Fu Weijie, Wang Xi, Liu Yu
Key Laboratory of Exercise and Health Sciences of Ministry of Education, Shanghai University of Sport, Shanghai, China.
School of Kinesiology, Shanghai University of Sport, Shanghai, China.
Technol Health Care. 2015;23 Suppl 2:S179-87. doi: 10.3233/THC-150952.
Previous studies have not used neurophysiological methodology to explore the damping effects on induced soft-tissue vibrations and muscle responses.
This study aimed to investigate the changes in activation of the musculoskeletal system in response to soft-tissue vibrations with different applied compression conditions in a drop-jump landing task.
Twelve trained male participants were instructed to perform drop-jump landings in compression shorts (CS) and regular shorts without compression (control condition, CC). Soft-tissue vibrations and EMG amplitudes of the leg within 50 ms before and after touchdown were collected synchronously.
Peak acceleration of the thigh muscles was significantly lower in CS than in CC during landings from 45 or 60 cm and 30 cm heights (p < 0.05), respectively. However, the damping coefficient was higher in CS than in CC at the thigh muscles during landings from 60 cm height (p < 0.05). Significant decrease in EMG amplitude of the rectus femoris and biceps femoris muscles was also observed in CS (p < 0.05).
Externally induced soft-tissue vibration damping was associated with a decrease in muscular activity of the rectus femoris and biceps femoris muscles during drop-jump landings from different heights.
以往的研究尚未使用神经生理学方法来探究对诱发的软组织振动和肌肉反应的阻尼效应。
本研究旨在调查在不同施加压缩条件下的跳落着陆任务中,响应软组织振动时肌肉骨骼系统激活的变化。
12名受过训练的男性参与者被指示在压缩短裤(CS)和无压缩的常规短裤(对照条件,CC)中进行跳落着陆。同步收集着陆前后50毫秒内腿部的软组织振动和肌电图振幅。
在从45厘米或60厘米以及30厘米高度着陆期间,CS组大腿肌肉的峰值加速度分别显著低于CC组(p < 0.05)。然而,在从60厘米高度着陆时,CS组大腿肌肉的阻尼系数高于CC组(p < 0.05)。在CS组中还观察到股直肌和股二头肌的肌电图振幅显著降低(p < 0.05)。
在不同高度的跳落着陆过程中,外部诱发的软组织振动阻尼与股直肌和股二头肌的肌肉活动减少有关。