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白质微结构介导了老年人心肺适能与认知表现之间的关联。

White matter microstructure mediates the association between cardiorespiratory fitness and cognitive performance in older adults.

作者信息

Tinney Emma M, Warren Aaron E L, O'Brien Amanda, Odom Hannah, Ai Meishan, Sutton Bradley P, Jain Shivangi, Kang Chaeryon, Huang Haiqing, Wan Lu, Oberlin Lauren E, Grove George, Jakicic John M, Collins Audrey M, Sewell Kelsey R, Burns Jeffrey M, Vidoni Eric D, McAuley Edward, Kramer Arthur F, Erickson Kirk I, Hillman Charles H

机构信息

Department of Psychology Northeastern University Boston Massachusetts USA.

Center for Cognitive & Brain Health Northeastern University Boston Massachusetts USA.

出版信息

Alzheimers Dement (N Y). 2025 Jul 24;11(3):e70125. doi: 10.1002/trc2.70125. eCollection 2025 Jul-Sep.

Abstract

INTRODUCTION

Age-related cognitive decline occurs, in part, due to diminishing white matter integrity. Higher cardiorespiratory fitness (CRF) is associated with better cognitive performance, but the neurobiological mechanisms underlying this association remain uncertain. Previous magnetic resonance imaging (MRI) studies have suggested that CRF-related changes in white matter microstructure might prevent or slow age-related cognitive decline, but have been limited by small sample sizes and methodological limitations. Specifically, most prior studies used tensor-based diffusion-weighted MRI metrics, which are insensitive to complex white matter architectures, including crossing fibers.

METHODS

Here, we leveraged a novel analysis framework capable of resolving individual fiber populations at the within-voxel level-fixel-based analysis (FBA)-to analyze three metrics of white matter organization from diffusion-weighted MRI scans: fiber density (FD), fiber cross-section (FC), and their combined measure (FDC). Using a cross-sectional sample of 636 cognitively unimpaired older adults aged 65 to 80 years (mean age = 69.8 years; 71% female), we hypothesized that FBA metrics would be associated with CRF and that this variation in FBA metrics would mediate associations between CRF and cognitive performance.

RESULTS

In whole-brain analyses, higher CRF was associated with greater FD, FC, and FDC. Furthermore, these FBA-derived metrics statistically mediated the relationship between CRF and cognitive performance in the domains of visuospatial abilities, processing speed, working memory, and executive function/attentional control, but not episodic memory.

DISCUSSION

These findings highlight the potential for CRF in the preservation of multiple aspects of cognition as a function of white matter micro- and macro-structural properties. Our results provide novel insights into the neurobiological mechanisms of fitness-related cognitive resilience.

HIGHLIGHTS

Higher cardiorespiratory fitness (CRF) is linked to better white matter integrity in older adults.Fixel-based analysis reveals CRF associations with fiber density and cross-section.White matter properties mediate CRF effects on cognition, excluding episodic memory.Findings suggest CRF supports cognitive resilience via white matter organization.

摘要

引言

与年龄相关的认知衰退部分是由于白质完整性下降所致。较高的心肺适能(CRF)与较好的认知表现相关,但这种关联背后的神经生物学机制仍不确定。先前的磁共振成像(MRI)研究表明,CRF相关的白质微观结构变化可能会预防或减缓与年龄相关的认知衰退,但受到样本量小和方法学局限性的限制。具体而言,大多数先前的研究使用基于张量的扩散加权MRI指标,这些指标对包括交叉纤维在内的复杂白质结构不敏感。

方法

在此,我们利用一种能够在体素水平解析个体纤维群的新型分析框架——基于固定点的分析(FBA)——来分析扩散加权MRI扫描中的三个白质组织指标:纤维密度(FD)、纤维横截面积(FC)及其综合测量值(FDC)。我们使用了一个包含636名65至80岁认知未受损老年人的横断面样本(平均年龄 = 69.8岁;71%为女性),我们假设FBA指标将与CRF相关,并且FBA指标的这种变化将介导CRF与认知表现之间的关联。

结果

在全脑分析中,较高的CRF与更高的FD、FC和FDC相关。此外,这些源自FBA的指标在统计上介导了CRF与视觉空间能力、处理速度、工作记忆和执行功能/注意力控制领域的认知表现之间的关系,但未介导情景记忆领域的关系。

讨论

这些发现凸显了CRF在作为白质微观和宏观结构特性的函数来保存认知多个方面的潜力。我们的结果为与健康相关的认知恢复力的神经生物学机制提供了新的见解。

要点

较高的心肺适能(CRF)与老年人更好的白质完整性相关。基于固定点的分析揭示了CRF与纤维密度和横截面积的关联。白质特性介导了CRF对认知的影响,情景记忆除外。研究结果表明CRF通过白质组织支持认知恢复力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38eb/12287842/aceb0922c80b/TRC2-11-e70125-g001.jpg

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