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与年龄相关的大脑深部神经生理活动的变化。

Age-related changes of deep-brain neurophysiological activity.

机构信息

U1077 INSERM-EPHE-UNICAEN, Caen 14032, France.

McConnell Brain Imaging Centre, Montreal Neurological Institute, McGill University, Montréal QC, H3A 2B4, Canada.

出版信息

Cereb Cortex. 2023 Mar 21;33(7):3960-3968. doi: 10.1093/cercor/bhac319.

Abstract

Cognitive decline with age is associated with brain atrophy and reduced brain activations, but the underlying neurophysiological mechanisms are unclear, especially in deeper brain structures primarily affected by healthy aging or neurodegenerative processes. Here, we characterize time-resolved, resting-state magnetoencephalography activity of the hippocampus and subcortical brain regions in a large cohort of healthy young (20-30 years) and older (70-80 years) volunteers from the Cam-CAN (Cambridge Centre for Ageing and Neuroscience) open repository. The data show age-related changes in both rhythmic and arrhythmic signal strength in multiple deeper brain regions, including the hippocampus, striatum, and thalamus. We observe a slowing of neural activity across deeper brain regions, with increased delta and reduced gamma activity, which echoes previous reports of cortical slowing. We also report reduced occipito-parietal alpha peak associated with increased theta-band activity in the hippocampus, an effect that may reflect compensatory processes as theta activity, and slope of arrhythmic activity were more strongly expressed when short-term memory performances were preserved. Overall, this study advances the understanding of the biological nature of inter-individual variability in aging. The data provide new insight into how hippocampus and subcortical neurophysiological activity evolve with biological age, and highlight frequency-specific effects associated with cognitive decline versus cognitive maintenance.

摘要

随着年龄的增长,认知能力下降与脑萎缩和脑活动减少有关,但潜在的神经生理机制尚不清楚,特别是在受健康衰老或神经退行性过程影响较大的深部脑结构中。在这里,我们从 Cam-CAN(剑桥衰老与神经科学中心)开放资源库中描述了一大群健康的年轻(20-30 岁)和年长(70-80 岁)志愿者的时间分辨、静息状态脑磁图活动。数据显示,多个深部脑区(包括海马体、纹状体和丘脑)的节律和非节律信号强度都存在与年龄相关的变化。我们观察到,神经活动在整个深部脑区都变慢了,delta 活动增加,gamma 活动减少,这与皮质活动变慢的先前报告相呼应。我们还报告了与海马体theta 带活动增加相关的枕顶 alpha 峰值降低,这种效应可能反映了代偿过程,因为当短期记忆表现得到保留时,theta 活动和非节律活动的斜率表达更强。总的来说,这项研究推进了对衰老过程中个体间变异性的生物学本质的理解。该数据提供了关于海马体和皮质下神经生理活动如何随生物年龄演变的新见解,并强调了与认知下降相比与认知维持相关的频率特异性效应。

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