High-definition transcranial direct current stimulation of the parietal cortices modulates the neural dynamics underlying verbal working memory

IF 3.5 2区 医学 Q1 NEUROIMAGING Human Brain Mapping Pub Date : 2024-08-21 DOI:10.1002/hbm.70001
Yasra Arif, Richard W. Song, Seth D. Springer, Jason A. John, Christine M. Embury, Abraham D. Killanin, Jake J. Son, Hannah J. Okelberry, Kellen M. McDonald, Giorgia Picci, Tony W. Wilson
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Abstract

Verbal working memory (vWM) is an essential limited-capacity cognitive system that spans the fronto-parietal network and utilizes the subprocesses of encoding, maintenance, and retrieval. With the recent widespread use of noninvasive brain stimulation techniques, multiple recent studies have examined whether such stimulation may enhance cognitive abilities such as vWM, but the findings to date remain unclear in terms of both behavior and critical brain regions. In the current study, we applied high-definition direct current stimulation to the left and right parietal cortices of 39 healthy adults in three separate sessions (left anodal, right anodal, and sham). Following stimulation, participants completed a vWM task during high-density magnetoencephalography (MEG). Significant neural responses at the sensor-level were imaged using a beamformer and whole-brain ANOVAs were used to identify the specific neuromodulatory effects of the stimulation conditions on neural responses serving distinct phases of vWM. We found that right stimulation had a faciliatory effect relative to left stimulation and sham on theta oscillations during encoding in the right inferior frontal, while the opposite pattern was observed for left supramarginal regions. Stimulation also had a faciliatory effect on theta in occipital regions and alpha in temporal regions regardless of the laterality of stimulation. In summary, our data suggest that parietal HD-tDCS both facilitates and interferes with neural responses underlying both the encoding and maintenance phases of vWM. Future studies are warranted to determine whether specific tDCS parameters can be tuned to accentuate the facilitation responses and attenuate the interfering aspects.

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对顶叶皮层进行高清晰度经颅直流电刺激可调节言语工作记忆的神经动态。
言语工作记忆(vWM)是一种重要的容量有限的认知系统,它横跨前顶叶网络,利用编码、维持和检索等子过程。随着近来无创脑部刺激技术的广泛应用,多项最新研究探讨了这种刺激是否能增强认知能力,如虚拟记忆,但迄今为止,在行为和关键脑区方面的研究结果仍不明确。在本研究中,我们对 39 名健康成年人的左右顶叶皮层分别进行了三次高清直流电刺激(左侧阳极、右侧阳极和假刺激)。刺激结束后,受试者在高密度脑磁图(MEG)检查中完成了一项虚拟世界管理任务。使用波束成形器对传感器层面的重要神经反应进行成像,并使用全脑方差分析来确定刺激条件对vWM不同阶段神经反应的特定神经调节作用。我们发现,相对于左侧刺激和假刺激,右侧刺激对右侧下额叶编码期间的θ振荡有促进作用,而对左侧边际上区的影响则相反。无论刺激的侧向如何,刺激对枕叶区的θ和颞叶区的α也有促进作用。总之,我们的数据表明,顶叶 HD-tDCS 既能促进也能干扰 vWM 编码和维持阶段的神经反应。未来的研究有必要确定是否可以调整特定的 tDCS 参数,以增强促进反应和减弱干扰反应。
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来源期刊
Human Brain Mapping
Human Brain Mapping 医学-核医学
CiteScore
8.30
自引率
6.20%
发文量
401
审稿时长
3-6 weeks
期刊介绍: Human Brain Mapping publishes peer-reviewed basic, clinical, technical, and theoretical research in the interdisciplinary and rapidly expanding field of human brain mapping. The journal features research derived from non-invasive brain imaging modalities used to explore the spatial and temporal organization of the neural systems supporting human behavior. Imaging modalities of interest include positron emission tomography, event-related potentials, electro-and magnetoencephalography, magnetic resonance imaging, and single-photon emission tomography. Brain mapping research in both normal and clinical populations is encouraged. Article formats include Research Articles, Review Articles, Clinical Case Studies, and Technique, as well as Technological Developments, Theoretical Articles, and Synthetic Reviews. Technical advances, such as novel brain imaging methods, analyses for detecting or localizing neural activity, synergistic uses of multiple imaging modalities, and strategies for the design of behavioral paradigms and neural-systems modeling are of particular interest. The journal endorses the propagation of methodological standards and encourages database development in the field of human brain mapping.
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