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RESEARCH PRODUCT
Physical Activity Predicts Population-Level Age-Related Differences in Frontal White Matter
Fiona MatthewsJuho StrömmerJames RoweTibor AuerRichard HensonKaren CampbellCarol BrayneRhodri Cusacksubject
AdultMaleAgingmedicine.medical_specialtyExternal capsuleAdolescentPopulationCognitive declineUncinate fasciculusAudiologyCorpus callosumArticle050105 experimental psychologyWhite matter03 medical and health sciencesCognition0302 clinical medicineSurveys and QuestionnairesFractional anisotropyImage Processing Computer-AssistedReaction TimeHumansMedicine0501 psychology and cognitive sciencesCognitive declineeducationExerciseAgedAged 80 and overeducation.field_of_studybusiness.industry05 social sciencesAge FactorsMiddle AgedWhite MatterFrontal LobeDiffusion Magnetic Resonance Imagingmedicine.anatomical_structureEnglandBrain agingAnisotropyFemaleGeriatrics and GerontologybusinessPsychomotor Performance030217 neurology & neurosurgeryDiffusion MRIdescription
Physical activity has positive effects on brain health and cognitive function throughout the life span. Thus far, few studies have examined the effects of physical activity on white matter microstructure and psychomotor speed within the same, population-based sample (critical if conclusions are to extend to the wider population). Here, using diffusion tensor imaging and a simple reaction time task within a relatively large population-derived sample (N = 399; 18–87 years) from the Cambridge Centre for Ageing and Neuroscience (Cam-CAN), we demonstrate that physical activity mediates the effect of age on white matter integrity, measured with fractional anisotropy. Higher self-reported daily physical activity was associated with greater preservation of white matter in several frontal tracts, including the genu of corpus callosum, uncinate fasciculus, external capsule, and anterior limb of the internal capsule. We also show that the age-related slowing is mediated by white matter integrity in the genu. Our findings contribute to a growing body of work, suggesting that a physically active lifestyle may protect against age-related structural disconnection and slowing.
year | journal | country | edition | language |
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2018-04-30 | The Journals of Gerontology: Series A |