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首页> 外文期刊>Journal of Biomechanics >Muscle fatigue does not lead to increased instability of upper extremity repetitive movements.
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Muscle fatigue does not lead to increased instability of upper extremity repetitive movements.

机译:肌肉疲劳不会导致上肢重复运动的不稳定性增加。

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摘要

Muscle fatigue alters neuromuscular responses. This may lead to increased sensitivity to perturbations and possibly to subsequent injury risk. We studied the effects of muscle fatigue on movement stability during a repetitive upper extremity task. Twenty healthy young subjects performed a repetitive work task, similar to sawing, synchronized with a metronome before and after performing each of two fatiguing tasks. The first fatigue task (LIFT) primarily fatigued the shoulder flexor muscles, while the second fatigue task (SAW) fatigued all of the muscles of the arm. Subjects performed each task in random order on two different days at least seven days apart. Instantaneous mean EMG frequencies (IMNF) decreased over both fatiguing tasks indicating that subjects did experience significant muscle fatigue. The slopes of the IMNF over time and the decreases in maximum force measurements demonstrated that the LIFT fatigue task successfully fatigued the shoulder flexors to a greater extent than any other muscle. On average, subjects exhibited more locally stable shoulder movements after the LIFT fatigue task (p=0.035). They also exhibited more orbitally stable shoulder (p=0.021) and elbow (p=0.013) movements after the SAW fatigue task. Subjects also had decreased cocontraction at the wrist post-fatigue for both tasks (p=0.001) and at the shoulder (p<0.001) for the LIFT fatigue task. Therefore, increased dynamic stability of these repeated movements cannot be explained by increased muscle cocontraction. Possible alternative mechanisms are discussed.
机译:肌肉疲劳会改变神经肌肉反应。这可能导致对扰动的敏感性增加,并可能导致随后的伤害风险。我们研究了重复上肢任务期间肌肉疲劳对运动稳定性的影响。 20名健康的年轻受试者在执行两项疲劳任务中的每项之前和之后,都执行了重复的工作任务,类似于锯切,并与节拍器同步。第一个疲劳任务(LIFT)主要使肩屈肌疲劳,而第二个疲劳任务(SAW)使手臂的所有肌肉疲劳。受试者在至少相隔7天的两个不同天以随机顺序执行每个任务。在两项疲劳任务中,瞬时平均EMG频率(IMNF)均降低,表明受试者确实经历了明显的肌肉疲劳。 IMNF随时间的斜率和最大力量测量值的降低表明,LIFT疲劳任务成功地使肩部屈肌疲劳程度超过了其他任何肌肉。平均而言,受试者在LIFT疲劳任务后表现出更稳定的肩部运动(p = 0.035)。在SAW疲劳任务后,他们还表现出更稳定的肩部运动(p = 0.021)和肘部运动(p = 0.013)。对于LIFT疲劳任务,受试者在腕部疲劳后的共收缩均减少(p = 0.001),而在肩部(p <0.001)。因此,这些重复运动的动态稳定性增加不能通过增加肌肉收缩来解释。讨论了可能的替代机制。

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