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局部振动会改变持续性内向电流对人体运动神经元放电的影响吗?

Can local vibration alter the contribution of persistent inward currents to human motoneuron firing?

作者信息

Lapole T, Mesquita R N O, Baudry S, Souron R, Brownstein C G, Rozand V

机构信息

Université Jean Monnet Saint-Etienne, Lyon 1, Université Savoie Mont-Blanc, Laboratoire Interuniversitaire de Biologie de la Motricité, Saint-Etienne, France.

Department of Electrical Engineering, Chalmers University of Technology, Gothenburg, Sweden.

出版信息

J Physiol. 2023 Apr;601(8):1467-1482. doi: 10.1113/JP284210. Epub 2023 Mar 22.

Abstract

The response of spinal motoneurons to synaptic input greatly depends on the activation of persistent inward currents (PICs), which in turn are enhanced by the neuromodulators serotonin and noradrenaline. Local vibration (LV) induces excitatory Ia input onto motoneurons and may alter neuromodulatory inputs. Therefore, we investigated whether LV influences the contribution of PICs to motoneuron firing. This was assessed in voluntary contractions with concurrent, ongoing LV, as well as after a bout of prolonged LV. High-density surface electromyograms (HD-EMG) of the tibialis anterior were recorded with a 64-electrode matrix. Twenty males performed isometric, triangular, dorsiflexion contractions to 20% and 50% of maximal torque at baseline, during LV of the tibialis anterior muscle, and after 30-min of LV. HD-EMG signals were decomposed, and motor units tracked across time points to estimate PICs through a paired motor unit analysis, which quantifies motor unit recruitment-derecruitment hysteresis (ΔF). During ongoing LV, ΔF was lower for both 20% and 50% ramps. Although significant changes in ΔF were not observed after prolonged LV, a differential effect across the motoneuron pool was observed. This study demonstrates that PICs can be non-pharmacologically modulated by LV. Given that LV leads to reflexive motor unit activation, it is postulated that lower PIC contribution to motoneuron firing during ongoing LV results from decreased neuromodulatory inputs associated with lower descending corticospinal drive. A differential effect in motoneurons of different recruitment thresholds after prolonged LV is provocative, challenging the interpretation of previous observations and motivating future investigations. KEY POINTS: Neuromodulatory inputs from the brainstem influence motoneuron intrinsic excitability through activation of persistent inward currents (PICs). PICs make motoneurons more responsive to excitatory input. We demonstrate that vibration applied on the muscle modulates the contribution of PICs to motoneuron firing, as observed through analysis of the firing of single motor units. The effects of PICs on motoneuron firing were lower when vibration was concurrently applied during voluntary ramp contractions, likely due to lower levels of neuromodulation. Additionally, prolonged exposure to vibration led to differential effects of lower- vs. higher-threshold motor units on PICs, with lower-threshold motor units tending to present an increased and higher-threshold motor units a decreased contribution of PICs to motoneuron firing. These results demonstrate that muscle vibration has the potential to influence the effects of neuromodulation on motoneuron firing. The potential of using vibration as a non-pharmacological neuromodulatory intervention should be further investigated.

摘要

脊髓运动神经元对突触输入的反应在很大程度上取决于持续性内向电流(PICs)的激活,而PICs又会被神经调质血清素和去甲肾上腺素增强。局部振动(LV)会诱导运动神经元产生兴奋性Ia输入,并可能改变神经调质输入。因此,我们研究了LV是否会影响PICs对运动神经元放电的作用。这在同时进行持续性LV的自主收缩过程中以及一段长时间的LV之后进行了评估。使用64电极矩阵记录胫前肌的高密度表面肌电图(HD-EMG)。20名男性在基线、胫前肌进行LV期间以及LV 30分钟后,以最大扭矩的20%和50%进行等长、三角形背屈收缩。对HD-EMG信号进行分解,并在不同时间点追踪运动单位,通过配对运动单位分析来估计PICs,该分析量化运动单位募集-去募集滞后(ΔF)。在持续性LV期间,20%和50%斜坡收缩时的ΔF均较低。尽管长时间LV后未观察到ΔF的显著变化,但在整个运动神经元池中观察到了差异效应。这项研究表明,PICs可以通过LV进行非药物调节。鉴于LV会导致反射性运动单位激活,推测在持续性LV期间PICs对运动神经元放电的贡献降低是由于与较低的皮质脊髓下行驱动相关的神经调质输入减少所致。长时间LV后不同募集阈值的运动神经元出现的差异效应具有启发性,对先前观察结果的解释提出了挑战,并激发了未来的研究。要点:来自脑干的神经调质输入通过激活持续性内向电流(PICs)影响运动神经元的内在兴奋性。PICs使运动神经元对兴奋性输入更敏感。我们证明,通过分析单个运动单位的放电情况可以观察到,施加在肌肉上的振动会调节PICs对运动神经元放电的作用。在自主斜坡收缩期间同时施加振动时,PICs对运动神经元放电的影响较低,这可能是由于神经调节水平较低所致。此外,长时间暴露于振动会导致低阈值和高阈值运动单位对PICs产生不同的影响,低阈值运动单位的PICs对运动神经元放电的贡献往往增加,而高阈值运动单位的贡献则减少。这些结果表明,肌肉振动有可能影响神经调节对运动神经元放电的作用。使用振动作为非药物神经调节干预措施的潜力应进一步研究。

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