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Influence of Lumbar Muscle Fatigue on Trunk Adaptations during Sudden External Perturbations

机译:突发外部扰动时腰肌疲劳对躯干适应的影响

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摘要

>Introduction: When the spine is subjected to perturbations, neuromuscular responses such as reflex muscle contractions contribute to the overall balance control and spinal stabilization mechanisms. These responses are influenced by muscle fatigue, which has been shown to trigger changes in muscle recruitment patterns. Neuromuscular adaptations, e.g., attenuation of reflex activation and/or postural oscillations following repeated unexpected external perturbations, have also been described. However, the characterization of these adaptations still remains unclear. Using high-density electromyography (EMG) may help understand how the nervous system chooses to deal with an unknown perturbation in different physiological and/or mechanical perturbation environments.>Aim: To characterize trunk neuromuscular adaptations following repeated sudden external perturbations after a back muscle fatigue task using high-density EMG.>Methods: Twenty-five healthy participants experienced a series of 15 sudden external perturbations before and after back muscle fatigue. Erector spinae muscle activity was recorded using high-density EMG. Trunk kinematics during perturbation trials were collected using a 3-D motion analysis system. A two-way repeated measure ANOVA was conducted to assess: (1) the adaptation effect across trials; (2) the fatigue effect; and (3) the interaction effect (fatigue × adaptation) for the baseline activity, the reflex latency, the reflex peak and trunk kinematic variables (flexion angle, velocity and time to peak velocity). Muscle activity spatial distribution before and following the fatigue task was also compared using t-tests for dependent samples.>Results: An attenuation of muscle reflex peak was observed across perturbation trials before the fatigue task, but not after. The spatial distribution of muscle activity was significantly higher before the fatigue task compared to post-fatigue trials. Baseline activity showed a trend to higher values after muscle fatigue, as well as reduction through perturbation trials. Main effects of fatigue and adaptation were found for time to peak velocity. No adaptation nor fatigue effect were identified for reflex latency, flexion angle or trunk velocity.>Conclusion: The results show that muscle fatigue leads to reduced spatial distribution of back muscle activity and suggest a limited ability to use across-trial redundancy to adapt EMG reflex peak and optimize spinal stabilization using retroactive control.
机译:>简介:脊椎受到干扰时,神经肌肉反应(例如反射性肌肉收缩)有助于总体平衡控制和脊柱稳定机制。这些反应受肌肉疲劳的影响,已显示可引起肌肉补充模式的改变。还描述了神经肌肉适应,例如,在反复的意想不到的外部扰动之后反射激活和/或姿势振荡的减弱。但是,这些改编的特征仍然不清楚。使用高密度肌电图(EMG)可能有助于了解神经系统如何选择在不同的生理和/或机械扰动环境中应对未知的扰动。 >方法:25名健康参与者在背部肌肉疲劳前后经历了15次突然的外部扰动。使用高密度肌电图记录竖脊肌的肌肉活动。使用3-D运动分析系统收集了摄动试验期间的躯干运动学。进行了两次重复测量的方差分析,以评估:(1)跨试验的适应效果; (2)疲劳作用; (3)基线活动,反射潜伏期,反射峰值和躯干运动学变量(弯曲角度,速度和达到峰值速度的时间)的相互作用效应(疲劳×适应)。 >结果:在疲劳任务之前(而不是之后)在所有摄动试验中观察到了肌肉反射峰的衰减。与疲劳后试验相比,疲劳任务前的肌肉活动空间分布明显更高。肌肉疲劳后,基线活动表现出更高的价值趋势,并且通过摄动试验降低。发现疲劳和适应的主要影响是达到峰值速度所需的时间。未确定反射潜伏期,屈曲角度或躯干速度的适应性或疲劳效果。>结论:结果表明,肌肉疲劳会导致背部肌肉活动的空间分布减少,并且提示跨肌肉使用的能力有限。尝试冗余以适应EMG反射峰并使用追溯控制优化脊柱稳定性。

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