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White matter microstructure mediates the association between physical fitness and cognition in healthy young adults

机译:白质的微观结构介导健康的年轻人的身体健康与认知之间的联系

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摘要

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.
机译:我们旨在通过深入研究各种认知领域,同时考虑功能强大的样本中潜在的相关烦恼协变量,来扩展我们对身体适应性(PF)与白质微观结构与认知之间关系的认识。为此,在n = 1206健康的样本中,研究了步行耐力,基于脑白质中分数各向异性(FA)的弥散张量成像(DTI)测度与NIH工具箱认知电池中包含的认知测度之间的关联,青年人(平均年龄28.8岁;男性45.5%)是人类Connectome项目的一部分。较高的耐力水平与广泛的较高的FA(pFWE <0.05)和增强的整体认知功能(p <0.001)相关。在几乎所有认知领域中,相似地发现了耐力和认知能力之间的显着正相关。较高的FA与增强的整体认知功能显着相关(p <0.001),并且显示FA可显着介导步行耐力与认知表现之间的关联。包括潜在相关的有害协变量,包括性别,年龄,教育程度,BMI,HBA1c和动脉血压,都不会改变结果的总体模式。这些发现支持了PF对大脑结构和认知的有益和潜在保护作用的观点。

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