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在同一次会议中,可以可靠地估计胫骨前运动神经元中的持续内向电流。

Persistent inward currents in tibialis anterior motoneurons can be reliably estimated within the same session.

机构信息

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

Department of Electrical Engineering, Chalmers University of Technology, Gothenburg, Sweden; School of Medical and Health Sciences, Edith Cowan University, Perth, Australia; Neuroscience Research Australia, Sydney, Australia.

出版信息

J Electromyogr Kinesiol. 2024 Oct;78:102911. doi: 10.1016/j.jelekin.2024.102911. Epub 2024 Jun 9.

Abstract

The response of spinal motoneurons to synaptic input greatly depends on the activation of persistent inward currents (PICs), the contribution of which can be estimated through the paired motor unit technique. Yet, the intra-session test-retest reliability of this measurement remains to be fully established. Twenty males performed isometric triangular dorsiflexion contractions to 20 and 50 % of maximal torque at baseline and after a 15-min resting period. High-density electromyographic signals (HD-EMG) of the tibialis anterior were recorded with a 64-electrode matrix. HD-EMG signals were decomposed, and motor units tracked across time points to estimate the contribution of PICs to motoneuron firing through quantification of motor unit recruitment-derecruitment hysteresis (ΔF). A good intraclass correlation coefficient (ICC = 0.75 [0.63, 0.83]) and a large repeated measures correlation coefficient (r = 0.65 [0.49, 0.77]; p < 0.001) were found between ΔF values obtained at both time points for 20 % MVC ramps. For 50 % MVC ramps, a good ICC (0.77 [0.65, 0.85]) and a very large repeated measures correlation coefficient (r = 0.73 [0.63, 0.80]; p < 0.001) were observed. Our data suggest that ΔF scores can be reliably investigated in tibialis anterior motor units during both low- and moderate-intensity contractions within a single experimental session.

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久内向电流(PIC)的激活,通过配对运动单位技术可以估计其贡献。然而,这种测量的内会话测试-再测试可靠性仍有待充分建立。20 名男性在基线和 15 分钟休息期后,以 20%和 50%的最大扭矩进行等距三角背屈收缩。用 64 电极矩阵记录胫骨前肌的高密度肌电图信号(HD-EMG)。对 HD-EMG 信号进行分解,并跟踪运动单位在时间点上的变化,以通过量化运动单位募集-去募集滞后(ΔF)来估计 PIC 对运动神经元放电的贡献。在 20%MVC 斜坡的两个时间点上获得的ΔF 值之间发现了良好的组内相关系数(ICC=0.75 [0.63, 0.83])和较大的重复测量相关系数(r=0.65 [0.49, 0.77];p<0.001)。对于 50%MVC 斜坡,发现了良好的 ICC(0.77 [0.65, 0.85])和非常大的重复测量相关系数(r=0.73 [0.63, 0.80];p<0.001)。我们的数据表明,在单个实验会话期间,在低强度和中等强度收缩期间,ΔF 分数可以可靠地在胫骨前肌运动单位中进行研究。

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