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Is cardiovascular fitness associated with structural brain integrity in midlife? Evidence from a population-representative birth cohort study

机译:心血管健身是否与中期的结构大脑完整相关?来自人口代表性的出生队列研究的证据

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摘要

Improving cardiovascular fitness may buffer against age-related cognitive decline and mitigate dementia risk by staving off brain atrophy. However, it is unclear if such effects reflect factors operating in childhood (neuroselection) or adulthood (neuroprotection). Using data from 807 members of the Dunedin Study, a population-representative birth cohort, we investigated associations between cardiovascular fitness and structural brain integrity at age 45, and the extent to which associations reflected possible neuroselection or neuroprotection by controlling for childhood IQ. Higher fitness, as indexed by VO2Max, was not associated with average cortical thickness, total surface area, or subcortical gray matter volume including the hippocampus. However, higher fitness was associated with thicker cortex in prefrontal and temporal regions as well as greater cerebellar gray matter volume. Higher fitness was also associated with decreased hippocampal fissure volume. These associations were unaffected by the inclusion of childhood IQ in analyses. In contrast, a higher rate of decline in cardiovascular fitness from 26 to 45 years was not robustly associated with structural brain integrity. Our findings are consistent with a neuroprotective account of adult cardiovascular fitness but suggest that effects are not uniformly observed across the brain and reflect contemporaneous fitness more so than decline over time.
机译:改善心血管健身可能会缓冲与年龄相关的认知下降,并通过脱离脑萎缩来减轻痴呆症风险。然而,如果这种效果反映了儿童(神经选择)或成年(神经保护)的因素是不明确的。使用来自807名达尼丁研究成员的数据,人口代表性的出生队员,我们调查了45岁的心血管健康和结构脑完整性之间的关联,以及协会通过控制儿童智商来反映可能的神经选择或神经保护的程度。由VO2Max指数较高的适应性与平均皮质厚度,总表面积或包括海马的细胞系灰质体积无关。然而,较高的适应性与前额叶和颞区的皮质较厚,以及更大的小脑灰质体积。较高的健身也与下降的海马裂隙裂缝量有关。这些协会在分析中纳入儿童智商的影响不受影响。相比之下,与结构脑完整性的26至45岁的心血管健康的下降率较高。我们的发现与成人心血管健康的神经保护叙述一致,但表明在大脑上没有均匀地观察到效果,而且比随着时间的推移更加疲劳。

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