Campbell Family Mental Health Research Institute Centre for Addiction and Mental Health, Toronto, Canada.
Temerty Centre for Therapeutic Brain Intervention, Centre for Addiction and Mental Health, Toronto, Canada.
J Alzheimers Dis. 2019;68(3):1085-1094. doi: 10.3233/JAD-181195.
While several studies have found that neural oscillations play a key role in the functioning of working memory, the nature of aberrant oscillatory activity underlying working memory impairments in Alzheimer's disease (AD) and mild cognitive impairment (MCI) remains largely unexplored. These individuals often display structural alterations in brain regions and pathways involved in working memory processes and therefore may also display altered oscillatory activity during memory activation. Electroencephalographic (EEG) activity was recorded during the N-back working memory task in three groups: AD (n = 29), MCI (n = 100), and healthy controls (HCs; n = 40). Theta (4-7 Hz) and alpha (7.5-12 Hz) modulation was measured in response to the stimulus presentation during correct and incorrect responses. This modulation represents the change in EEG activity associated with the stimulus onset and was measured as a ratio of post stimulus power to pre stimulus power. We also assessed the relationship between change in oscillatory power and working memory performance. Compared to HCs, the AD group demonstrated the lowest working memory accuracy and a smaller theta ratio for correct responses on the 2-back condition; the MCI group demonstrated a smaller theta ratio for correct responses on the 3-back condition. Finally, we observed that the theta ratio, but not the alpha ratio, was a significant predictor of working memory performance in the three groups for all conditions. Taken together, these behavioral and electrophysiological results suggest that in addition to impairments in working memory performance, modulation of theta, but not alpha power, may be impaired in MCI and AD.
虽然有几项研究发现神经振荡在工作记忆的功能中起着关键作用,但阿尔茨海默病 (AD) 和轻度认知障碍 (MCI) 患者工作记忆障碍的异常振荡活动的性质在很大程度上仍未得到探索。这些个体通常在参与工作记忆过程的大脑区域和通路中显示出结构改变,因此在记忆激活期间也可能显示出改变的振荡活动。在三个组中记录了 N-back 工作记忆任务期间的脑电图 (EEG) 活动:AD(n = 29)、MCI(n = 100)和健康对照组(HCs;n = 40)。在正确和错误反应期间,针对刺激呈现测量了θ(4-7 Hz)和α(7.5-12 Hz)调制。这种调制代表与刺激起始相关的 EEG 活动的变化,并且被测量为后刺激功率与前刺激功率的比值。我们还评估了振荡功率变化与工作记忆性能之间的关系。与 HCs 相比,AD 组在 2 回条件下表现出最低的工作记忆准确性和正确反应的θ比值较小;MCI 组在 3 回条件下表现出正确反应的θ比值较小。最后,我们观察到,在所有条件下,θ比值而不是α比值是三个组工作记忆性能的重要预测指标。总之,这些行为和电生理结果表明,除了工作记忆表现受损外,θ调制,而不是α功率,可能在 MCI 和 AD 中受损。