Resting-state EEG aperiodic exponent moderates the association between age and memory performance in older adults

非周期图 心理学 情景记忆 认知 联想(心理学) 老化 听力学 认知心理学 脑电图 备忘录 发展心理学 视觉记忆 睡眠剥夺对认知功能的影响 工作记忆 意识的神经相关物 神经科学 召回 机制(生物学) 年轻人 神经心理学
作者
Alicia J Campbell,Toomas Erik Anijärv,Mikael Johansson,Thomas Pace,Jim Lagopoulos,Daniel F. Hermens,Jacob M. Levenstein,Sophie C. Andrews
出处
期刊:Neurobiology of Aging [Elsevier BV]
卷期号:160: 10-21
标识
DOI:10.1016/j.neurobiolaging.2025.12.008
摘要

Memory functions are susceptible to age-related cognitive decline, making it essential to explore the underlying neurophysiological mechanisms that contribute to memory function during healthy ageing. Resting-state EEG (rsEEG) parameters, particularly the aperiodic exponent, a marker of cortical excitation-inhibition balance, and individual alpha peak frequency, a correlate of neural processing efficiency, have demonstrated associations with ageing and cognitive functions. This study investigated associations between these rsEEG markers and performance across multiple memory systems in healthy older adults (n = 99) aged 50-84 years, specifically the direct associations of these markers on memory across episodic, working, and visual short-term memory systems, assessed via computerised tasks, as well as their moderating effects on age-memory relationships. While no direct associations were seen between rsEEG markers and memory performance across tasks beyond the contribution of age, gender and education, results revealed significant moderating effects of the aperiodic exponent on age-related performance in episodic and visual short-term memory. Notably, for individuals with a higher exponent, age was not significantly associated with episodic or visual short-term memory performance, whereas those with average and lower exponent values showed poorer performance with older age. These findings suggest that average and lower aperiodic exponents may reflect a marker of decrement in age-related memory performance and higher exponents may index an underlying protective mechanism against age-related memory decline. This investigation extends the current understanding of cognitive ageing mechanisms by identifying the aperiodic exponent as a potential biomarker explaining individual differences in cognitive ageing trajectories in older adult populations, particularly in episodic and visual short-term memory systems, and establishes a framework for studying neuroprotective mechanisms and developing interventions to preserve cognitive function in older adults.
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