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经颅直流电刺激调节阿尔茨海默病患者的皮质神经元活动。

Transcranial Direct Current Stimulation Modulates Cortical Neuronal Activity in Alzheimer's Disease.

作者信息

Marceglia Sara, Mrakic-Sposta Simona, Rosa Manuela, Ferrucci Roberta, Mameli Francesca, Vergari Maurizio, Arlotti Mattia, Ruggiero Fabiana, Scarpini Elio, Galimberti Daniela, Barbieri Sergio, Priori Alberto

机构信息

Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, Clinical Center for Neurostimulation, Neurotechnology, and Movement DisordersMilano, Italia; Dipartimento di Ingegneria e Architettura, Università degli Studi di TriesteTrieste, Italia.

Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, Clinical Center for Neurostimulation, Neurotechnology, and Movement DisordersMilano, Italia; Istituto di Bioimmagini e di Fisiologia Molecolare, Consiglio Nazionale delle RicercheSegrate, Italia.

出版信息

Front Neurosci. 2016 Mar 31;10:134. doi: 10.3389/fnins.2016.00134. eCollection 2016.

Abstract

Quantitative electroencephalography (qEEG) showed that Alzheimer's disease (AD) is characterized by increased theta power, decreased alpha and beta power, and decreased coherence in the alpha and theta band in posterior regions. These abnormalities are thought to be associated with functional disconnections among cortical areas, death of cortical neurons, axonal pathology, and cholinergic deficits. Since transcranial Direct Current Stimulation (tDCS) over the temporo-parietal area is thought to have beneficial effects in patients with AD, in this study we aimed to investigate whether tDCS benefits are related to tDCS-induced changes in cortical activity, as represented by qEEG. A weak anodal current (1.5 mA, 15 min) was delivered bilaterally over the temporal-parietal lobe to seven subjects with probable AD (Mini-Mental State Examination, MMSE score >20). EEG (21 electrodes, 10-20 international system) was recorded for 5 min with eyes closed before (baseline, t0) and 30 min after anodal and cathodal tDCS ended (t1). At the same time points, patients performed a Word Recognition Task (WRT) to assess working memory functions. The spectral power and the inter- and intra-hemispheric EEG coherence in different frequency bands (e.g., low frequencies, including delta and theta; high frequencies, including alpha and beta) were calculated for each subject at t0 and t1. tDCS-induced changes in EEG neurophysiological markers were correlated with the performance of patients at the WRT. At baseline, qEEG features in AD patients confirmed that the decreased high frequency power was correlated with lower MMSE. After anodal tDCS, we observed an increase in the high-frequency power in the temporo-parietal area and an increase in the temporo-parieto-occipital coherence that correlated with the improvement at the WRT. In addition, cathodal tDCS produced a non-specific effect of decreased theta power all over the scalp that was not correlated with the clinical observation at the WRT. Our findings disclosed that tDCS induces significant modulations in the cortical EEG activity in AD patients. The abnormal pattern of EEG activity observed in AD during memory processing is partially reversed by applying anodal tDCS, suggesting that anodal tDCS benefits in AD patients during working memory tasks are supported by the modulation of cortical activity.

摘要

定量脑电图(qEEG)显示,阿尔茨海默病(AD)的特征在于θ波功率增加、α波和β波功率降低,以及后部区域α波和θ波频段的相干性降低。这些异常被认为与皮质区域之间的功能连接中断、皮质神经元死亡、轴突病变和胆碱能缺陷有关。由于经颞顶叶区域的经颅直流电刺激(tDCS)被认为对AD患者有有益影响,在本研究中,我们旨在研究tDCS的益处是否与tDCS诱导的皮质活动变化相关,如qEEG所示。向7名可能患有AD的受试者(简易精神状态检查表,MMSE评分>20)双侧颞顶叶施加微弱的阳极电流(1.5 mA,15分钟)。在阳极和阴极tDCS结束前(基线,t0)闭眼记录脑电图(21个电极,10-20国际系统)5分钟,结束后30分钟(t1)记录。在相同时间点,患者执行单词识别任务(WRT)以评估工作记忆功能。计算每个受试者在t0和t1时不同频段(例如,低频,包括δ波和θ波;高频,包括α波和β波)的频谱功率以及半球间和半球内脑电图相干性。tDCS诱导的脑电图神经生理标志物变化与患者在WRT中的表现相关。在基线时,AD患者的qEEG特征证实高频功率降低与较低的MMSE相关。阳极tDCS后,我们观察到颞顶叶区域的高频功率增加以及颞顶枕相干性增加,这与WRT中的改善相关。此外,阴极tDCS在整个头皮上产生了θ波功率降低的非特异性效应,这与WRT中的临床观察结果无关。我们的研究结果表明,tDCS可诱导AD患者皮质脑电图活动发生显著调制。在记忆处理过程中AD患者观察到的异常脑电图活动模式通过应用阳极tDCS得到部分逆转,这表明在工作记忆任务中阳极tDCS对AD患者的益处得到皮质活动调制的支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bee8/4814712/41703e1dc5a6/fnins-10-00134-g0001.jpg

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