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Neuroimage ; 221: 117150, 2020 11 01.
Article in English | MEDLINE | ID: mdl-32668298

ABSTRACT

BACKGROUND: Epidemiological studies suggest physical activity (PA) can slow or prevent both cognitive decline and age-related atrophy in frontal and hippocampal gray matter volumes. However, much of this evidence is based on self-reported measures of PA. METHODS: PA was measured objectively with a SenseWear™ Armband to examine the cross-sectional associations between the duration of light, moderate and vigorous intensity PA with gray matter volume in the dorsolateral prefrontal cortex (DLPFC) and hippocampus in 167 (female: 43%) cognitively healthy older adults aged 73 to 78. RESULTS: The duration of objective moderate to vigorous intensity physical activity (MVPA) was associated with a greater volume of the right DLPFC (ߠ​= â€‹0.16; p â€‹= â€‹0.04). In addition, objective moderate-intensity PA alone was also associated with greater volume of the left (ߠ​= â€‹0.17; p â€‹= â€‹0.03) and right (ߠ​= â€‹0.19; p â€‹= â€‹0.01) DLPFC after controlling for covariates and adjustment for multiple comparisons. In contrast, there were no significant associations between light- or vigorous-intensity PA and gray matter volumes (all p â€‹> â€‹0.05). No associations between PA and cognitive performance were detected, and self-reported PA was not associated with any of the outcomes investigated. CONCLUSIONS: These findings suggest that an intensity-dependent relationship may exist, whereby a greater duration of MVPA, perhaps driven by moderate-intensity PA, is associated with preserved gray matter volume in frontal regions of the brain. Future research should investigate the mechanisms of this dose-effect and determine whether greater brain volumes associated with objective PA convey protective effects against cognitive decline.


Subject(s)
Aging/physiology , Executive Function/physiology , Exercise/physiology , Gray Matter/anatomy & histology , Hippocampus/anatomy & histology , Prefrontal Cortex/anatomy & histology , Psychomotor Performance/physiology , Actigraphy , Aged , Cohort Studies , Female , Humans , Magnetic Resonance Imaging , Male , Wearable Electronic Devices
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