Effect of incline on lower extremity muscle activity during sprinting

Masamichi Okudaira, Steffen Willwacher, Seita Kuki, Takuya Yoshida, Hirohiko Maemura, S. Tanigawa
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引用次数: 1

Abstract

This study aimed to investigate the effect of incline on neuromuscular mechanisms in uphill sprint running. Nine male college sprinters performed 5-sec constant speed running trials on a motorized treadmill at 7.5 m/s. Each trial was conducted under different inclined conditions (level and 5.0% grade). Surface electromyography (EMG) was recorded from 6 muscles of the lower limbs, including gluteus maximus, gluteus medius, rectus femoris, vastus lateralis, biceps femoris, and lateral gastrocnemius lateralis. We found higher muscle activity in all muscles during the stance phase in uphill sprinting except for rectus femoris and vastus lateralis. Higher muscle activation during the recovery phase was found in the rectus femoris muscle in uphill sprinting. These muscle activity adaptations in uphill sprinting were paralleled by higher step frequency and shorter step length. Our results suggest that lower limb muscle activity can meaningfully adapt to sprint-specific demand in uphill running.
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倾斜度对短跑时下肢肌肉活动的影响
本研究旨在探讨坡度对上坡短跑运动中神经肌肉机制的影响。9名男性大学短跑运动员在电动跑步机上以7.5米/秒的速度进行了5秒等速跑步试验。每个试验在不同的倾斜条件下进行(水平和5.0%坡度)。记录下肢臀大肌、臀中肌、股直肌、股外侧肌、股二头肌和腓肠肌外侧肌6块肌肉的肌表电图(EMG)。我们发现,除了股直肌和股外侧肌外,在上坡冲刺的站立阶段,所有肌肉都有较高的肌肉活动。在上坡冲刺的恢复阶段,发现股直肌的肌肉激活程度更高。在上坡冲刺中,这些肌肉活动的适应与更高的步频和更短的步长是平行的。我们的研究结果表明,下肢肌肉活动可以有意义地适应爬坡跑的特定需求。
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审稿时长
18 weeks
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