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单脉冲经颅磁刺激和外周神经刺激对肌电图信号复杂性的影响:分形分析。

The effect of single-pulse transcranial magnetic stimulation and peripheral nerve stimulation on complexity of EMG signal: fractal analysis.

机构信息

Biomedical Center, Torlak Institute, Belgrade, Serbia.

出版信息

Exp Brain Res. 2013 Jul;228(1):97-104. doi: 10.1007/s00221-013-3541-1. Epub 2013 May 8.

Abstract

The aim of this study was to examine whether single-pulse transcranial magnetic stimulation (spTMS) affects the pattern of corticospinal activity once voluntary drive has been restored after spTMS-induced EMG silence. We used fractal dimension (FD) to explore the 'complexity' of the electromyography (EMG) signal, and median frequency of the spectra (MDF) to examine changes in EMG spectral characteristics. FD and MDF of the raw EMG epochs immediately before were compared with those obtained from epochs after the EMG silence. Changes in FD and MDF after spTMS were examined with three levels of muscle contraction corresponding to weak (20-40%), moderate (40-60%) and strong (60-80% of maximal voluntary contraction) and three intensities of stimulation set at 10, 20 and 30% above the resting motor threshold. FD was calculated using the Higuchi fractal dimension algorithm. Finally, to discern the origin of FD changes between the CNS and muscle, we compared the effects of spTMS with the effects of peripheral nerve stimulation (PNS) on FD and MDF. The results show that spTMS induced significant decrease in both FD and MDF of EMG signal after stimulation. PNS did not have any significant effects on FD nor MDF. Changes in TMS intensity did not have any significant effect on FD or MDF after stimulation nor had the strength of muscle contraction. However, increase in contraction strength decreased FD before stimulation but only between weak and moderate contraction. The results suggest that the effects of spTMS on corticospinal activity, underlying voluntary motor output, outlast the TMS stimulus. It appears that the complexity of the EMG signal is reduced after spTMS, suggesting that TMS alters the dynamics of the ongoing corticospinal activity most likely temporarily synchronizing the neural network activity. Further studies are needed to confirm whether observed changes after TMS occur at the cortical level.

摘要

这项研究的目的是检验在经颅磁刺激(TMS)诱导的肌电图(EMG)沉默后,当自愿驱动恢复时,单次脉冲 TMS 是否会影响皮质脊髓活动的模式。我们使用分形维数(FD)来探索肌电图(EMG)信号的“复杂性”,并用频谱的中值频率(MDF)来检查 EMG 频谱特征的变化。将 EMG 沉默前的原始 EMG 时段的 FD 和 MDF 与 EMG 沉默后的时段获得的 FD 和 MDF 进行比较。使用对应于弱收缩(20-40%)、中收缩(40-60%)和强收缩(60-80%最大随意收缩)的三个肌肉收缩水平和设置在静息运动阈值以上 10、20 和 30%的三个刺激强度来检查 spTMS 后的 FD 和 MDF 的变化。FD 是使用 Higuchi 分形维数算法计算的。最后,为了辨别 CNS 和肌肉之间 FD 变化的起源,我们比较了 spTMS 和外周神经刺激(PNS)对 FD 和 MDF 的影响。结果表明,spTMS 刺激后 EMG 信号的 FD 和 MDF 均显著降低。PNS 对 FD 和 MDF 均无显著影响。刺激后 TMS 强度的变化对 FD 或 MDF 均无显著影响,肌肉收缩的强度也无显著影响。然而,收缩强度的增加在刺激前降低了 FD,但仅在弱收缩和中收缩之间。结果表明,spTMS 对皮质脊髓活动的影响,即潜在的自愿运动输出,持续时间超过 TMS 刺激。似乎 spTMS 降低了 EMG 信号的复杂性,这表明 TMS 改变了正在进行的皮质脊髓活动的动态,很可能暂时使神经网络活动同步。需要进一步的研究来确认 TMS 后观察到的变化是否发生在皮质水平。

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