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首页> 外文期刊>Frontiers in Physiology >Neuromuscular Fatigue Affects Calf Muscle Activation Strategies, but Not Dynamic Postural Balance Control in Healthy Young Adults
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Neuromuscular Fatigue Affects Calf Muscle Activation Strategies, but Not Dynamic Postural Balance Control in Healthy Young Adults

机译:神经肌肉疲劳影响小牛肌肉激活策略,但在健康的年轻人身上没有动态姿势平衡控制

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Neuromuscular fatigue could negatively affect postural balance, but its effects on dynamic postural regulation are still debated. This study aimed to investigate whether a fatigue protocol on calf muscle could affect muscle activation strategies and dynamic balance performance. Seventeen male adults (age 24.1 ± 4.6 years; height 183.9 ± 7.2 cm; weight 80.2 ± 7.2 kg) volunteered in the study. They performed a dynamic test on an instrumented platform, which provided anterior-posterior oscillations on the sagittal plane, before and after a localized fatigue protocol. High-density surface electromyographical (EMG) signals were recorded bilaterally from the soleus and the medial gastrocnemius muscles. The fatigue protocol, consisting of two quasi-isometric tiptoe standing exercise to failure with a fixed load, did not affect the global dynamic balance performance. Conversely, the frequency value corresponding to 95% of the total power spectrum density of the angular displacement signal increased after fatigue (from 1.03 ± 0.42 to 1.31 ± 0.42 Hz; p & 0.05). The EMG analysis showed a significant difference in the PRE/POST fatigue ratio of the root-mean-square (RMS) between the soleus and the gastrocnemius medialis muscles. No differences were detected for the coefficient of variation and the barycenter coordinates of the RMS EMG values between muscles and sides. The variations in the frequency content of the angular displacement and EMG activity across muscles may be related to an increase in the calf muscles stiffness after fatigue. The role of neuromechanical calf muscle properties seems to be relevant in maintaining the dynamic postural performance after a quasi-isometric fatigue protocol until failure.
机译:神经肌肉疲劳可能会对姿势平衡产生负面影响,但其对动态姿势监管的影响仍在讨论。本研究旨在调查小腿肌肉的疲劳方案是否会影响肌肉激活策略和动态平衡性能。 17名男性成人(24.1±4.6岁;身高183.9±7.2厘米;重量80.2±7.2千克)在研究中自愿进行。它们对仪表平台进行了动态测试,该平台提供了在局部疲劳方案之前和之后的矢状平面上的前后振荡。高密度表面电焦(EMG)信号被从单独的单侧和内侧腓肠肌肌肉中记录。由两种准等距离脚尖常规运动组成的疲劳协议与固定载荷的故障组成,不影响全局动态平衡性能。相反,相当于角位移信号的总功率谱密度的95%的频率值增加疲劳后(从1.03±0.42至1.31±0.42Hz; P& 0.05)。 EMG分析显示出单层和腓肠肌中肌肉之间的根均方(RMS)的前/后疲劳比的显着差异。对于肌肉和侧面之间的RMS EMG值的变化系数没有检测到差异。肌肉角度位移和EMG活性的频率含量的变化可能与疲劳后的小腿肌肉僵硬的增加有关。神经力学小牛肌肉性质的作用似乎是在维持准等轴承疲劳方案后保持动态姿势性能的相关性,直至发生故障。

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