Karamanidis Kiros, Epro Gaspar
Sport and Exercise Science Research Centre, School of Applied Sciences, London South Bank University, London, United Kingdom.
Front Physiol. 2020 Dec 16;11:607544. doi: 10.3389/fphys.2020.607544. eCollection 2020.
Differences in muscle and tendon responsiveness to mechanical stimuli and time courses of adaptive changes may disrupt the interaction of the musculotendinous unit (MTU), increasing the risk for overuse injuries. We monitored training-induced alterations in muscle and tendon biomechanical properties in elite jumpers over 4 years of athletic training to detect potential non-synchronized adaptations within the triceps surae MTU. A combined cross-sectional and longitudinal investigation over 4 years was conducted by analyzing triceps surae MTU mechanical properties in both legs via dynamometry and ultrasonography in 67 elite track and field jumpers and 24 age-matched controls. Fluctuations in muscle and tendon adaptive changes over time were quantified by calculating individual residuals. The cosine similarity of the relative changes of muscle strength and tendon stiffness between sessions served as a measure of uniformity of adaptive changes. Our cross-sectional study was unable to detect clear non-concurrent differences in muscle strength and tendon stiffness in elite jumpers. However, when considering the longitudinal data over several years of training most of the jumpers demonstrated greater fluctuations in muscle strength and tendon stiffness and hence tendon strain compared to controls, irrespective of training period (preparation vs. competition). Moreover, two monitored athletes with chronic Achilles tendinopathy showed in their affected limb lower uniformity in MTU adaptation as well as higher fluctuations in tendon strain over time. Habitual mechanical loading can affect the MTU uniformity in elite jumpers, leading to increased mechanical demand on the tendon over an athletic season and potentially increased risk for overuse injuries.
肌肉和肌腱对机械刺激的反应差异以及适应性变化的时间进程可能会破坏肌肉-肌腱单元(MTU)的相互作用,增加过度使用损伤的风险。我们对精英跳高运动员进行了4年的运动训练,监测训练引起的肌肉和肌腱生物力学特性变化,以检测比目鱼肌MTU内潜在的不同步适应性变化。通过对67名精英田径跳高运动员和24名年龄匹配的对照组的双腿比目鱼肌MTU机械特性进行测力计和超声检查,进行了为期4年的横断面和纵向联合调查。通过计算个体残差来量化肌肉和肌腱适应性变化随时间的波动。各训练阶段之间肌肉力量和肌腱刚度相对变化的余弦相似度作为适应性变化一致性的指标。我们的横断面研究未能发现精英跳高运动员在肌肉力量和肌腱刚度方面存在明显的不同步差异。然而,考虑到多年训练的纵向数据,大多数跳高运动员与对照组相比,无论训练阶段(准备期与比赛期)如何,其肌肉力量、肌腱刚度以及肌腱应变的波动都更大。此外,两名患有慢性跟腱病的受监测运动员,其患侧肢体的MTU适应性一致性较低,且随时间的肌腱应变波动较大。习惯性机械负荷会影响精英跳高运动员的MTU一致性,导致在一个运动赛季中肌腱承受的机械需求增加,并可能增加过度使用损伤的风险。