Váczi Márk, Río-Rodríguez Dan, Négyesi János, Fernández Del Olmo Miguel
Institute of Sport Sciences and Physical Education, University of Pécs, Pécs, Hungary.
Faculty of Sciences of Sport and Physical Education, University of A Coruña, A Coruña, Spain.
J Electromyogr Kinesiol. 2018 Jun;40:64-71. doi: 10.1016/j.jelekin.2018.03.003. Epub 2018 Mar 28.
In the present study we investigated the acute and the delayed changes in corticospinal excitability and in the neuromechanical properties of the quadriceps muscle after maximal intensity stretch-shortening cycle exercise. Ten young males performed 150 jumps to provoke fatigue and muscle damage. Voluntary force, various electrically evoked force variables, and corticospinal excitability were measured at baseline, immediately (IP) and at 24 h post-exercise. Voluntary force, single twitch force, and low frequency force decreased at IP (p < 0.05) but recovered at 24 h, although mild soreness developed in the quadriceps. High frequency force, voluntary activation, and corticospinal excitability remained unchanged. However, vastus lateralis myoelectric activity increased from baseline to IP (p < 0.05). The jumps selectively induced low frequency peripheral fatigue, and central mechanisms did not mediate the acute loss of voluntary force. Because soreness developed at 24 h post-exercise, all force variables recovered, and vastus lateralis electric activity increased, we argue that a dual process of muscle damage, and early neural adaptation as a compensation mechanism took place after the maximal stretch-shortening cycle exercise.
在本研究中,我们调查了最大强度的拉长-缩短周期运动后,皮质脊髓兴奋性和股四头肌神经力学特性的急性和延迟变化。十名年轻男性进行了150次跳跃以引发疲劳和肌肉损伤。在基线、运动后即刻(IP)和运动后24小时测量了随意力、各种电诱发力变量和皮质脊髓兴奋性。随意力、单收缩力和低频力在IP时下降(p<0.05),但在24小时时恢复,尽管股四头肌出现了轻度酸痛。高频力、随意激活和皮质脊髓兴奋性保持不变。然而,股外侧肌肌电活动从基线到IP增加(p<0.05)。这些跳跃选择性地诱发了低频外周疲劳,并且中枢机制并未介导随意力的急性丧失。由于运动后24小时出现酸痛,所有力变量均恢复,且股外侧肌电活动增加,我们认为在最大拉长-缩短周期运动后发生了肌肉损伤和早期神经适应作为补偿机制的双重过程。