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通过电刺激和交叉频率耦合改善工作记忆。

Improving working memory by electrical stimulation and cross-frequency coupling.

作者信息

Al Qasem Wiam, Abubaker Mohammed, Pilátová Kateřina, Ježdík Petr, Kvašňák Eugen

机构信息

Department of Medical Biophysics and Medical Informatics, Third Faculty of Medicine, Charles University in Prague, Prague, Czechia.

Department of Information and Communication Technology in Medicine, Faculty of Biomedical Engineering, Czech Technical University in Prague, Prague, Czechia.

出版信息

Mol Brain. 2024 Oct 1;17(1):72. doi: 10.1186/s13041-024-01142-1.

Abstract

Working memory (WM) is essential for the temporary storage and processing of information required for complex cognitive tasks and relies on neuronal theta and gamma oscillations. Given the limited capacity of WM, researchers have investigated various methods to improve it, including transcranial alternating current stimulation (tACS), which modulates brain activity at specific frequencies. One particularly promising approach is theta-gamma peak-coupled-tACS (TGCp-tACS), which simulates the natural interaction between theta and gamma oscillations that occurs during cognitive control in the brain. The aim of this study was to improve WM in healthy young adults with TGCp-tACS, focusing on both behavioral and neurophysiological outcomes. Thirty-one participants completed five WM tasks under both sham and verum stimulation conditions. Electroencephalography (EEG) recordings before and after stimulation showed that TGCp-tACS increased power spectral density (PSD) in the high-gamma region at the stimulation site, while PSD decreased in the theta and delta regions throughout the cortex. From a behavioral perspective, although no significant changes were observed in most tasks, there was a significant improvement in accuracy in the 14-item Sternberg task, indicating an improvement in phonological WM. In conclusion, TGCp-tACS has the potential to promote and improve the phonological component of WM. To fully realize the cognitive benefits, further research is needed to refine the stimulation parameters and account for individual differences, such as baseline cognitive status and hormonal factors.

摘要

工作记忆(WM)对于复杂认知任务所需信息的临时存储和处理至关重要,并且依赖于神经元的θ波和γ波振荡。鉴于工作记忆的容量有限,研究人员已经研究了各种改善它的方法,包括经颅交流电刺激(tACS),它可以在特定频率下调节大脑活动。一种特别有前景的方法是θ-γ峰值耦合经颅交流电刺激(TGCp-tACS),它模拟了大脑在认知控制过程中发生的θ波和γ波振荡之间的自然相互作用。本研究的目的是通过TGCp-tACS改善健康年轻成年人的工作记忆,重点关注行为和神经生理学结果。31名参与者在假刺激和真刺激条件下完成了五项工作记忆任务。刺激前后的脑电图(EEG)记录表明,TGCp-tACS增加了刺激部位高γ区域的功率谱密度(PSD),而整个皮层的θ和δ区域的PSD则降低。从行为角度来看,虽然在大多数任务中没有观察到显著变化,但在14项斯特恩伯格任务中的准确性有显著提高,表明语音工作记忆有所改善。总之,TGCp-tACS有潜力促进和改善工作记忆的语音成分。为了充分实现认知益处,需要进一步研究来优化刺激参数并考虑个体差异,如基线认知状态和激素因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7f5/11446076/98bf2077bf78/13041_2024_1142_Fig1_HTML.jpg

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