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在力量训练运动员的步态中,软组织的振动频率较高。

High vibration frequency of soft tissue occurs during gait in power-trained athletes.

机构信息

Office of Physical Education, National Pingtung University of Science and Technology , Pingtung, Taiwan.

Department of Sports Medicine, China Medical University , Taichung, Taiwan.

出版信息

J Sports Sci. 2021 Feb;39(4):439-445. doi: 10.1080/02640414.2020.1824366. Epub 2020 Oct 4.

Abstract

Muscles serve as a critical regulator of locomotion and damping, resulting in changes of soft tissue vibration. However, whether muscle fibre compositions of different individuals will cause different extents of soft tissue vibration during gait is unclear. Therefore, this study investigated the differences in lower extremity vibration frequencies among power-trained and non-power-trained athletes during walking and running. Twelve weightlifting athletes were assigned to the power-trained group and twelve recreational runners were assigned to the non-power-trained group. Accelerometers were used to detect soft tissue compartment vibration frequencies of the rectus femoris (RF) and gastrocnemius medialis (GMS) during walking and running. Results indicated that power-trained athletes, as compared to the non-power-trained, induced significantly (p < 0.05) higher vibration frequencies in their soft tissue compartments during walking and running. This suggests that power-trained athletes, who have higher ratios of fatigable fast-twitch muscle fibres, may have induced higher soft tissue compartment vibration frequencies. As a result, there is a likelihood that power-trained athletes may recruit more fatigable fast-twitch muscle fibres during muscle tuning, causing dysfunctions during prolonged exercises.

摘要

肌肉是运动和减震的关键调节器官,会导致软组织振动发生变化。然而,在步态过程中,不同个体的肌纤维组成是否会导致软组织振动的程度不同尚不清楚。因此,本研究调查了在行走和跑步过程中,力量训练运动员和非力量训练运动员下肢振动频率的差异。将 12 名举重运动员分配到力量训练组,将 12 名休闲跑步者分配到非力量训练组。使用加速度计检测股直肌(RF)和比目鱼肌内侧(GMS)的软组织隔室在行走和跑步时的振动频率。结果表明,与非力量训练组相比,力量训练组在行走和跑步时其软组织隔室的振动频率显著升高(p<0.05)。这表明,力量训练运动员具有更高比例的易疲劳快肌纤维,可能会引起更高的软组织隔室振动频率。因此,力量训练运动员在肌肉调整过程中可能会募集更多的易疲劳快肌纤维,导致长时间运动时出现功能障碍。

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