健康老年人急性运动后尾状核体积介导总睡眠时间与执行功能之间的相互作用。

Junyeon Won, Alfonso J Alfini, Lauren R Weiss, Casandra C Nyhuis, Adam P Spira, Daniel D Callow, J Carson Smith
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引用次数: 17

摘要

虽然运动和睡眠都是认知老化中重要的生活方式因素,但这两个因素在认知方面的相互作用仍有待确定。此外,尽管基底神经节(BG)参与睡眠和执行功能,但对其在认知衰老中的作用知之甚少。本研究的主要目的是研究睡眠和急性运动对执行功能表现的相互作用,其次是评估BG体积是否介导了这种相互作用。30名健康老年人(65.8±7.3岁)在不同的日子完成30分钟的坐式休息或中等强度的自行车运动。在实验条件后不久,使用结构MRI评估BG成分的体积,包括尾状核、壳核和苍白球。在每种情况后大约90分钟,进行Stroop任务来测量执行功能。为了检查睡眠,参与者在第一次实验前8.0±3.6天佩戴手腕活动记录仪。结果显示,虽然较长的总睡眠时间(TST)与较短的Stroop反应时间(RT)相关,但与休息相比,在一致(p = 0.029)和不一致(p = 0.022)试验中,运动后较短的TST与较长的RT相关。更长的TST与更大的尾状核体积相关,而更大的尾状核体积与Stroop不一致rt的运动相关改善相关。最终,我们发现急性运动后更长的睡眠时间和更快的加工速度之间的关联是由更大的尾状核体积介导的。这些发现表明,TST是老年人急性运动诱导的认知改善的一个重要因素,我们的研究是了解这些重要生活方式因素在认知衰老中的相互作用的第一步,这些因素可能同时促进健康的认知衰老。未来的研究应该检查睡眠和慢性运动对认知功能的相互作用,以及BG体积是否也可能介导这种相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Caudate Volume Mediates the Interaction between Total Sleep Time and Executive Function after Acute Exercise in Healthy Older Adults.

Although both exercise and sleep are significant lifestyle factors in cognitive aging, the interaction of these two factors with respect to cognition remains to be determined. Also, little is known regarding the role of the basal ganglia (BG) in cognitive aging despite its involvement in both sleep and executive function. The primary objective of this study was to investigate the interaction between sleep and acute exercise on executive function performance, and secondarily, to assess if BG volume mediates this interaction. Thirty healthy older adults (65.8±7.3 years) completed 30 minutes of seated rest or moderate-intensity cycling exercise on different days. Structural MRI was used to assess the volumes of BG components including caudate, putamen, and globus pallidus shortly after the experimental conditions. Approximately 90 minutes after each condition, the Stroop task was administered to measure executive function. To examine sleep, participants wore a wrist actigraph for 8.0±3.6 days prior to the first experimental session. Results revealed that while longer total sleep time (TST) was associated with shorter Stroop response time (RT), shorter TST was associated with longer RT after exercise, compared to rest, for both congruent (p = 0.029) and incongruent (p = 0.022) trials. Longer TST was correlated with greater caudate volume, and greater caudate volume was associated with exercise-related improvement in Stroop incongruent RT. Ultimately, we found that the association between longer sleep duration and faster processing speed after acute exercise was mediated by greater caudate volume. These findings suggest that TST is an important factor for acute exercise-induced cognitive improvements in older adults, and that our study is a first step in understanding the interactive effects of these important lifestyle factors in cognitive aging that might simultaneously be addressed to promote healthy cognitive aging. Future studies should examine the interactive effects of sleep and chronic exercise on cognitive function, and whether BG volume might also mediate this interaction.

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Erratum to: Flavonoids as an Intervention for Alzheimer's Disease: Progress and Hurdles Towards Defining a Mechanism of Action. Maintaining a Dynamic Brain: A Review of Empirical Findings Describing the Roles of Exercise, Learning, and Environmental Enrichment in Neuroplasticity from 2017-2023. The Multifaceted Effects of Flavonoids on Neuroplasticity Nicotinamide Mononucleotide Prevents Cisplatin-Induced Mitochondrial Defects in Cortical Neurons Derived from Human Induced Pluripotent Stem Cells. Proceedings from the Albert Charitable Trust Inaugural Workshop on 'Understanding the Acute Effects of Exercise on the Brain'.
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