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常见 tDCS 刺激模式下电流方向的个体间变异性。

Inter-individual variability in current direction for common tDCS montages.

机构信息

Department for Clinical and Movement Neurosciences, UCL Queen Square Institute of Neurology, 33 Queen Square, London, WC1N 3BG, United Kingdom.

Department for Clinical and Movement Neurosciences, UCL Queen Square Institute of Neurology, 33 Queen Square, London, WC1N 3BG, United Kingdom; Wellcome Centre for Integrative Neuroimaging, FMRIB, Nuffield Department of Clinical Neurosciences, University of Oxford, Oxford, United Kingdom.

出版信息

Neuroimage. 2022 Oct 15;260:119501. doi: 10.1016/j.neuroimage.2022.119501. Epub 2022 Jul 22.

Abstract

The direction of applied electric current relative to the cortical surface is a key determinant of transcranial direct current stimulation (tDCS) effects. Inter-individual differences in anatomy affect the consistency of current direction at a cortical target. However, the degree of this variability remains undetermined. Using current flow modelling (CFM), we quantified the inter-individual variability in tDCS current direction at a cortical target (left primary motor cortex, M1). Three montages targeting M1 using circular electrodes were compared: PA-tDCS directed current perpendicular to the central sulcus in a posterior-anterior direction relative to M1, ML-tDCS directed current parallel to the central sulcus in a medio-lateral direction, and conventional-tDCS applied electrodes over M1 and the contralateral forehead. In 50 healthy brain scans from the Human Connectome Project, we extracted current direction and intensity from the grey matter surface in the sulcal bank (M1) and gyral crown (M1), and neighbouring primary somatosensory cortex (S1 and S1). Results confirmed substantial inter-individual variability in current direction (50%-150%) across all montages. Radial inward current produced by PA-tDCS was predominantly located in M1, whereas for conventional-tDCS it was clustered in M1. The difference in radial inward current in functionally distinct subregions of M1 raises the testable hypothesis that PA-tDCS and conventional-tDCS modulate cortical excitability through different mechanisms. We show that electrode locations can be used to closely approximate current direction in M1 and precentral gyrus, providing a landmark-based method for tDCS application to address the hypothesis without the need for MRI. By contrast, ML-tDCS current was more tangentially orientated, which is associated with weaker somatic polarisation. Substantial inter-individual variability in current direction likely contributes to variable neuromodulation effects reported for these protocols, emphasising the need for individualised electrode montages, including the control of current direction.

摘要

应用电流相对于皮质表面的方向是经颅直流电刺激(tDCS)效果的关键决定因素。个体解剖结构的差异会影响皮质目标处电流方向的一致性。然而,这种可变性的程度仍未确定。我们使用电流流动建模(CFM),量化了皮质目标(左初级运动皮层,M1)处 tDCS 电流方向的个体间变异性。比较了三种针对 M1 的圆形电极刺激模式:PA-tDCS 使电流垂直于中央沟,从前向后相对于 M1 流动;ML-tDCS 使电流平行于中央沟,从中侧向侧方流动;常规 tDCS 将电极放置在 M1 及其对侧额头上。在人类连接组计划的 50 个健康大脑扫描中,我们从脑回的灰质表面(M1)和脑回的脑回顶(M1)以及相邻的初级体感皮层(S1 和 S1)中提取电流方向和强度。结果证实,所有刺激模式的电流方向都存在很大的个体间变异性(50%-150%)。PA-tDCS 产生的径向内向电流主要位于 M1 内,而常规 tDCS 的电流则聚集在 M1 内。M1 内功能不同的亚区的径向内向电流的差异提出了一个可检验的假设,即 PA-tDCS 和常规 tDCS 通过不同的机制调节皮质兴奋性。我们表明,可以使用电极位置来近似 M1 和中央前回中的电流方向,为 tDCS 应用提供一种基于地标定位的方法,无需 MRI 即可解决该假设。相比之下,ML-tDCS 电流的方向更偏向切线方向,这与较弱的躯体极化有关。电流方向的个体间变异性可能导致这些方案报告的神经调节效果的变异性,强调了需要个体化的电极刺激模式,包括对电流方向的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b863/10510029/bce3613cb951/gr1.jpg

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