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The relationship between maximum tolerance and motor activation during transcutaneous spinal stimulation is unaffected by the carrier frequency or vibration

机译:经皮脊柱刺激过程中最大耐受性与运动激活之间的关系不受载波频率或振动的影响

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摘要

Transcutaneous spinal stimulation (TSS) is a useful tool to modulate spinal sensorimotor circuits and has emerged as a potential treatment for motor disorders in neurologically impaired populations. One major limitation of TSS is the discomfort associated with high levels of stimulation during the experimental procedure. The objective of this study was to examine if the discomfort caused by TSS can be alleviated using different stimulation paradigms in a neurologically intact population. Tolerance to TSS delivered using conventional biphasic balanced rectangular pulses was compared to two alternative stimulation paradigms: a 5 kHz carrier frequency and biphasic balanced rectangular pulses combined with vibrotactile stimulation. In ten healthy participants, tolerance to TSS was examined using both single‐pulse (0.2 Hz) and continuous (30 Hz) stimulation protocols. In both the single‐pulse and continuous stimulation protocols, participants tolerated significantly higher levels of stimulation with the carrier frequency paradigm compared to the other stimulation paradigms. However, when the maximum tolerable stimulation intensity of each stimulation paradigm was normalized to the intensity required to evoke a lower limb muscle response, there were no statistical differences between the stimulation paradigms. Our results suggest that, when considering the intensity of stimulation required to obtain spinally evoked motor potentials, neither alternative stimulation paradigm is more effective at reducing discomfort than the conventional, unmodulated pulse configuration.
机译:经皮脊柱刺激(TSS)是调节脊柱感觉运动回路的有用工具,并且已成为神经功能障碍人群运动障碍的潜在治疗方法。 TSS的主要限制之一是在实验过程中与高水平刺激相关的不适感。这项研究的目的是研究在神经完整的人群中,是否可以通过使用不同的刺激范例来缓解由TSS引起的不适。使用传统的双相平衡矩形脉冲传递的TSS耐受性与两种替代刺激范例进行了比较:5 kHz载波频率和双相平衡矩形脉冲与触觉刺激相结合。在十名健康参与者中,使用单脉冲(0.2 Hz)和连续(30 Hz)刺激方案检查了对TSS的耐受性。在单脉冲和连续刺激方案中,与其他刺激范式相比,参与者在载波频率范式下可承受的刺激水平明显更高。但是,当将每个刺激范例的最大可允许刺激强度标准化为引起下肢肌肉反应所需的强度时,刺激范例之间没有统计差异。我们的结果表明,当考虑获得脊椎诱发的运动电位所需的刺激强度时,没有一种替代刺激范例比传统的未调制脉冲配置更有效地减少不适感。

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