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Trunk muscle co-contraction increases during fatiguing, isometric, lateral bend exertions. Possible implications for spine stability.

机译:在疲劳,等距,侧弯运动时,躯干肌肉共收缩增加。对脊柱稳定性的可能影响。

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STUDY DESIGN: Surface electromyographic activities were recorded from bilateral trunk muscles as test participants maintained a 50% maximum, voluntary, isometric, lateral bend contraction to volitional exhaustion. OBJECTIVES: To challenge the trunk with a prolonged lateral bend task and observe the responses of the agonist and antagonist muscles to the resulting fatigue. SUMMARY OF BACKGROUND DATA: Lateral bend exertions of the trunk have been identified as a risk factor for injury to spine tissues. However, little is known about the response of spine muscles to fatigue and the subsequent implications for spine stability, joint loading, and tissue injury. Surface electromyography provides a window on muscle loading and progressive fatigue. METHODS: Eleven male participants performed a set of maximum lateral bend exertions at the start of the trial, then maintained an upright standing posture while resisting 50% of the maximum moment until volitional exhaustion, then performed another set of maximum contractions. All contractions were isometric. Measurements were made, throughout each contraction, of the lateral bend moment and abdominal and trunk extensor electromyographic activities at six bilateral surface electromyography sites. Electromyographic amplitude and mean power frequency were calculated with 500-millisecond segments recorded serially every 800 milliseconds. Mean values were calculated with data from the first and last 5% of the trial durations. Statistics determined if fatigue had a significant effect on maximum moment and the electromyographic statistics for each muscle site. RESULTS: Fatigue resulted in a significant decrease in maximum lateral bend moment and increase in moment variability. Decreases in mean power frequency, indicating fatigue, were observed in three agonists (the trunk extensors) and one antagonist muscle. Unfatigued agonist electromyographic amplitudes correlated well with the mechanical advantage of muscles to generate lateral bend moments. Unfatigued antagonist activities were low except for the thoracic erector spinae. The agonists and antagonists demonstrated average increases of 17% and 8%, respectively, when pooled across muscles. Much of this change was predicted to have been associated with increases in co-contracting muscle forces. CONCLUSIONS: The trunk responded to a prolonged, lateral bend contraction by increasing co-contraction as agonist trunk muscles fatigued. It was proposed that the fatigue compromised neural coordination and that the co-contraction served to maintain spine stability.
机译:研究设计:记录双侧躯干表面的表面肌电图活动,因为测试参与者保持最大50%的自愿性,等距性,侧弯收缩至自愿衰竭。目的:通过延长的侧弯任务挑战躯干,观察激动剂和拮抗肌对疲劳的反应。背景数据摘要:躯干的侧弯运动已被确定为脊柱组织受伤的危险因素。但是,关于脊柱肌肉对疲劳的反应以及对脊柱稳定性,关节负荷和组织损伤的后续影响知之甚少。表面肌电图为肌肉负荷和进行性疲劳提供了一个窗口。方法:11名男性参与者在试验开始时进行了一组最大的侧向弯曲运动,然后保持直立的站立姿势,同时抵抗最大力矩的50%直到自愿疲惫,然后再进行另一组最大收缩。所有收缩都是等距的。在每个收缩过程中,在六个双侧表面肌电图部位测量侧弯矩以及腹部和躯干伸肌肌电图活动。计算肌电振幅和平均功率频率,每800毫秒连续记录500毫秒段。使用试验持续时间的前5%和后5%的数据计算平均值。统计数据确定疲劳是否对最大力矩和每个肌肉部位的肌电图统计有显着影响。结果:疲劳导致最大横向弯曲力矩显着降低,力矩变化性增加。在三个激动剂(躯干伸肌)和一个拮抗肌中观察到平均功率频率下降,表明疲劳。未疲劳的激动剂肌电图振幅与产生侧弯矩的肌肉的机械优势密切相关。除胸廓脊柱棘突外,未遭受疲劳的拮抗剂活性较低。激动剂和拮抗剂在肌肉中混合时表现出分别平均增加17%和8%。预计这种变化的大部分与共同收缩肌肉力量的增加有关。结论:当激动剂躯干肌肉疲劳时,躯干通过增加共收缩来应对延长的侧向弯曲收缩。有人提出,疲劳会损害神经协调,而共收缩有助于维持脊柱的稳定性。

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