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老年人静息态 EEG 节律和非节律活动的改变及其与认知的关系。

Alterations in rhythmic and non-rhythmic resting-state EEG activity and their link to cognition in older age.

机构信息

Department of Neurology, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.

Department of Neurology, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany; International Max Planck Research School NeuroCom, Leipzig, Germany.

出版信息

Neuroimage. 2023 Mar;268:119810. doi: 10.1016/j.neuroimage.2022.119810. Epub 2022 Dec 29.

Abstract

While many structural and biochemical changes in the brain have previously been associated with older age, findings concerning functional properties of neuronal networks, as reflected in their electrophysiological signatures, remain rather controversial. These discrepancies might arise due to several reasons, including diverse factors determining general spectral slowing in the alpha frequency range as well as amplitude mixing between the rhythmic and non-rhythmic parameters. We used a large dataset (N = 1703, mean age 70) to comprehensively investigate age-related alterations in multiple EEG biomarkers taking into account rhythmic and non-rhythmic activity and their individual contributions to cognitive performance. While we found strong evidence for an individual alpha peak frequency (IAF) decline in older age, we did not observe a significant relationship between theta power and age while controlling for IAF. Not only did IAF decline with age, but it was also positively associated with interference resolution in a working memory task primarily in the right and left temporal lobes suggesting its functional role in information sampling. Critically, we did not detect a significant relationship between alpha power and age when controlling for the 1/f spectral slope, while the latter one showed age-related alterations. These findings thus suggest that the entanglement of IAF slowing and power in the theta frequency range, as well as 1/f slope and alpha power measures, might explain inconsistencies reported previously in the literature. Finally, despite the absence of age-related alterations, alpha power was negatively associated with the speed of processing in the right frontal lobe while 1/f slope showed no consistent relationship to cognitive performance. Our results thus demonstrate that multiple electrophysiological features, as well as their interplay, should be considered for the comprehensive assessment of association between age, neuronal activity, and cognitive performance.

摘要

虽然先前已有许多研究表明大脑的结构和生化变化与年龄有关,但涉及神经元网络功能特性的发现,如反映在其电生理特征中的发现,仍然存在争议。这些差异可能是由于多种原因引起的,包括决定 alpha 频带内总体频谱减慢的各种因素以及节律和非节律参数之间的幅度混合。我们使用了一个大型数据集(N=1703,平均年龄 70 岁),全面研究了考虑到节律和非节律活动及其对认知表现的个体贡献的多个 EEG 生物标志物与年龄相关的变化。虽然我们发现了年龄较大时个体 alpha 峰值频率(IAF)下降的有力证据,但在控制 IAF 时,我们没有观察到 theta 功率与年龄之间的显著关系。IAF 不仅随着年龄的增长而下降,而且在工作记忆任务中与干扰分辨率呈正相关,主要在左右颞叶,表明其在信息采样中的功能作用。至关重要的是,当控制 1/f 光谱斜率时,我们没有检测到 alpha 功率与年龄之间的显著关系,而后者则显示出与年龄相关的变化。这些发现表明,IAF 减缓和在 theta 频带中的功率以及 1/f 斜率和 alpha 功率测量之间的纠缠可能解释了以前文献中报道的不一致性。最后,尽管没有与年龄相关的变化,但 alpha 功率与右额叶的处理速度呈负相关,而 1/f 斜率与认知表现没有一致的关系。我们的结果表明,应该考虑多种电生理特征及其相互作用,以全面评估年龄、神经元活动和认知表现之间的关联。

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