Why the study?
The relationship between physical fitness, white matter microstructure, and diverse cognitive domains remained incompletely understood after accounting for relevant nuisance covariates in a well-powered cohort.
Does physical fitness (walking endurance) improve white matter microstructure and cognition in healthy young adults?
Does physical fitness (walking endurance) improve white matter microstructure and cognition in healthy young adults?
Physical fitness is associated with enhanced global cognitive function in healthy young adults, an effect that is significantly mediated by improved white matter microstructure.
No immediate practice change in young adults; leaves open causal effects of endurance on white matter and cognition.
We aimed to extend our knowledge on the relationship between physical fitness (PF) and both white matter microstructure and cognition through in-depth investigation of various cognitive domains while accounting for potentially relevant nuisance covariates in a well-powered sample. To this end, associations between walking endurance, diffusion-tensor-imaging (DTI) based measures of fractional anisotropy (FA) within brain white matter and cognitive measures included in the NIH Toolbox Cognition Battery were investigated in a sample of n = 1206 healthy, young adults (mean age = 28.8; 45.5% male) as part of the human connectome project. Higher levels of endurance were associated with widespread higher FA (pFWE < 0.05) as well as with enhanced global cognitive function (p < 0.001). Significant positive relationships between endurance and cognitive performance were similarly found for almost all cognitive domains. Higher FA was significantly associated with enhanced global cognitive function (p < 0.001) and FA was shown to significantly mediate the association between walking endurance and cognitive performance. Inclusion of potentially relevant nuisance covariates including gender, age, education, BMI, HBA1c, and arterial blood pressure did not change the overall pattern of results. These findings support the notion of a beneficial and potentially protective effect of PF on brain structure and cognition.
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Opel et al. (2019) studied this question.
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