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首页> 外文期刊>Frontiers in Neuroscience >Low Intensity Focused tDCS Over the Motor Cortex Shows Inefficacy to Improve Motor Imagery Performance
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Low Intensity Focused tDCS Over the Motor Cortex Shows Inefficacy to Improve Motor Imagery Performance

机译:低强度聚焦于运动皮质的tDCS显示无效,无法改善运动图像性能

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Transcranial direct current stimulation (tDCS) is a brain stimulation technique that can enhance motor activity by stimulating the motor path. Thus, tDCS has the potential of improving the performance of brain-computer interfaces during motor neurorehabilitation. tDCS effects depend on several aspects, including the current density, which usually varies between 0.02 and 0.08 mA/cm~(2), and the location of the stimulation electrodes. Hence, testing tDCS montages at several current levels would allow the selection of current parameters for improving stimulation outcomes and the comparison of montages. In a previous study, we found that cortico-cerebellar tDCS shows potential of enhancing right-hand motor imagery. In this paper, we aim to evaluate the effects of the focal stimulation of the motor cortex over motor imagery. In particular, the effect of supplying tDCS with a 4 × 1 ring montage, which consists in placing an anode on the motor cortex and four cathodes around it, over motor imagery was assessed with different current densities. Electroencephalographic (EEG) classification into rest or right-hand/feet motor imagery was evaluated on five healthy subjects for two stimulation schemes: applying tDCS for 10 min on the (1) right-hand or (2) feet motor cortex before EEG recording. Accuracy differences related to the tDCS intensity, as well as μ and β band power changes, were tested for each subject and tDCS modality. In addition, a simulation of the electric field induced by the montage was used to describe its effect on the brain. Results show no improvement trends on classification for the evaluated currents, which is in accordance with the observation of variable EEG band power results despite the focused stimulation. The lack of effects is probably related to the underestimation of the current intensity required to apply a particular current density for small electrodes and the relatively short inter-electrode distance. Hence, higher current intensities should be evaluated in the future for this montage.
机译:经颅直流电刺激(tDCS)是一种大脑刺激技术,可以通过刺激运动路径来增强运动活动。因此,tDCS具有改善运动神经康复过程中脑机接口性能的潜力。 tDCS的影响取决于多个方面,包括电流密度(通常在0.02和0.08 mA / cm〜(2)之间变化)和刺激电极的位置。因此,在几个当前水平上测试tDCS蒙太奇将允许选择当前参数以改善刺激效果和比较蒙太奇。在先前的研究中,我们发现皮质小脑tDCS显示出增强右手运动图像的潜力。在本文中,我们旨在评估运动皮层上的局灶刺激对运动图像的影响。特别是,用不同的电流密度评估了在tDCS上为电机图像提供4×1环蒙太奇的效果,该效果包括在电机图像上放置一个阳极并在其周围放置四个阴极。在两种刺激方案下,对五名健康受试者的脑电图(EEG)分类进行了评估:两种刺激方案:在记录EEG之前,在(1)右手或(2)脚运动皮质上施加tDCS 10分钟。针对每个受试者和tDCS模态,测试了与tDCS强度以及μ和β谱带功率变化相关的精度差异。另外,通过模拟蒙太奇感应的电场来描述其对大脑的影响。结果表明,对于评估电流,分类没有改善趋势,这与观察到的尽管有集中刺激的可变脑电图谱带功率结果一致。缺乏效果可能与对小电极施加特定电流密度所需的电流强度低估以及电极间距离相对较短有关。因此,将来应为此蒙太奇评估更高的电流强度。

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