Center for Sensory-Motor Interaction (SMI), Department of Health Science and Technology, Aalborg University, , Fredrik Bajers Vej 7 D-3, DK-9220 Aalborg, Denmark.
Philos Trans A Math Phys Eng Sci. 2010 Jun 13;368(1920):2765-81. doi: 10.1098/rsta.2010.0094.
A linear relation between surface electromyogram (EMG) amplitude and muscle force is often assumed and used to estimate the contributions of selected muscles to various tasks. In the presence of muscle fatigue, however, changes in the properties of muscle fibre action potentials and motor unit twitch forces can alter the relation between surface EMG amplitude and force. A novel integrative model of motor neuron control and the generation of muscle fibre action potentials was used to simulate surface EMG signals and muscle force during three fatigue protocols. The change in the simulated relation between surface EMG amplitude and force depended on both the level of fatigue and the details of the fatiguing contraction. In general, surface EMG amplitude overestimated muscle force when fatigue was present. For example, surface EMG amplitudes corresponding to 60 per cent of the amplitude obtained at maximal force without fatigue corresponded to forces in the range 10-40% of the maximal force across three representative fatigue protocols. The results indicate that the surface EMG amplitude cannot be used to predict either the level of muscle activation or the magnitude of muscle force when the muscle exhibits any fatigue.
表面肌电图(EMG)振幅与肌肉力量之间通常存在线性关系,并被用于估计选定肌肉对各种任务的贡献。然而,在肌肉疲劳的情况下,肌肉纤维动作电位和运动单位抽搐力的特性变化会改变表面 EMG 振幅与力量之间的关系。一种新的运动神经元控制和肌肉纤维动作电位产生的综合模型被用于模拟三种疲劳方案期间的表面 EMG 信号和肌肉力量。模拟的表面 EMG 振幅与力量之间关系的变化取决于疲劳程度和疲劳收缩的细节。一般来说,当存在疲劳时,表面 EMG 振幅会高估肌肉力量。例如,在没有疲劳的情况下,最大力量时表面 EMG 振幅的 60%对应于三个代表性疲劳方案中最大力量的 10-40%范围内的力量。结果表明,当肌肉出现任何疲劳时,表面 EMG 振幅不能用于预测肌肉激活水平或肌肉力量的大小。