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Different Factors Influencing Postural Stability during Transcutaneous Electrical Stimulation of the Cervical Spinal Cord

机译:经皮电刺激颈脊髓时影响姿势稳定性的不同因素

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摘要

Transcutaneous spinal cord stimulation (tSCS) is a promising noninvasive alternative to epidural stimulation. However, further studies are needed to clarify how tSCS affects postural control. The aim of this study was to investigate the effect of transcutaneous cervical spinal cord stimulation on postural stability in healthy participants via computerized stabilization. The center of pressure and the frequency spectrum of the statokinesiogram were assessed in 14 healthy volunteers under tSCS conditions with frequencies of 5 Hz or 30 Hz, subthreshold or suprathreshold stimulus strength, open or closed eyes, and hard or soft surfaces in various combinations. The results revealed that not all the changes in the center of the pressure oscillations reached statistical significance when the tSCS was used. However, tSCS at a frequency of 30 Hz with a suprathreshold stimulus strength improved postural stability. The use of subthreshold or suprathreshold tSCS at 5 Hz led to a shift of 60% of the signal power to the low-frequency range, indicating activation of the vestibular system. With tSCS at 30 Hz, the vestibular component remained dominant, but a decrease in the proportion of high-frequency oscillations was observed, which is associated with muscle proprioception. Thus, transcutaneous electrical stimulation of the cervical spinal cord may be an effective method for activating spinal cord neural networks capable of modulating postural control.
机译:经皮脊髓刺激 (tSCS) 是一种很有前途的硬膜外刺激的无创替代方案。然而,需要进一步的研究来阐明 tSCS 如何影响姿势控制。本研究的目的是通过计算机稳定来研究经皮颈脊髓刺激对健康参与者姿势稳定性的影响。在 tSCS 条件下,以 5 Hz 或 30 Hz的频率、亚阈值或超阈值刺激强度、睁开或闭眼以及各种组合的硬或软表面,评估 14 名健康志愿者的压力中心和运动图的频谱。结果表明,当使用 tSCS 时,并非所有压力振荡中心的变化都达到统计学意义。然而,频率为 30 Hz 的 tSCS 具有超阈值刺激强度,提高了姿势稳定性。在 5 Hz 下使用亚阈值或超阈值 tSCS 导致 60% 的信号功率转移到低频范围,表明前庭系统激活。在 30 Hz 的 tSCS 下,前庭成分仍然占主导地位,但观察到高频振荡的比例降低,这与肌肉本体感觉有关。因此,颈脊髓的经皮电刺激可能是激活能够调节姿势控制的脊髓神经网络的有效方法。

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