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电神经刺激与肌肉拉伸联合应用期间刺激参数对扭矩产生的影响。

Influence of stimulation parameters on torque development during the combined application of electrical nerve stimulation and muscle lengthening.

作者信息

Pineau Antoine, Martin Alain, Lepers Romuald, Papaiordanidou Maria

机构信息

INSERM UMR1093-CAPS, UFR des Sciences du SportUniversité Bourgogne, Dijon, France.

出版信息

J Neurophysiol. 2024 Oct 1;132(4):1255-1264. doi: 10.1152/jn.00136.2024. Epub 2024 Sep 11.

Abstract

This study investigated the influence of stimulation parameters on torque production when combining a brief muscle lengthening with electrical stimulation. Fifteen volunteers participated in one experimental session where two distinct stimulation modalities were compared: wide-pulse high-frequency (WPHF; pulse duration: 1 ms, frequency: 100 Hz), favoring afferent pathway activation, and narrow-pulse low-frequency (NPLF; pulse duration: 0.05 ms, frequency: 20 Hz), favoring activation of the efferent pathway. Both stimulation modalities were applied to evoke 5-10% of maximal voluntary contraction either in isometric conditions (WPHF and NPLF) or in combination with a muscle lengthening (lengthening condition: WPHF + LEN and NPLF + LEN). The torque-time integral (TTI) during the stimulation trains and the muscle activity after the cessation of the stimulation trains [sustained electromyographic (EMG) activity, normalized to the maximal EMG activity] were assessed and compared between the stimulation modalities and the conditions (2-way ANOVA). An interaction effect was obtained, revealing significant differences in TTI and sustained EMG activity between WPHF + LEN and the other tested conditions ( = 0.048 and = 0.044, respectively). TTI and sustained EMG activity were higher for WPHF + LEN (228.4 ± 105.3 Nm·s and 0.085 ± 0.070, respectively) compared to WPHF (168.4 ± 72.9 Nm·s; 0.052 ± 0.026), NPLF + LEN (136.4 ± 38.9 Nm·s; 0.031 ± 0.016), and NPLF (125.2 ± 36.1 Nm·s; 0.028 ± 0.015). The increased TTI during the WPHF + LEN condition suggests that the contribution of afferent pathways to the evoked torque can be enhanced with the muscle lengthening superimposition. They highlight the importance of using WPHF stimulation that already solicits Ia afferents, to benefit from the cumulative afferent activation induced by the muscle lengthening to further increase torque production. The results of the present study highlight the importance of using electrical stimulation modalities that preferentially activate Ia afferents to take advantage of the superimposition of muscle lengthening to further enhance afferent pathways' contribution to evoked torque and, in turn, increase torque production. These results offer the opportunity to improve the efficacy of the wide-pulse high-frequency stimulation modality.

摘要

本研究调查了在将短暂肌肉拉长与电刺激相结合时,刺激参数对扭矩产生的影响。15名志愿者参加了一次实验,比较了两种不同的刺激方式:宽脉冲高频(WPHF;脉冲持续时间:1毫秒,频率:100赫兹),有利于传入通路激活;窄脉冲低频(NPLF;脉冲持续时间:0.05毫秒,频率:20赫兹),有利于传出通路激活。两种刺激方式均在等长条件下(WPHF和NPLF)或与肌肉拉长相结合(拉长条件:WPHF + LEN和NPLF + LEN)下应用,以诱发最大自主收缩的5-10%。评估并比较了刺激序列期间的扭矩-时间积分(TTI)以及刺激序列停止后的肌肉活动[持续肌电图(EMG)活动,以最大EMG活动进行归一化],比较了刺激方式和条件之间的差异(双向方差分析)。获得了交互作用效应,揭示了WPHF + LEN与其他测试条件之间在TTI和持续EMG活动方面存在显著差异(分别为P = 0.048和P = 0.044)。与WPHF(168.4±72.9 Nm·s;0.052±0.026)、NPLF + LEN(136.4±38.9 Nm·s;0.031±0.016)和NPLF(125.2±36.1 Nm·s;0.028±0.015)相比,WPHF + LEN的TTI和持续EMG活动更高(分别为228.4±105.3 Nm·s和0.085±0.070)。WPHF + LEN条件下TTI的增加表明,通过叠加肌肉拉长可以增强传入通路对诱发扭矩的贡献。它们强调了使用已经激发Ia传入纤维的WPHF刺激的重要性,以受益于肌肉拉长诱导的累积传入激活,进一步增加扭矩产生。本研究结果强调了使用优先激活Ia传入纤维的电刺激方式的重要性,以利用肌肉拉长的叠加来进一步增强传入通路对诱发扭矩的贡献,进而增加扭矩产生。这些结果为提高宽脉冲高频刺激方式的疗效提供了机会。

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