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脊髓经皮电刺激神经肌肉激发对人体下肢运动表现的影响:一项随机交叉假刺激对照试验

Effects of Neuromuscular Priming with Spinal Cord Transcutaneous Stimulation on Lower Limb Motor Performance in Humans: A Randomized Crossover Sham-Controlled Trial.

作者信息

Zaccaron Simone, Mari Lara, D'Alleva Mattia, Stafuzza Jacopo, Parpinel Maria, Lazzer Stefano, Rejc Enrico

机构信息

Department of Medicine, University of Udine, 33100 Udine, Italy.

School of Sport Sciences, University of Udine, 33100 Udine, Italy.

出版信息

J Clin Med. 2025 Jun 11;14(12):4143. doi: 10.3390/jcm14124143.

Abstract

: Lower limb motor output contributes to determining functional performance in many motor tasks. This study investigated the effects of non-invasive spinal cord transcutaneous stimulation (scTS) applied during an exercise-based priming protocol on lower limb muscle force and power generation. : Twelve young, physically active male volunteers (age: 22.7 ± 2.1 years) participated in this randomized crossover, sham-controlled study. The maximal voluntary contraction and low-level torque steadiness of knee extensors, as well as the maximal explosive extension of lower limbs, were assessed before and after the priming protocol with scTS or sham stimulation over a total of four experimental sessions. Further, characteristics of evoked potentials to scTS related to spinal circuitry excitability were assessed in the supine position before and after the scTS priming protocol. The exercise component of the ~25 min priming protocol consisted of low-volume, low- and high-intensity lower limb motor tasks. : scTS priming protocol tended to increase or maintain maximum isometric torque during knee extension (4.7%) as well as peak force (0.2%) and rate of force development (6.0%) during explosive lower limb extensions, whereas sham priming protocol tended to decrease them (-4.3%, -3.3%, and -15.1%, respectively). This resulted in significant interactions ( = 0.001 to 0.018) and medium-large differences between scTS and sham protocols. These findings were associated with meaningful trends of some neurophysiological variables. Conversely, priming protocols did not affect low-level torque steadiness. : scTS counteracted the unexpected fatigue induced by the exercise-based priming protocol, supporting lower limb performance during maximal efforts. Future studies are warranted to assess the implementation of scTS with optimized exercise-based priming protocols during training and rehabilitation programmes that include high-intensity neuromuscular efforts.

摘要

下肢运动输出有助于确定许多运动任务中的功能表现。本研究调查了在基于运动的启动方案期间应用非侵入性脊髓经皮刺激(scTS)对下肢肌肉力量和功率产生的影响。12名年轻、身体活跃的男性志愿者(年龄:22.7±2.1岁)参与了这项随机交叉、假对照研究。在总共四个实验环节中,在进行scTS或假刺激的启动方案前后,评估了膝伸肌的最大自主收缩和低水平扭矩稳定性,以及下肢的最大爆发性伸展。此外,在scTS启动方案前后的仰卧位评估了与脊髓回路兴奋性相关的scTS诱发电位特征。约25分钟启动方案的运动部分包括低容量、低强度和高强度的下肢运动任务。scTS启动方案倾向于增加或维持膝关节伸展期间的最大等长扭矩(4.7%)以及爆发性下肢伸展期间的峰值力(0.2%)和力发展速率(6.0%),而假启动方案则倾向于降低这些指标(分别为-4.3%、-3.3%和-15.1%)。这导致了scTS与假方案之间的显著交互作用(P = 0.001至0.018)和中到大的差异。这些发现与一些神经生理变量的有意义趋势相关。相反,启动方案不影响低水平扭矩稳定性。scTS抵消了基于运动的启动方案引起的意外疲劳,支持了最大努力期间的下肢表现。未来的研究有必要评估在包括高强度神经肌肉努力的训练和康复计划中,将scTS与优化的基于运动的启动方案相结合的实施情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbbb/12194619/24c8c8b226ba/jcm-14-04143-g001.jpg

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