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高清经颅直流电刺激的极性会影响运动序列的规划与执行。

The polarity of high-definition transcranial direct current stimulation affects the planning and execution of movement sequences.

作者信息

Son Jake J, Erker Tara D, Ward Thomas W, Arif Yasra, Huang Peihan J, John Jason A, McDonald Kellen M, Petro Nathan M, Garrison Grant M, Okelberry Hannah J, Kress Kennedy A, Picci Giorgia, Heinrichs-Graham Elizabeth, Wilson Tony W

机构信息

Institute for Human Neuroscience, Boys Town National Research Hospital, Boys Town, NE, USA; College of Medicine, University of Nebraska Medical Center, Omaha, NE, USA.

Institute for Human Neuroscience, Boys Town National Research Hospital, Boys Town, NE, USA.

出版信息

Neuroimage. 2025 Feb 1;306:121018. doi: 10.1016/j.neuroimage.2025.121018. Epub 2025 Jan 10.

Abstract

Noninvasive brain stimulation of the primary motor cortex has been shown to alter therapeutic outcomes in stroke and other neurological conditions, but the precise mechanisms remain poorly understood. Determining the impact of such neurostimulation on the neural processing supporting motor control is a critical step toward further harnessing its therapeutic potential in multiple neurological conditions affecting the motor system. Herein, we leverage the excellent spatio-temporal precision of magnetoencephalographic (MEG) imaging to identify the spectral, spatial, and temporal effects of high-definition transcranial direct current stimulation (HD-tDCS) on the neural responses supporting motor control. Participants (N = 67) completed three HD-tDCS visits (anode, cathode, sham), with each involving 20 min of left primary motor cortex stimulation and performance of a simple/complex motor sequencing task during MEG. Whole-brain statistical analyses of beta oscillatory responses revealed stimulation-by-task interaction effects in the left primary motor cortex, right occipitotemporal, and the right dorsolateral prefrontal cortices. Broadly, anodal stimulation induced significantly stronger beta oscillatory responses in these regions during simple movement sequences, while neural responses to complex sequences were not affected by stimulation. En masse, these data suggest that the beta oscillations serving motor planning (i.e., pre-movement) are particularly sensitive to the polarity of noninvasive stimulation and that the impact varies based on the difficulty of the movement sequence.

摘要

经颅磁刺激初级运动皮层已被证明可改变中风和其他神经系统疾病的治疗效果,但其确切机制仍知之甚少。确定这种神经刺激对支持运动控制的神经加工的影响,是进一步挖掘其在多种影响运动系统的神经系统疾病中的治疗潜力的关键一步。在此,我们利用脑磁图(MEG)成像出色的时空精度,来确定高清经颅直流电刺激(HD-tDCS)对支持运动控制的神经反应的频谱、空间和时间效应。参与者(N = 67)完成了三次HD-tDCS治疗(阳极、阴极、假刺激),每次治疗包括20分钟的左侧初级运动皮层刺激,并在MEG检查期间完成一项简单/复杂的运动序列任务。对β振荡反应的全脑统计分析显示,在左侧初级运动皮层、右侧枕颞叶和右侧背外侧前额叶皮层存在刺激与任务的交互作用。总体而言,在简单运动序列期间,阳极刺激在这些区域诱发了明显更强的β振荡反应,而对复杂序列的神经反应不受刺激影响。总体而言,这些数据表明,用于运动规划(即运动前)的β振荡对无创刺激的极性特别敏感,且其影响因运动序列的难度而异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcd6/11829609/c8fcc31433dd/nihms-2051059-f0001.jpg

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