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Does muscle fatigue change motor synergies at different levels of neuromotor control?

机译:肌肉疲劳会改变不同神经运动控制水平的运动协同作用吗?

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摘要

We investigated the effects of static and dynamic fatigue on motor synergies, focusing on their hierarchical control. Specifically, we examined whether changes in fatigue influence the central nervous system’s ability to preserve movement stability. In addition to exploring the direct impact of fatigue on motor synergies, we also analyzed its effects at two distinct levels of hierarchical control, aiming to elucidate the mechanisms by which fatigue alters motor coordination and stability. Thirteen healthy, young and right-handed male participants took part in the study. Participants performed a bilateral accurate force production task under static and dynamic fatigue conditions at 30% of maximal voluntary contraction level with elbow flexors. Muscle activity level were collected from five muscles of each limb: biceps brachii, brachialis, brachioradialis, flexor carpi radialis, and flexor carpi ulnaris. The results revealed distinct effects of fatigue on isometric force production in the elbow joint tasks. On the higher level of hierarchy control of synergies, there were non-significant effects of different types of fatigue on movement performance, however, on the lower level we observed a strong effect of fatigue on forming motor synergies. There was no significant difference between the type of applied fatigue protocol on force and muscle activity data, nevertheless, the contribution of involved muscles to the task has changed. Our findings indicate that the central nervous system employs specific strategies to counteract fatigue and preserve movement stability during performance. However, the precise mechanisms by which variability at lower levels of hierarchical control influence higher levels remain unclear, highlighting a critical gap in our understanding of motor coordination under fatigue. Future studies should explore how these interactions across hierarchical levels contribute to movement stability under different fatigue conditions.
机译:我们研究了静态和动态疲劳对运动协同效应的影响,重点关注它们的分层控制。具体来说,我们检查了疲劳的变化是否会影响中枢神经系统保持运动稳定性的能力。除了探索疲劳对运动协同作用的直接影响外,我们还分析了它在两个不同层次控制层面的影响,旨在阐明疲劳改变运动协调性和稳定性的机制。13 名健康、年轻和右撇子男性参与者参加了这项研究。参与者在静态和动态疲劳条件下以肘屈肌最大自主收缩水平的 30% 执行双侧精确力产生任务。从每个肢体的 5 块肌肉中收集肌肉活动水平: 肱二头肌、肱肌、肱桡肌、桡侧腕屈肌和尺侧腕屈肌。结果揭示了疲劳对肘关节任务中等长力产生的明显影响。在协同作用的较高层次控制上,不同类型的疲劳对运动表现的影响不显著,然而,在较低水平上,我们观察到疲劳对形成运动协同作用有很强的影响。应用的疲劳方案类型在力量和肌肉活动数据上没有显着差异,但是,参与的肌肉对任务的贡献已经发生了变化。我们的研究结果表明,中枢神经系统采用特定的策略来抵消疲劳并保持表演过程中的运动稳定性。然而,较低层次控制水平的变异性影响较高水平的确切机制仍不清楚,这凸显了我们对疲劳下运动协调的理解存在严重差距。未来的研究应该探索这些跨层次的相互作用如何促进不同疲劳条件下的运动稳定性。

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