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任务切换揭示了认知健康个体中 CSF 淀粉样蛋白/tau 异常的脑-心电生理特征异常,一项初步研究。

Task switching reveals abnormal brain-heart electrophysiological signatures in cognitively healthy individuals with abnormal CSF amyloid/tau, a pilot study.

机构信息

University of California Irvine, Irvine, CA 92697-1830, USA.

Neurosciences, Huntington Medical Research Institutes, Pasadena, CA 91105, USA.

出版信息

Int J Psychophysiol. 2021 Dec;170:102-111. doi: 10.1016/j.ijpsycho.2021.10.007. Epub 2021 Oct 17.

Abstract

Electroencephalographic (EEG) alpha oscillations have been related to heart rate variability (HRV) and both change in Alzheimer's disease (AD). We explored if task switching reveals altered alpha power and HRV in cognitively healthy individuals with AD pathology in cerebrospinal fluid (CSF) and whether HRV improves the AD pathology classification by alpha power alone. We compared low and high alpha event-related desynchronization (ERD) and HRV parameters during task switch testing between two groups of cognitively healthy participants classified by CSF amyloid/tau ratio: normal (CH-NAT, n = 19) or pathological (CH-PAT, n = 27). For the task switching paradigm, participants were required to name the color or word for each colored word stimulus, with two sequential stimuli per trial. Trials include color (cC) or word (wW) repeats with low load repeating, and word (cW) or color switch (wC) for high load switching. HRV was assessed for RR interval, standard deviation of RR-intervals (SDNN) and root mean squared successive differences (RMSSD) in time domain, and low frequency (LF), high frequency (HF), and LF/HF ratio in frequency domain. Results showed that CH-PATs compared to CH-NATs presented: 1) increased (less negative) low alpha ERD during low load repeat trials and lower word switch cost (low alpha: p = 0.008, Cohen's d = -0.83, 95% confidence interval -1.44 to -0.22, and high alpha: p = 0.019, Cohen's d = -0.73, 95% confidence interval -1.34 to -0.13); 2) decreasing HRV from rest to task, suggesting hyper-activated sympatho-vagal responses. 3) CH-PATs classification by alpha ERD was improved by supplementing HRV signatures, supporting a potentially compromised brain-heart interoceptive regulation in CH-PATs. Further experiments are needed to validate these findings for clinical significance.

摘要

脑电图(EEG)阿尔法振荡与心率变异性(HRV)有关,并且在阿尔茨海默病(AD)中都有变化。我们探索了在脑脊液(CSF)中存在 AD 病理的认知健康个体中,任务切换是否会揭示改变的阿尔法功率和 HRV,以及 HRV 是否可以通过单独的阿尔法功率改善 AD 病理分类。我们比较了认知健康参与者在 CSF 淀粉样蛋白/tau 比分类的两组中进行任务切换测试时的低和高阿尔法事件相关去同步(ERD)和 HRV 参数:正常(CH-NAT,n=19)或病理性(CH-PAT,n=27)。对于任务切换范式,要求参与者为每个彩色单词刺激命名颜色或单词,每个试验有两个连续的刺激。试验包括低负荷重复的颜色(cC)或单词(wW)重复,以及高负荷切换的单词(cW)或颜色切换(wC)。在时域中评估 HRV 的 RR 间隔,RR 间隔标准差(SDNN)和均方根连续差异(RMSSD),以及频域中的低频(LF),高频(HF)和 LF/HF 比。结果表明,与 CH-NAT 相比,CH-PAT 表现出:1)在低负荷重复试验中增加(负值减小)低阿尔法 ERD,并且单词切换成本降低(低阿尔法:p=0.008,Cohen's d=-0.83,95%置信区间-1.44 至-0.22,高阿尔法:p=0.019,Cohen's d=-0.73,95%置信区间-1.34 至-0.13);2)从休息到任务时 HRV 降低,表明交感神经-迷走神经反应过度激活。3)通过补充 HRV 特征,CH-PAT 的阿尔法 ERD 分类得到改善,支持 CH-PAT 中大脑-心脏内脏调节受损的潜在可能性。需要进一步的实验来验证这些发现的临床意义。

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