数据驱动的MRI分析揭示了运动干预后默认模式网络和认知中与健身相关的功能变化。

Psychophysiology Pub Date : 2024-04-01 Epub Date: 2023-10-31 DOI:10.1111/psyp.14469
Katherine M Lloyd, Timothy P Morris, Sheeba Anteraper, Michelle Voss, Alfonso Nieto-Castanon, Susan Whitfield-Gabrieli, Jason Fanning, Neha Gothe, Elizabeth A Salerno, Kirk I Erickson, Charles H Hillman, Edward McAuley, Arthur F Kramer
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摘要

先前的研究表明,心肺功能(CRF)在结构和功能上对老年人具有神经保护作用。然而,CRF在认知和大脑健康方面的机制作用仍然存在疑问。本研究的目的是调查干预前较高的CRF是否与运动干预期间大脑功能连接的较大变化有关,并确定连接的变化幅度是否与干预后更好的认知表现有关。样本包括低活动的老年人(n = 139),他们完成了6个月的运动干预,并在干预前后接受了神经心理测试、功能性神经成像和CRF测试。对静息状态MRI扫描进行数据驱动的多体素模式分析,以确定从干预前到干预后全脑连接模式的变化,作为干预前CRF的函数。结果显示,干预前CRF与中央前回功能连接的变化呈正相关。使用中央前回作为种子,分析表明,中央前回内CRF相关的连接变化源于位于背侧注意力网络(DAN)的集群内的相关性强度增加和位于默认模式网络(DMN)的聚类内的反相关性强度增加。探索性分析表明,中央前回种子和DMN簇之间的连接变化与干预后感知速度任务表现的改善有关。这些发现表明,在一个低活动性且大多不适合的老年人样本中,即使CRF的细微个体差异也可能影响6个月运动干预后功能连接与认知方面之间的关系。
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Data-driven MRI analysis reveals fitness-related functional change in default mode network and cognition following an exercise intervention.

Previous research has indicated that cardiorespiratory fitness (CRF) is structurally and functionally neuroprotective in older adults. However, questions remain regarding the mechanistic role of CRF on cognitive and brain health. The purposes of this study were to investigate if higher pre-intervention CRF was associated with greater change in functional brain connectivity during an exercise intervention and to determine if the magnitude of change in connectivity was related to better post-intervention cognitive performance. The sample included low-active older adults (n = 139) who completed a 6-month exercise intervention and underwent neuropsychological testing, functional neuroimaging, and CRF testing before and after the intervention. A data-driven multi-voxel pattern analysis was performed on resting-state MRI scans to determine changes in whole-brain patterns of connectivity from pre- to post-intervention as a function of pre-intervention CRF. Results revealed a positive correlation between pre-intervention CRF and changes in functional connectivity in the precentral gyrus. Using the precentral gyrus as a seed, analyses indicated that CRF-related connectivity changes within the precentral gyrus were derived from increased correlation strength within clusters located in the Dorsal Attention Network (DAN) and increased anti-correlation strength within clusters located in the Default Mode Network (DMN). Exploratory analysis demonstrated that connectivity change between the precentral gyrus seed and DMN clusters were associated with improved post-intervention performance on perceptual speed tasks. These findings suggest that in a sample of low-active and mostly lower-fit older adults, even subtle individual differences in CRF may influence the relationship between functional connectivity and aspects of cognition following a 6-month exercise intervention.

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