Köhncke Ylva, Laukka Erika J, Brehmer Yvonne, Kalpouzos Grégoria, Li Tie-Qiang, Fratiglioni Laura, Bäckman Lars, Lövdén Martin
Aging Research Center, NVS Department, Karolinska Institutet and Stockholm University, Stockholm, Sweden.
Aging Research Center, NVS Department, Karolinska Institutet and Stockholm University, Stockholm, Sweden.
Neurobiol Aging. 2016 May;41:173-186. doi: 10.1016/j.neurobiolaging.2016.02.013. Epub 2016 Feb 19.
Accumulating evidence suggests that engagement in leisure activities is associated with favorable trajectories of cognitive aging, but little is known about brain changes related to both activities and cognition. White matter microstructure shows experience-dependent plasticity and declines in aging. Therefore, we investigated the role of change in white matter microstructure in the activities-cognition link. We used repeated assessments of engagement, perceptual speed, and white matter microstructure (probed with diffusion tensor imaging) in a population-based sample of individuals over 80 years without dementia (n = 442, Mage = 85.1; n = 70 for diffusion tensor imaging; 2 occasions 3 years apart). Using multivariate latent change modeling, we observed positive correlations among changes in predominantly social activities, white matter microstructure, and perceptual speed. Interindividual differences in change in white matter microstructure statistically accounted for the association between change in leisure activities and change in perceptual speed. However, as analyses are based on observational data from 2 measurement occasions, causality remains unclear.
越来越多的证据表明,参与休闲活动与认知衰老的良好轨迹相关,但对于与活动和认知都相关的大脑变化却知之甚少。白质微观结构表现出经验依赖性可塑性,并在衰老过程中下降。因此,我们研究了白质微观结构变化在活动与认知联系中的作用。我们对一个基于人群的80岁以上无痴呆个体样本(n = 442,平均年龄 = 85.1岁;n = 70用于扩散张量成像;间隔3年进行2次测量)进行了参与度、感知速度和白质微观结构(通过扩散张量成像探测)的重复评估。使用多变量潜在变化模型,我们观察到主要社交活动的变化、白质微观结构和感知速度之间存在正相关。白质微观结构变化的个体差异在统计学上解释了休闲活动变化与感知速度变化之间的关联。然而,由于分析基于来自2个测量时点的观察数据,因果关系仍不明确。