School of Electrical and Electronic Engineering, University College Dublin, Belfield, Dublin, Ireland.
J Neurophysiol. 2019 Sep 1;122(3):1147-1162. doi: 10.1152/jn.00228.2019. Epub 2019 Jul 31.
Motor unit firing times are weakly coupled across a range of frequencies during voluntary contractions. Coherent activity within the beta-band (15-35 Hz) has been linked to oscillatory cortical processes, providing evidence of functional connectivity between the motoneuron pool and motor cortex. The aim of this study was to investigate whether beta-band motor unit coherence is altered with increasing abduction force in the first dorsal interosseous muscle. Coherence between motor unit firing times, extracted from decomposed surface electromyography (EMG) signals, was investigated in 17 subjects at 10, 20, 30, and 40% of maximum voluntary contraction. Corresponding changes in nonlinear surface EMG features (specifically sample entropy and determinism, which are sensitive to motor unit synchronization) were also examined. A reduction in beta-band and alpha-band coherence was observed as force increased [(3, 151) = 32, < 0.001 and (3, 151) = 27, < 0.001, respectively], accompanied by corresponding changes in nonlinear surface EMG features. A significant relationship between the nonlinear features and motor unit coherence was also detected ( = -0.43 ± 0.1 and = 0.45 ± 0.1 for sample entropy and determinism, respectively; both < 0.001). The reduction in beta-band coherence suggests a change in the relative contribution of correlated and uncorrelated presynaptic inputs to the motoneuron pool, and/or a decrease in the responsiveness of the motoneuron pool to synchronous inputs at higher forces. The study highlights the importance of considering muscle activation when investigating changes in motor unit coherence or nonlinear EMG features and examines other factors that can influence coherence estimation. Intramuscular alpha- and beta-band coherence decreased as muscle contraction force increased. Beta-band coherence was higher in groups of high-threshold motor units than in simultaneously active lower threshold units. Alterations in motor unit coherence with increases or decreases in force and with the onset of fatigue were accompanied by corresponding changes in surface electromyography sample entropy and determinism. Mixed-model analysis indicated mean firing rate and number of motor units also influenced the coherence estimate.
在自愿收缩过程中,运动单位的发射时间在一定频率范围内是弱耦合的。β 频段(15-35Hz)内的相干活动与皮层振荡过程有关,为运动神经元池和运动皮层之间的功能连接提供了证据。本研究旨在探讨在第一背侧骨间肌的外展力增加时,β 频段运动单位相干性是否发生改变。在 17 名受试者中,从分解的表面肌电图(EMG)信号中提取运动单位放电时间的相干性,在最大随意收缩的 10%、20%、30%和 40%时进行研究。还检查了非线性表面 EMG 特征(特别是样本熵和确定性,它们对运动单位同步敏感)的相应变化。随着力的增加,β 波段和α 波段的相干性降低[(3,151)=32,<0.001 和(3,151)=27,<0.001],同时伴随非线性表面 EMG 特征的相应变化。还检测到非线性特征与运动单位相干性之间的显著关系(样本熵和确定性分别为=−0.43±0.1 和=0.45±0.1;均<0.001)。β 波段相干性的降低表明,相关和非相关突触前输入对运动神经元池的相对贡献发生了变化,和/或在较高力下,运动神经元池对同步输入的响应性降低。该研究强调了在研究运动单位相干性或非线性 EMG 特征变化时考虑肌肉激活的重要性,并研究了其他可能影响相干性估计的因素。随着肌肉收缩力的增加,肌内α 波段和β 波段的相干性降低。高阈值运动单位的β 波段相干性高于同时活跃的低阈值单位。力的增加或减少以及疲劳的发生伴随着运动单位相干性的改变,同时表面肌电图样本熵和确定性也发生相应变化。混合模型分析表明,平均放电率和运动单位数量也影响相干性估计。