population of mid-sixties individuals without neurodegenerative disease. Such a correlation would suggest that impaired cerebrovascular function occurs before overt neurodegenerative disease. A total of 187 subjects (age 64–67 years) of the Metropolit Danish Male Birth Cohort participated in the study. ΔCBF Vis.Act was measured using arterial spin labelling (ASL) MRI. ΔCBF Vis.Act correlated positively with cognitive performance in: Global cognition ( p = 0.046), paired associative memory ( p = 0.025), spatial recognition ( p = 0.026), planning ( p = 0.016), simple processing speed ( p < 0.01), and with highly significant correlations with current intelligence ( p < 10 −5 ), and more complex processing speed ( p < 10 −3 ), the latter two explaining approximately 11–13% of the variance. Reduced ΔCBF Vis.Act was independent of brain atrophy. Our findings suggest that inhibited cerebrovascular response to neuronal activation is an early deficit in the ageing brain and associated with subclinical cognitive deficits. Cerebrovascular dysfunction could be an early sign of a trajectory pointing towards the development of neurodegenerative disease. Future efforts should elucidate if maintenance of a healthy cerebrovascular function can protect against the development of dementia.
Vestergaard et al. (Wed,) conducted a cross-sectional in Subclinical cognitive deficits (n=187). Cerebrovascular response to visual activation (ΔCBF Vis.Act) was evaluated on Correlation between cerebrovascular response to visual activation and current intelligence (IST 2000R) (R2 0.13, p=< 10^-5). Reduced cerebrovascular response to visual activation correlated significantly with poorer cognitive performance, explaining 11-13% of the variance in current intelligence and processing speed.
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