Department of Psychiatry, Psychotherapy and Psychosomatics, RWTH Aachen University, Pauwelsstraße 30, 52074, Aachen, Germany.
Department of Psychiatry, Psychotherapy and Psychosomatics, RWTH Aachen University, Pauwelsstraße 30, 52074, Aachen, Germany; JARA-BRAIN Institute Brain Structure-Function Relationships, Research Center Jülich and RWTH Aachen, Germany; Institute of Neuroscience and Medicine 10, Research Center Jülich, 52438, Jülich, Germany.
Brain Stimul. 2023 Nov-Dec;16(6):1722-1732. doi: 10.1016/j.brs.2023.11.012. Epub 2023 Nov 25.
High-definition transcranial direct current stimulation (HD-tDCS) holds promise for therapeutic use in psychiatric disorders. One obstacle for the implementation into clinical practice is response variability. One way to tackle this obstacle is the use of Individualized head models.
This study investigated the variability of HD-tDCS induced electric fields (EFs) and its impact on resting-state functional connectivity (rsFC) during different time windows.
In this randomized, double-blind, and sham controlled study, seventy healthy males underwent 20 min of 1.5 mA HD-tDCS on the right inferior frontal gyrus (rIFG) while undergoing resting-state functional magnetic resonance imaging (rs-fMRI). Individual head models and EF simulations were created from anatomical images. The effects of HD-tDCS on rsFC were assessed using a seed-to-voxel analysis. A subgroup analysis explored the relationship between EF magnitude and rsFC during different stimulation time windows.
Results highlighted significant variability in HD-tDCS-induced EFs. Compared to the sham group, the active group showed increased rsFC between the rIFG and the left prefrontal cortex, during and after stimulation. During active stimulation, EF magnitude correlated positively with rsFC between the rIFG and the left hippocampus initially, and negatively during the subsequent period.
This study indicated an HD-tDCS induced increase of rsFC between left and right prefrontal areas. Furthermore, an interaction between the magnitude and the duration of HD-tDCS on rsFC was observed. Due to the high EF variability that was apparent, these findings highlight the need for individualized HD-tDCS protocols and the creation of head models to optimize effects and reduce response heterogeneity.
高清晰度经颅直流电刺激(HD-tDCS)有望在精神疾病的治疗中得到应用。实施临床实践的一个障碍是反应的可变性。解决这一障碍的一种方法是使用个体化的头部模型。
本研究调查了在不同时间窗口内,HD-tDCS 诱导的电场(EF)的变异性及其对静息状态功能连接(rsFC)的影响。
在这项随机、双盲、假对照研究中,70 名健康男性在右额下回(rIFG)接受 1.5 mA 的 20 分钟 HD-tDCS 治疗,同时进行静息状态功能磁共振成像(rs-fMRI)。从解剖图像创建个体化头部模型和 EF 模拟。使用种子到体素分析评估 HD-tDCS 对 rsFC 的影响。亚组分析探讨了不同刺激时间窗口内 EF 幅度与 rsFC 之间的关系。
结果突出了 HD-tDCS 诱导的 EF 中的显著变异性。与假刺激组相比,在刺激期间和刺激后,活跃组表现出 rIFG 与左前额叶皮层之间的 rsFC 增加。在活跃刺激期间,EF 幅度与 rIFG 与左海马体之间的 rsFC 最初呈正相关,随后呈负相关。
本研究表明,HD-tDCS 诱导的 rsFC 在左右前额区域之间增加。此外,还观察到 HD-tDCS 对 rsFC 的幅度和持续时间的相互作用。由于明显的 EF 变异性,这些发现强调了需要个体化的 HD-tDCS 方案和头部模型的创建,以优化效果并减少反应异质性。