ISM, CNRS, Aix-Marseille University, Marseille, France.
Med Sci Sports Exerc. 2012 Nov;44(11):2182-9. doi: 10.1249/MSS.0b013e3182618cf9.
The aim of this study was to evaluate the effect of the playing surface properties on the development of neuromuscular fatigue in tennis.
Ten subjects played randomly two tennis matches on hard court (HARD) and clay court (CLAY) for an effective playing duration of 45 min (i.e., corresponding approximately to a 3-h game). Before and after each match, the maximal voluntary contraction (MVC) force of the plantar flexors, the maximal voluntary activation level, the maximal compound muscle action characteristic, and the EMG activity were determined on the soleus (SOL) and lateralis gastrocnemius (LG) muscles. Tetanic and single stimulations were also delivered to evaluate the presence of low-frequency fatigue and contractile impairment. Finally, reflex responses were evoked on the relaxed muscle (H-reflex) and during MVC (H-reflex and V-wave).
Statistical analysis did not reveal any significant difference between playing surfaces. MVC was similarly reduced after the game (HARD, -9.1% ± 8.7%; CLAY, -4.3% ± 19.9%) and was associated with alterations of the contractile properties of the plantar flexor muscles. The implication of central factors was less clear, as evidenced by the significant reduction (P < 0.05) of the H-reflex on the relaxed LG (HARD, -16.2% ± 33.3%; CLAY, -23.9% ± 54.0%) and SOL (HARD, -16.1% ± 48.9%; CLAY, -34.9% ± 35.9%) and the nonsignificant reduction of the activation level. In addition, the reflex responses evoked during MVC were not significantly modified by the exercise.
These results suggest that the ground surface properties influence neither the extent nor the origin of neuromuscular fatigue in tennis. The moderate force decrement observed in the current study was mainly associated with peripheral fatigue.
本研究旨在评估网球中场地表面特性对神经肌肉疲劳发展的影响。
10 名受试者在硬地(HARD)和红土场(CLAY)上随机进行了两场网球比赛,有效比赛时间为 45 分钟(即大约相当于 3 小时的比赛)。在每场比赛前后,测定足底屈肌的最大随意收缩(MVC)力、最大随意激活水平、最大复合肌肉动作特征以及 soleus(SOL)和 lateralis gastrocnemius(LG)肌肉的肌电图活动。还进行了强直和单次刺激,以评估低频疲劳和收缩损伤的存在。最后,在放松肌肉(H 反射)和 MVC 期间(H 反射和 V 波)诱发反射反应。
统计分析未显示两种场地之间存在显著差异。比赛后 MVC 同样降低(HARD,-9.1%±8.7%;CLAY,-4.3%±19.9%),并与足底屈肌收缩特性的改变有关。中央因素的影响不太明显,这表现在放松的 LG(HARD,-16.2%±33.3%;CLAY,-23.9%±54.0%)和 SOL(HARD,-16.1%±48.9%;CLAY,-34.9%±35.9%)上 H 反射显著降低(P<0.05)和激活水平的无显著降低。此外,MVC 期间诱发的反射反应没有受到运动的显著改变。
这些结果表明,地面表面特性既不影响网球中神经肌肉疲劳的程度,也不影响其起源。在本研究中观察到的中等力量下降主要与外周疲劳有关。