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左背外侧前额叶皮层电场强度对经颅直流电刺激引起的自发性功能连接变化的影响:一项随机交叉研究。

Impact of Electric Field Magnitude in the Left Dorsolateral Prefrontal Cortex on Changes in Intrinsic Functional Connectivity Using Transcranial Direct Current Stimulation: A Randomized Crossover Study.

机构信息

Department of Rehabilitation Medicine, Seoul National University Hospital, Seoul, Republic of Korea.

Biomedical Research Institute, Seoul National University Hospital, Seoul, Republic of Korea.

出版信息

J Neurosci Res. 2024 Sep;102(9):e25378. doi: 10.1002/jnr.25378.

Abstract

This study investigated whether the electric field magnitude (E-field) delivered to the left dorsolateral prefrontal cortex (L-DLPFC) changes resting-state brain activity and the L-DLPFC resting-state functional connectivity (rsFC), given the variability in tDCS response and lack of understanding of how rsFC changes. Twenty-one healthy participants received either 2 mA anodal or sham tDCS targeting the L-DLPFC for 10 min. Brain imaging was conducted before and after stimulation. The fractional amplitude of low-frequency fluctuation (fALFF), reflecting resting brain activity, and the L-DLPFC rsFC were analyzed to investigate the main effect of tDCS, main effect of time, and interaction effects. The E-field was estimated by modeling tDCS-induced individual electric fields and correlated with fALFF and L-DLPFC rsFC. Anodal tDCS increased fALFF in the left rostral middle frontal area and decreased fALFF in the midline frontal area (FWE p < 0.050), whereas sham induced no changes. Overall rsFC decreased after sham (positive and negative connectivity, p = 0.001 and 0.020, respectively), with modest and nonsignificant changes after anodal tDCS (p = 0.063 and 0.069, respectively). No significant differences in local rsFC were observed among the conditions. Correlations were observed between the E-field and rsFC changes in the L-DLPFC (r = 0.385, p = 0.115), left inferior parietal area (r = 0.495, p = 0.037), and right lateral visual area (r = 0.683, p = 0.002). Single-session tDCS induced resting brain activity changes and may help maintain overall rsFC. The E-field in the L-DLPFC is associated with rsFC changes in both proximal and distally connected brain regions to the L-DLPFC.

摘要

本研究旨在探讨在 tDCS 反应的可变性和对 rsFC 变化如何理解的情况下,施加于左侧背外侧前额叶皮层(L-DLPFC)的电场强度(E-field)是否会改变静息态大脑活动和 L-DLPFC 静息态功能连接(rsFC)。21 名健康参与者接受了针对 L-DLPFC 的 2mA 阳极或假 tDCS 刺激 10 分钟。刺激前后进行脑成像。分析分数低频波动幅度(fALFF),反映静息大脑活动,以及 L-DLPFC rsFC,以研究 tDCS 的主要效应、时间的主要效应和相互作用效应。通过建模 tDCS 诱导的个体电场来估计 E-field,并与 fALFF 和 L-DLPFC rsFC 相关联。阳极 tDCS 增加了左侧额中回前部的 fALFF,减少了中线额区的 fALFF(FWE p<0.050),而假刺激则没有变化。总体而言,假刺激后 rsFC 减少(正性和负性连接,p=0.001 和 0.020),阳极 tDCS 后略有但无统计学意义的变化(p=0.063 和 0.069)。在不同条件下,局部 rsFC 没有观察到显著差异。在 L-DLPFC 中观察到 E-field 与 rsFC 变化之间存在相关性(r=0.385,p=0.115),左侧顶下小叶区(r=0.495,p=0.037)和右侧外侧视觉区(r=0.683,p=0.002)。单次 tDCS 诱导静息态大脑活动变化,可能有助于维持整体 rsFC。L-DLPFC 的 E-field 与 L-DLPFC 近端和远端连接脑区的 rsFC 变化相关。

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