首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Backpack load affects lower limb muscle activity patterns of female hikers during prolonged load carriage
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Backpack load affects lower limb muscle activity patterns of female hikers during prolonged load carriage

机译:在长时间的负荷运输过程中,背包负荷会影响女性远足者的下肢肌肉活动模式

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摘要

This study investigated the effect of prolonged load carriage on lower limb muscle activity displayed by female recreational hikers. Electromyography (EMG) signals from vastus lateralis (VL), biceps femoris (BF), semitendinosus (ST), tibialis anterior (TA) and gastrocnemius (GM) were recorded for fifteen female hikers carrying four loads (0%, 20%, 30% and 40% body weight (BW)) over 8. km. Muscle burst duration, muscle burst onset relative to initial contact and integrated EMG signals (iEMG) were calculated to evaluate muscle activity, whereas the shift in mean power frequency (MPF) was used to evaluate muscle fatigue. Increased walking distance significantly decreased the MPF of TA; decreased the iEMG for VL, ST and GM; and shortened VL muscle burst duration. Furthermore, carrying 20-40% BW loads significantly increased VL and GM iEMG and increased BF muscle burst duration, whereas a 40% BW load caused a later VL muscle burst onset. The differences observed in muscle activity with increased load mass seem to be adjustments aimed at maintaining balance and attenuating the increased loads placed on the lower limbs during gait. Based on the changes in muscle activity, a backpack load limit of 30% BW may reduce the risk of lower limb injury for female hikers during prolonged walking.
机译:这项研究调查了长期负重运输对女性休闲徒步旅行者展示的下肢肌肉活动的影响。记录了十五名女性登山者的四重负荷(0%,20%,30)的肌电图(EMG)信号,该信号来自股外侧肌(VL),股二头肌(BF),半腱肌(S​​T),胫前肌(TA)和腓肠肌(GM) %和40%体重(BW))超过8公里。计算肌肉爆发持续时间,相对于初始接触的肌肉爆发爆发和整合的EMG信号(iEMG)以评估肌肉活动,而平均功率频率(MPF)的变化用于评估肌肉疲劳。步行距离的增加会显着降低TA的MPF;降低VL,ST和GM的iEMG;并缩短VL肌肉爆发时间。此外,承受20-40%的BW负荷会显着增加VL和GM iEMG,并增加BF肌肉爆发持续时间,而40%的BW负荷会导致后来的VL肌肉爆发发作。观察到的肌肉活动与负荷量增加之间的差异似乎是为了保持平衡并减轻步态下肢施加的负荷增加而进行的调整。根据肌肉活动的变化,背包负重极限为30%BW可以减少女性徒步旅行者长时间步行时下肢受伤的风险。

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