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The Effect of Transcranial Direct Current Stimulation (tDCS) Electrode Size and Current Intensity on Motor Cortical Excitability: Evidence From Single and Repeated Sessions

机译:经颅直流电刺激(tDCS)电极尺寸和电流强度对运动皮层兴奋性的影响:单次和重复训练的证据

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Background: Current density is considered an important factor in determining the outcomes of tDCS, and is determined by the current intensity and electrode size. Previous studies examining the effect of these parameters on motor cortical excitability with small sample sizes reported mixed results. Objective/hypothesis: This study examined the effect of current intensity (1 mA, 2 mA) and electrode size (16 cm(2), 35 cm(2)) on motor cortical excitability over single and repeated tDCS sessions. Methods: Data from seven studies in 89 healthy participants were pooled for analysis. Single-session data were analyzed using mixed effects models and repeated-session data were analyzed using mixed design analyses of variance. Computational modeling was used to examine the electric field generated. Results: The magnitude of increases in excitability after anodal tDCS was modest. For single-session tDCS, the 35 cm(2) electrodes produced greater increases in cortical excitability compared to the 16 cm(2) electrodes. There were no differences in the magnitude of cortical excitation produced by 1 mA and 2 mA tDCS. The repeated-sessions data also showed that there were greater increases in excitability with the 35 cm(2) electrodes. Further, repeated sessions of tDCS with the 35 cm(2) electrodes resulted in a cumulative increase in cortical excitability. Computational modeling predicted higher electric field at the motor hotspot for the 35 cm(2) electrodes. Conclusions: 2 mA tDCS does not necessarily produce larger effects than 1 mA tDCS in healthy participants. Careful consideration should be given to the exact positioning, size and orientation of tDCS electrodes relative to cortical regions. (C) 2016 Elsevier Inc. All rights reserved.
机译:背景:电流密度被认为是决定tDCS结果的重要因素,并由电流强度和电极尺寸决定。以前的研究以较小的样本量检查了这些参数对运动皮层兴奋性的影响,报告了混合结果。目的/假设:这项研究检查了电流强度(1 mA,2 mA)和电极大小(16 cm(2),35 cm(2))对单个和重复tDCS会话中运动皮层兴奋性的影响。方法:收集来自89位健康参与者的7项研究的数据进行分析。使用混合效应模型分析单会话数据,并使用混合设计方差分析对重复会话数据进行分析。计算模型用于检查产生的电场。结果:阳极tDCS后兴奋性增加幅度适中。对于单会话tDCS,与16 cm(2)电极相比,35 cm(2)电极在皮层兴奋性方面产生了更大的增长。 1 mA和2 mA tDCS产生的皮层激发幅度没有差异。重复训练的数据还显示,使用35 cm(2)电极的兴奋性有了更大的提高。此外,tDCS与35 cm(2)电极的重复会话导致皮质兴奋性的累积增加。计算模型预测35 cm(2)电极在电机热点处的电场较高。结论:在健康参与者中,2 mA tDCS不一定比1 mA tDCS产生更大的作用。应仔细考虑tDCS电极相对于皮层区域的确切位置,大小和方向。 (C)2016 Elsevier Inc.保留所有权利。

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