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Neuromuscular Impairment Following Backpack Load Carriage

机译:背包装载运输后的神经肌肉障碍

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摘要

Load Carriage using backpacks is an occupational task and can be a recreational pursuit. The aim of this study was to investigate the mechanisms responsible for changes in neuromuscular function of the m. quadriceps femoris following load carriage. The physiological responses of 10 male participants to voluntary and electrically stimulated isometric contractions were measured before and immediately after two hours of treadmill walking at 6.5 km•h −1 during level walking with no load [LW], and level walking with load carriage (25 kg backpack) [LC]. Maximal voluntary contraction force decreased by 15 ± 11 % following LC (p=0.006), with no change following LW (p=0.292). Voluntary activation decreased after LW and LC (p=0.033) with no difference between conditions (p=0.405). Doublet contraction time decreased after both LW and LC (p=0.002), with no difference between conditions (p=0.232). There were no other changes in electrically invoked doublet parameters in either condition. The 20:50 Hz ratio did not change following LW (p=0.864) but decreased from 0.88 ± 0.04 to 0.84 ± 0.04 after LC (p=0.011) indicating reduced Ca2+ release from the sarcoplasmic reticulum during excitation contraction coupling. In conclusion, two hours of load carriage carrying a 25 kg back pack caused neuromuscular impairment through a decrease in voluntary activation (i.e. central drive) and fatigue or damage to the peripheral muscle, including impairment of the excitation contraction coupling process. This may reduce physical performance and increase the risk of musculoskeletal injury.
机译:使用背包进行载运是一项职业任务,可能是一项娱乐活动。这项研究的目的是调查负责神经肌肉功能变化的机制。负荷运输后股四头肌。在无负荷水平行走过程中,在6.5 km•h -1 的跑步机行走两个小时之前和之后,立即测量了10名男性参与者对自愿和电刺激的等距收缩的生理反应,并且用装载车(25公斤背包)水平行走[LC]。 LC后最大自愿收缩力降低了15±11%(p = 0.006),LW之后无变化(p = 0.292)。 LW和LC后的自愿激活降低(p = 0.033),条件之间无差异(p = 0.405)。 LW和LC后双峰收缩时间均减少(p = 0.002),条件之间无差异(p = 0.232)。在任何一种情况下,电调用的双峰参数都没有其他变化。 LW(p = 0.864)后20:50 Hz的比率没有变化,但LC(p = 0.011)之后从0.88±0.04降低到0.84±0.04,表明在兴奋收缩耦合过程中从肌浆网释放的Ca2 +减少。总之,两个小时的载重为25 kg的背包造成的神经肌肉损伤是由于自愿性活动(即中枢驱动)的减少,疲劳或对周围肌肉的损害(包括兴奋收缩耦合过程的损害)引起的。这可能会降低身体机能并增加肌肉骨骼损伤的风险。

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