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Activation of quadriceps femoris including vastus intermedius during fatiguing dynamic knee extensions

机译:在疲劳动态膝盖延伸期间激活Quadriceps股市,包括夸张的中间座

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Purpose: Fatigue-related muscle activity in the superficial quadriceps femoris (QF) muscles has been widely examined; however, there is no information on the activity of the deep vastus intermedius (VI) muscle during fatiguing dynamic knee extensions. The purpose of this study was to investigate neuromuscular activation patterns of the QF synergists, including the VI, during fatiguing dynamic knee extensions at two submaximal loads. Methods: Nine healthy men performed dynamic knee extensions with loads of 50 and 70 % of one-repetition maximum (1RM) until failure. Muscle activation of the VI, vastus lateralis, vastus medialis (VM) and rectus femoris was recorded using surface electrodes. Root mean square (RMS) amplitude was calculated during the concentric (CON) and eccentric (ECC) phases of each repetition, and normalized to the RMS amplitude during the CON and ECC phases of the 1RM. Each CON and ECC phase was further divided into three subphases according to knee joint angle. Results: The normalized RMS amplitude of the four individual QF muscles during the CON phase linearly increased with fatigue with contractions at both 50 and 70 % 1RM. The highest RMS amplitude was found in VI at flexed knee joint angles until fatigue. This activation pattern was more prominent at 70 % 1RM than 50 % 1RM. The RMS amplitude of VM at extended knee joint angles was selectively higher at 70 % 1RM than 50 % 1RM. Conclusions: These results suggest that the contribution of the four individual QF muscles to fatiguing dynamic knee extensions differs according to knee joint angle and intensity of load.
机译:目的:浅与疲劳相关的肌肉活动在浅表Quadriceps股骨(QF)肌肉中已被广泛检查;然而,在疲劳动态膝盖延伸期间,没有关于深度底层中间核(VI)肌肉的活性的信息。本研究的目的是调查在两个潜水载荷的疲劳动态膝盖延伸期间探讨QF增效剂的神经肌肉激活模式,包括VI。方法:九名健康男性的动态膝关节延伸,负载为50%和70%的一次重复(1RM),直到故障。使用表面电极记录VI,VASTUS LAXTERIS,VM,VM)和直肠股骨的肌肉活化。在每次重复的同心(CON)和偏心(ECC)阶段期间计算均方根(RMS)幅度,并在1RM的CON和ECC阶段归一化到RMS振幅。根据膝关节角,每个Con和ECC相进一步分为三个子晶。结果:在CON相期间四种单独QF肌肉的归一化RMS振幅随着50%和70%1RM的收缩而线性增加。在VI中发现最高的RMS振幅,弯曲膝关节角直至疲劳。这种激活模式在70%1 / m中比50%1RM更突出。在延长的膝关节角处的VM的RMS幅度在比50%1RM中选择性地高出70%。结论:这些结果表明,根据膝关节角度和负载强度,四个单独的QF肌肉对疲劳动态膝关节延伸的贡献不同。

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