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首页> 外文期刊>Cortex: A Journal Devoted to the Study of the Nervous System and Behavior >The functional and structural connectomes of telomere length and their association with cognition in mild cognitive impairment
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The functional and structural connectomes of telomere length and their association with cognition in mild cognitive impairment

机译:端粒长度的功能和结构膨胀及其与轻度认知障碍中的认识与认知的关联

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摘要

Previous findings on the relationship between telomere length and cognition have inconclusive, despite the relatively consistent telomere-shortening associated atrophy in the subcortical regions. Perhaps, there could be other more important telomere-associated factors in the brain, such as functional connectivity (FC) and structural connectivity (SC) that modulate cognition. The current study examined the relationship between telomere length, connectivity, and cognition. Telomere length measurements, neurocognitive scores, diffusion tensor and resting-state functional magnetic resonance imaging scans were collected from 82 older adults with mild cognitive impairment. SC and FC matrices were derived from these scans and, in various combinations, entered into connectome-based predictive models to predict telomere length. The telomere-associated features were then used to predict memory and executive functions. Leave-one-out cross-validation was performed. Predictive accuracy was assessed via the correlation between predicted and observed scores (r(predicted-observed)). Correlation analyses were carried out between cognition and telomere length. Telomere length was significantly and negatively correlated with executive functions (EF), after controlling for demographical confounds. Telomere length was best predicted by negative SC and positive FC features (r(predicted-observed) = .57; p < .001). The telomere-associated negative SC features significantly predicted EF scores (r(predicted-observed) = -.26; p = .015). Telomere-shortening was associated with better EF and alterations in both FC and SC. This enhanced EF can be partly attributed to the telomere-associated changes in SC. Given that telomere is known to be a nonspecific marker of health, our findings illustrated a potential clinical use of telomere length to predict individualized health-related information from FC and SC features. (C) 2020 Elsevier Ltd. All rights reserved.
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