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Alpha desynchronization during simple working memory unmasks pathological aging in cognitively healthy individuals

机译:简单工作记忆中的阿尔法去同步化揭示了认知健康个体的病理衰老

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摘要

Our aim is to explore if cognitive challenge combined with objective physiology can reveal abnormal frontal alpha event-related desynchronization (ERD), in early Alzheimer’s disease (AD). We used quantitative electroencephalography (qEEG) to investigate brain activities during N-back working memory (WM) processing at two different load conditions (N = 0 or 2) in an aging cohort. We studied 60–100 year old participants, with normal cognition, and who fits one of two subgroups from cerebrospinal fluid (CSF) proteins: cognitively healthy (CH) with normal amyloid/tau ratio (CH-NAT, n = 10) or pathological amyloid/tau ratio (CH-PAT, n = 14). We recorded behavioral performances, and analyzed alpha power and alpha spectral entropy (SE) at three occasions: during the resting state, and at event-related desynchronization (ERD) [250 ~ 750 ms] during 0-back and 2-back. During 0-back WM testing, the behavioral performance was similar between the two groups, however, qEEG notably differentiated CH-PATs from CH-NATs on the simple, 0-back testing: Alpha ERD decreased from baseline only in the parietal region in CH-NATs, while it decreased in all brain regions in CH-PATs. Alpha SE did not change in CH-NATs, but was increased from baseline in the CH-PATs in frontal and left lateral regions (p<0.01), and was higher in the frontal region (p<0.01) of CH-PATs compared to CH-NATs. The alpha ERD and SE analyses suggest there is frontal lobe dysfunction during WM processing in the CH-PAT stage. Additional power and correlations with behavioral performance were also explored. This study provide pilot information to further evaluate whether this biomarker has clinical significance.
机译:我们的目的是探讨认知挑战与客观生理学的结合是否可以揭示阿尔茨海默氏病(AD)早期的异常额叶阿尔法事件相关失步(ERD)。我们使用定量脑电图(qEEG)来研究衰老队列中两个不同负荷条件(N = 0或2)在N背工作记忆(WM)处理过程中的大脑活动。我们研究了60-100岁具有正常认知能力的参与者,他们符合脑脊髓液(CSF)蛋白的两个亚组之一:淀粉样蛋白/τ比例正常(CH-NAT,n = 10)或病理性的认知健康(CH)淀粉样蛋白/ tau比(CH-PAT,n = 14)。我们记录了行为表现,并分析了三种情况下的α功率和α光谱熵(SE):在静止状态下以及在0后退和2后退期间的事件相关失步(ERD)[250〜750 ms]。在0-back WM测试期间,两组的行为表现相似,但是,qEEG在简单的0-back测试中将CH-PAT与CH-NAT显着区分开:Alpha ERD仅在CH的顶叶区域从基线下降-NATs,而在CH-PATs的所有大脑区域中均下降。与SE-PAT相比,CH-PAT中Alpha SE在CH-NATs中没有变化,但相对于基线有所增加(p <0.01),而在CH-PATs的额叶区域中则高于基线(p <0.01)。 CH-NAT。 αERD和SE分析表明,在CH-PAT阶段的WM处理期间存在额叶功能障碍。还探讨了其他能力和与行为表现的相关性。该研究提供了初步信息,以进一步评估该生物标记物是否具有临床意义。

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