O'Bryan Steven J, Taylor Janet L, D'Amico Jessica M, Rouffet David M
Institute for Health and Sport (IHeS), Victoria University, Melbourne, VIC, Australia.
Neuroscience Research Australia, Randwick, NSW, Australia.
Front Sports Act Living. 2022 Jan 7;3:797288. doi: 10.3389/fspor.2021.797288. eCollection 2021.
To investigate how quadriceps muscle fatigue affects power production over the extension and flexion phases and muscle activation during maximal cycling. Ten participants performed 10-s maximal cycling efforts without fatigue and after 120 bilateral maximal concentric contractions of the quadriceps muscles. Extension power, flexion power and electromyographic (EMG) activity were compared between maximal cycling trials. We also investigated the associations between changes in quadriceps force during isometric maximal voluntary contractions (IMVC) and power output (flexion and extension) during maximal cycling, in addition to inter-individual variability in muscle activation and pedal force profiles. Quadriceps IMVC (-52 ± 21%, = 0.002), voluntary activation (-24 ± 14%, < 0.001) and resting twitch amplitude (-45 ± 19%, = 0.002) were reduced following the fatiguing task, whereas vastus lateralis ( = 0.58) and vastus medialis ( = 0.15) M-wave amplitudes were unchanged. The reductions in extension power (-15 ± 8%, < 0.001) and flexion power (-24 ± 18%, < 0.001) recorded during maximal cycling with fatigue of the quadriceps were dissociated from the decreases in quadriceps IMVC. Peak EMG decreased across all muscles while inter-individual variability in pedal force and EMG profiles increased during maximal cycling with quadriceps fatigue. Quadriceps fatigue induced by voluntary contractions led to reduced activation of all lower limb muscles, increased inter-individual variability and decreased power production during maximal cycling. Interestingly, power production was further reduced over the flexion phase (24%) than the extension phase (15%), likely due to larger levels of peripheral fatigue developed in RF muscle and/or a higher contribution of the quadriceps muscle to flexion power production compared to extension power during maximal cycling.
为了研究股四头肌疲劳如何影响最大强度骑行过程中伸展和屈曲阶段的功率输出以及肌肉激活情况。10名参与者在无疲劳状态下以及股四头肌进行120次双侧最大等长收缩后,进行了10秒的最大强度骑行。比较了最大强度骑行试验之间的伸展功率、屈曲功率和肌电图(EMG)活动。我们还研究了等长最大自主收缩(IMVC)期间股四头肌力量变化与最大强度骑行期间功率输出(屈曲和伸展)之间的关联,以及肌肉激活和踏板力分布的个体间变异性。疲劳任务后,股四头肌IMVC(-52±21%,P = 0.002)、自主激活(-24±14%,P < 0.001)和静息抽搐幅度(-45±19%,P = 0.002)降低,而股外侧肌(P = 0.58)和股内侧肌(P = 0.15)的M波幅度未改变。股四头肌疲劳时最大强度骑行过程中记录的伸展功率(-15±8%,P < 0.001)和屈曲功率(-24±18%,P < 0.001)的降低与股四头肌IMVC的降低无关。在股四头肌疲劳的最大强度骑行过程中,所有肌肉的EMG峰值均降低,而踏板力和EMG分布的个体间变异性增加。自愿收缩引起的股四头肌疲劳导致最大强度骑行过程中所有下肢肌肉的激活减少、个体间变异性增加以及功率输出降低。有趣的是,与伸展阶段(%)相比,屈曲阶段的功率输出进一步降低(24%),这可能是由于在最大强度骑行过程中,股直肌产生的外周疲劳程度更高和/或股四头肌对屈曲功率输出的贡献高于伸展功率。