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Corticospinal excitability enhancement with simultanous transcranial near-infrared stimulation and anodal direct current stimulation of motor cortex

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机构: [a]Central Laboratory, Xuanwu Hospital, Capital Medical University, Beijing, China [b]Department of Neurology, Xuanwu Hospital, Capital Medical University, Beijing, China [c]Beijing Geriatric Medical Research Center, Beijing, China [d]Beijing Key Laboratory of Neuromodulation, Beijing, China [e]Department of Neurobiology, School of Basic Medical Sciences, Capital Medical University, Beijing, China [f]Beijing Institute for Brain Disorders, Collaborative Innovation Center for Brain Disorders, Capital Medical University, Beijing, China
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关键词: Transcranial near-infrared stimulation Transcranial direct current stimulation Simultaneous Cortical excitability Motor evoked potentials

摘要:
Objectives: Non-invasive brain stimulation (NIBS) is beneficial to many neurological and psychiatric disorders by modulating neuroplasticity and cortical excitability. However, recent studies evidence that single type of NIBS such as transcranial direct current stimulation (tDCS) does not have meaningful clinical therapeutic responses due to their small effect size. Transcranial near-infrared stimulation (tNIRS) is a novel form of NIBS. Both tNIRS and tDCS implement its therapeutic effects by modulating cortical excitability but with different mechanisms. We hypothesized that simultaneous tNIRS and tDCS is superior to single stimulation, leading to a greater cortical excitability. Methods: Sixteen healthy subjects participated in a double-blind, sham-controlled, cross-over designed study. Motor evoked potentials (MEPs) were used to measure motor cortex excitability. The changes of MEP were calculated and compared in the sham condition, tDCS stimulation condition, tNIRS condition and the simultaneous tNIRS and anodal tDCS condition. Results: tDCS alone and tNIRS alone both elicited higher MEP after stimulation, while the MEP amplitude in the simultaneous tNIRS and tDCS condition was significantly higher than either tNIRS alone or tDCS alone. The enhancement lasted up to at least 30 minutes after stimulation, indicating simultaneous 820 nm tNIRS with 2 mA anodal tDCS have a synergistic effect on cortical plasticity. Conclusions: Simultaneous application of tNIRS with tDCS produces a stronger cortical excitability effect. Significance: The simultaneous tNIRS and tDCS is a promising technology with exciting potential as a means of treatment, neuro-enhancement, or neuro-protection. © 2021 International Federation of Clinical Neurophysiology

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基金编号: grant numbers: 2019YFC0121200, 2019YFC0121202, 2019YFC0121203, 2018YFC1314500, 2018YFA0108503, 2016YFC1306302

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出版当年[2020]版:
大类 | 3 区 医学
小类 | 3 区 临床神经病学 3 区 神经科学
最新[2023]版:
大类 | 3 区 医学
小类 | 3 区 临床神经病学 3 区 神经科学
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出版当年[2019]版:
Q2 NEUROSCIENCES Q2 CLINICAL NEUROLOGY
最新[2023]版:
Q1 CLINICAL NEUROLOGY Q2 NEUROSCIENCES

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第一作者机构: [a]Central Laboratory, Xuanwu Hospital, Capital Medical University, Beijing, China [b]Department of Neurology, Xuanwu Hospital, Capital Medical University, Beijing, China [c]Beijing Geriatric Medical Research Center, Beijing, China [d]Beijing Key Laboratory of Neuromodulation, Beijing, China
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