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Fatigue influences the dynamic stability of the torso

机译:疲劳影响躯干的动态稳定性

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Fatigue in the extensor muscles of the torso affects neuromuscular recruitment and control of the spine. The goal of this study was to test whether fatigue influences stability of dynamic torso movements. A controlled laboratory experiment measured the change in the maximum finite-time Lyapunov exponent, λ_(max), before and after fatigue of the extensor muscles. Non-linear analyses were used to compute stability from the embedding dimension and Lyapunov exponent recorded during repetitive dynamic trunk flexion tasks. Torso extensor muscles were fatigued to 60% of their unfatigued isometric maximum voluntary exertion force then stability was re-measured. Independent variables included fatigue, task asymmetry and lower-limb constraint. λ_(max) values increased with fatigue suggesting poorer dynamic stability when fatigued. Embedding dimension declined with fatigue indicating reduced dynamic complexity when fatigued. Fatigue-related changes in spinal stability may contribute to the risk of low-back injury during fatiguing occupational lifting tasks. The findings reported here indicate that one mechanism by which fatigue contributes to low back disorders may be spinal instability. This information may contribute to the development of ergonomic countermeasures to help prevent low back disorders.
机译:躯干伸肌的疲劳会影响神经肌肉的募集和对脊柱的控制。这项研究的目的是测试疲劳是否影响动态躯干运动的稳定性。受控实验室实验测量了伸肌疲劳前后最大时限Lyapunov指数λ_(max)的变化。非线性分析被用于根据重复的动态躯干屈曲任务中记录的嵌入尺寸和Lyapunov指数来计算稳定性。躯干伸肌疲劳至其未疲劳的等距最大自发施加力的60%,然后重新测量稳定性。自变量包括疲劳,任务不对称和下肢约束。 λ_(max)值随疲劳而增加,表明疲劳时动态稳定性较差。嵌入尺寸随疲劳而下降,表明疲劳时动态复杂性降低。与疲劳相关的脊柱稳定性变化可能会导致疲劳的职业举重任务中发生下背部受伤的风险。此处报道的发现表明,疲劳导致腰背疾病的一种机制可能是脊柱不稳定。这些信息可能有助于开发符合人体工程学的对策,以帮助预防下背部疾病。

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