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首页> 外文期刊>Frontiers in Physiology >Muscle and Tendon Adaptation in Adolescence: Elite Volleyball Athletes Compared to Untrained Boys and Girls
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Muscle and Tendon Adaptation in Adolescence: Elite Volleyball Athletes Compared to Untrained Boys and Girls

机译:青春期的肌肉和肌腱适应:优秀排球运动员与未经训练的男孩和女孩相比

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Though the plasticity of human tendons is well explored in adults, it is still unknown how superimposed mechanical loading by means of athletic training affects the properties of tendons during maturation. Due to the increased responsiveness of muscle to mechanical loading, adolescence is an important phase to investigate the effects of training on the mechanical properties of tendons. Hence, in the present study we compared vastus lateralis (VL) architecture, muscle strength of the knee extensor muscles and patellar tendon mechanical properties of male and female adolescent elite athletes to untrained boys and girls. Twenty-one adolescent volleyball athletes (A; 16.7 ± 1 years; 12 boys, 9 girls) and 24 similar-aged controls (C; 16.7 ± 1 years; 12 boys and girls, respectively) performed maximum isometric contractions on a dynamometer for the assessment of muscle strength and, by integrating ultrasound imaging, patellar tendon mechanical properties. Respective joint moments were calculated using an inverse dynamics approach and an electromyography-based estimation of antagonistic contribution. Additionally, the VL pennation angle, fascicle length and muscle-thickness were determined in the inactive state by means of ultrasound. Adolescent athletes produced significantly greater knee extension moments (normalized to body mass) compared to controls (A: 4.23 ± 0.80 Nm/kg, C: 3.57 ± 0.67 Nm/kg; p = 0.004), and showed greater VL thickness and pennation angle (+38% and +27%; p < 0.001). Tendon stiffness (normalized to rest length) was also significantly higher in athletes (A: 86.0 ± 27.1 kN/strain, C: 70.2 ± 18.8 kN/strain; p = 0.04), yet less pronounced compared to tendon force (A: 5785 ± 1146 N, C: 4335 ± 1015 N; p < 0.001), which resulted in higher levels of tendon strain during maximum contractions in athletes (A: 8.0 ± 1.9%, C: 6.4 ± 1.8%; p = 0.008). We conclude that athletic volleyball training provides a more efficient stimulus for muscle compared to tendon adaptation, which results in an increased demand placed upon the tendon by the working muscle in adolescent volleyball athletes. Besides implications for sport performance, these findings might have important consequences for the risk of tendon overuse injury.
机译:尽管在成年人中已经很好地研究了人腱的可塑性,但仍不清楚通过运动训练叠加的机械负荷如何在成熟过程中影响腱的特性。由于肌肉对机械负荷的反应性增强,青春期是研究训练对肌腱机械性能影响的重要阶段。因此,在本研究中,我们比较了男女青少年精英运动员与未经训练的男孩和女孩的股外侧肌(VL)结构,膝盖伸肌的肌肉力量和pa肌腱力学性能。 21名青少年排球运动员(A; 16.7±1岁; 12名男孩,9名女孩)和24名类似年龄的对照组(C; 16.7±1岁; 12名男孩和女孩)分别在测力计上进行最大等距收缩评估肌肉力量,并通过整合超声成像评估pa肌腱的机械性能。使用逆动力学方法和基于肌电图的拮抗作用估计来计算各个关节力矩。另外,在不活动状态下通过超声确定VL垂角,束长度和肌肉厚度。与对照组相比(A:4.23±0.80 Nm / kg,C:3.57±0.67 Nm / kg; p = 0.004),青春期运动员产生的膝关节伸展力矩(按体重标准化)明显更大,并且VL厚度和垂度角更大( + 38%和+ 27%; p <0.001)。运动员的肌腱刚度(标准化为休息长度)也显着更高(A:86.0±27.1 kN /应变,C:70.2±18.8 kN /应变; p = 0.04),但与肌腱力相比却不那么明显(A:5785± 1146 N,C:4335±1015 N; p <0.001),这导致运动员在最大收缩过程中肌腱张力升高(A:8.0±1.9%,C:6.4±1.8%; p = 0.008)。我们得出的结论是,与适应肌腱相比,运动排球训练为肌肉提供了更有效的刺激,这导致青春期排球运动员的工作肌肉对肌腱的需求增加。除了对运动表现的影响外,这些发现还可能对肌腱过度使用受伤的风险产生重要影响。

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