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EFFECT OF TRANSCRANIAL DIRECT CURRENT STIMULATION ON CORTICO-MUSCULAR COHERENCE AND STANDING POSTURAL STEADINESS

机译:经颅直流刺激对皮质肌肉连贯性和站立姿势稳定性的影响

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Background: Non-invasive brain stimulation (NIBS) such as transcranial direct current stimulation (tDCS) is a promising tool for inducing cortico-spinal excitability and facilitating motor learning. The objective of this study was to investigate the effect of transcranial DC stimulation (tDCS) on cortico-muscular coherence and standing postural steadiness.Methods: In this single-blind, sham-controlled study, ten healthy subjects were evaluated under two conditions -with anodal tDCS and with sham tDCS. The change in cortico-spinal excitability was tested with single pulse transcranial magnetic stimulation (TMS). Paired t-test was performed on their cortico-muscular coherence measures and stabilogram metrics during quiet standing with eyes closed.Results: Anodal tDCS induced statistically significant (P=0.001, N=40) cortico-spinal excitability, 45min and 60min after the end of tDCS as revealed by single pulse transcranial magnetic stimulation (TMS) of resting tibialis anterior muscle. Furthermore, anodal tDCS induced statistically significant (P=0.001, N=40) cortico-muscular coherence in tibialis anterior muscle during quiet standing with eyes closed, 45min and 60min after the end of tDCS. The % change in the stabilogram metrics after anodal tDCS during quiet standing with eyes closed showed that anodal tDCS strongly (P=0.0000) affected the change in centroid of CoP data-points in medio-lateral direction (%CoP_(ML)) at 45min and 60min after tDCS session. Anodal tDCS had moderate effect (P=0.0113) on the change (decrease) in the path length of CoP trajectory (%CoP_(PL)) at 60min after tDCS. Also, anodal tDCS had a strong (P=0.0000) effect on the change (decrease) in sway area (%CoP_(EA)) at 45min and 60min after tDCS session. Conclusions: The preliminary results showed tDCS-induced increase in cortical excitability of tibialis anterior muscle as well as an improvement in standing postural steadiness during quiet standing with eyes closed. In our opinion, this is the first study to show that standing postural steadiness during eyes closed condition can be improved with tDCS.
机译:背景:诸如经颅直流刺激(TDCS)之类的非侵入性脑刺激(NIB)是用于诱导皮质脊髓兴奋性和促进电机学习的有希望的工具。本研究的目的是探讨经颅DC刺激(TDC)对皮质肌肉连贯性和静态姿势稳定性的影响。在这种单一盲目的假手中的研究中,在两个条件下评估了十个健康的受试者 - anodal tdcs和假tdcs。用单脉冲经颅磁刺激(TMS)测试皮质脊髓兴奋性的变化。对其皮质肌肉相干措施和稳定性的闭合闭合时对其皮质肌肉相干措施和stabilemarics度量进行了成对的T检验。结果:anodal TDCs致统计学意义(p = 0.001,n = 40)皮质兴奋性,45min和60min后结束后通过单脉冲经颅磁刺激(TMS)揭示TDC的TDC。此外,在安静地站在TDC闭合后,脂肪肌TDC在胫骨前肌肉中致统计学显着(p = 0.001,n = 40)皮质肌肉相干性,45分钟和60分钟。在安静的眼睛闭合期间稳定值测量稳定值测量的百分比变化表明,阳极TDC强烈(p = 0.0000)影响了45分钟的Medio-横向(%COP_(ml)中的COP数据点质心的变化TDCS会议后60分钟。在TDC之后60分钟的COP轨迹(%COP_(PL)的路径长度(%COP_(PL))中的变化(减小)的变化(减小)的变化(P = 0.0113)具有中等的效果(p = 0.0113)。此外,在TDCS会话之后,AnoDal TDC对45min和60min的摇摆区域(%COP_(EA))的变化(%COP_(EA))的变化(%)效果有强(p = 0.0000)。结论:初步结果表明,TIBIalis前肌的皮质兴奋性的增加,以及闭着眼睛安静站立时静态姿态的改善。在我们看来,这是第一次表明眼睛闭合状态的姿态稳定性可以改善TDC。

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