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Evaluation of local electric fields generated by transcranial direct current stimulation with an extracephalic reference electrode based on realistic 3D body modeling

机译:基于真实3D人体模型的经颅外参考电极经颅直流电刺激产生的局部电场的评估

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In this study, local electric field distributions generated by transcranial direct current stimulation (tDCS) with an extracephalic reference electrode were evaluated to address extracephalic tDCS safety issues. To this aim, we generated a numerical model of an adult male human upper body and applied the 3D finite element method to electric current conduction analysis. In our simulations, the active electrode was placed over the left primary motor cortex (M1) and the reference electrode was placed at six different locations: over the right temporal lobe, on the right supraorbital region, on the right deltoid, on the left deltoid, under the chin, and on the right buccinator muscle. The maximum current density and electric field intensity values in the brainstem generated by the extracephalic reference electrodes were comparable to, or even less than, those generated by the cephalic reference electrodes. These results suggest that extracephalic reference electrodes do not lead to unwanted modulation of the brainstem cardio-respiratory and autonomic centers, as indicated by recent experimental studies. The volume energy density was concentrated at the neck area by the use of deltoid reference electrodes, but was still smaller than that around the active electrode locations. In addition, the distributions of elicited cortical electric fields demonstrated that the use of extracephalic reference electrodes might allow for the robust prediction of cortical modulations with little dependence on the reference electrode locations.
机译:在这项研究中,评估了通过颅外参考电极经颅直流电刺激(tDCS)产生的局部电场分布,以解决颅外tDCS安全问题。为此,我们生成了一个成年男性上半身的数值模型,并将3D有限元方法应用于电流传导分析。在我们的模拟中,将有源电极放置在左初级运动皮层(M1)上,将参比电极放置在六个不同的位置:右颞叶,右眶上区,右三角肌,左三角肌,在下巴下方,在右掌骨肌上。由头外参考电极产生的脑干中的最大电流密度和电场强度值可与头端参考电极产生的那些相当或什至更少。这些结果表明,正如最近的实验研究所表明的那样,脑外参比电极不会导致脑干心脏-呼吸和自主神经中枢的不必要调节。通过使用三角电极作为参考电极,体积能量密度集中在颈部区域,但仍小于有源电极位置周围的体积能量密度。另外,诱发的皮质电场的分布表明,使用头外参考电极可能允许对皮质调制的鲁棒性预测,而对参考电极位置的依赖性很小。

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