Comparative Effects of Temporal Interference and High-Definition Transcranial Direct Current Stimulation on Spontaneous Neuronal Activity in the Primary Motor Cortex: A Randomized Crossover Study.

IF 2.8 3区 医学 Q3 NEUROSCIENCES Brain Sciences Pub Date : 2025-03-18 DOI:10.3390/brainsci15030317
Zhiqiang Zhu, Lang Qin, Dongsheng Tang, Zhenyu Qian, Jie Zhuang, Yu Liu
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Abstract

Background: Modulating spontaneous neuronal activity is critical for understanding and potentially treating neurological disorders, yet the comparative effects of different non-invasive brain stimulation techniques remain underexplored. Objective: This study aimed to systematically compare the effects of temporal interference (TI) stimulation and high-definition transcranial direct current stimulation (HD-tDCS) on spontaneous neuronal activity in the primary motor cortex. Methods: In a randomized, crossover design, forty right-handed participants underwent two 20 min sessions of either TI or HD-tDCS. Resting-state fMRI data were collected at four stages: pre-stimulus baseline (S1), first half of stimulation (S2), second half of stimulation (S3), and post-stimulation (S4). We analyzed changes in regional homogeneity (ReHo), dynamic ReHo (dReHo), fractional amplitude of low-frequency fluctuations (fALFFs), and dynamic fALFFs (dfALFFs) to assess the impact on spontaneous neuronal activity. Results: The analysis revealed that TI had a more significant impact on ReHo, especially in the left superior temporal gyrus and postcentral gyrus, compared with HD-tDCS. Both stimulation methods exhibited their strongest effects during the second half of the stimulation period, but only TI maintained significant activity in the post-stimulation phase. Additionally, both TI and HD-tDCS enhanced fALFFs in real-time, with TI showing more pronounced effects in sensorimotor regions. Conclusions: These findings suggest that TI exerts a more potent and sustained influence on spontaneous neuronal activity than HD-tDCS. This enhanced understanding of their differential effects provides valuable insights for optimizing non-invasive brain stimulation protocols for therapeutic applications.

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时间干扰和高清晰度经颅直流电刺激对初级运动皮层自发神经元活动的比较影响:一项随机交叉研究。
背景:调节自发神经元活动对于理解和潜在治疗神经系统疾病至关重要,然而不同的非侵入性脑刺激技术的比较效果仍未得到充分探索。目的:系统比较时间干扰刺激(TI)和高清晰度经颅直流电刺激(HD-tDCS)对初级运动皮层自发神经元活动的影响。方法:在随机交叉设计中,40名右撇子参与者接受了两次20分钟的TI或HD-tDCS。静息状态fMRI数据在四个阶段收集:刺激前基线(S1)、刺激前半部分(S2)、刺激后半部分(S3)和刺激后(S4)。我们分析了区域均匀性(ReHo)、动态ReHo (dReHo)、低频波动分数幅度(fALFFs)和动态fALFFs (dfALFFs)的变化,以评估对自发神经元活动的影响。结果:与HD-tDCS相比,TI对ReHo的影响更为显著,尤其是对左侧颞上回和中央后回的影响。两种刺激方法在刺激期后半段均表现出最强的效果,但只有TI在刺激后阶段保持显著的活性。此外,TI和HD-tDCS都能实时增强fALFFs,其中TI在感觉运动区域表现出更明显的效果。结论:这些发现表明TI对自发神经元活动的影响比HD-tDCS更有效和持续。这增强了对其不同效果的理解,为优化治疗应用的非侵入性脑刺激方案提供了有价值的见解。
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来源期刊
Brain Sciences
Brain Sciences Neuroscience-General Neuroscience
CiteScore
4.80
自引率
9.10%
发文量
1472
审稿时长
18.71 days
期刊介绍: Brain Sciences (ISSN 2076-3425) is a peer-reviewed scientific journal that publishes original articles, critical reviews, research notes and short communications in the areas of cognitive neuroscience, developmental neuroscience, molecular and cellular neuroscience, neural engineering, neuroimaging, neurolinguistics, neuropathy, systems neuroscience, and theoretical and computational neuroscience. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files or software regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material.
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