Effects of Cooling on Ankle Muscle Strength, Electromyography, and Gait Ground Reaction Forces.

Pub Date : 2014-01-01 Epub Date: 2014-05-04 DOI:10.1155/2014/520124
Amitava Halder, Chuansi Gao, Michael Miller
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引用次数: 21

Abstract

The effects of cooling on neuromuscular function and performance during gait are not fully examined. The purpose of this study was to investigate the effects of local cooling for 20 min in cold water at 10°C in a climate chamber also at 10°C on maximal isometric force and electromyographic (EMG) activity of the lower leg muscles. Gait ground reaction forces (GRFs) were also assessed. Sixteen healthy university students participated in the within subject design experimental study. Isometric forces of the tibialis anterior (TA) and the gastrocnemius medialis (GM) were measured using a handheld dynamometer and the EMG was recorded using surface electrodes. Ground reaction forces during gait and the required coefficient of friction (RCOF) were recorded using a force plate. There was a significantly reduced isometric maximum force in the TA muscle (P < 0.001) after cooling. The mean EMG amplitude of GM muscle was increased after cooling (P < 0.003), indicating that fatigue was induced. We found no significant changes in the gait GRFs and RCOF on dry and level surface. These findings may indicate that local moderate cooling 20 min of 10°C cold water, may influence maximal muscle performance without affecting activities at sub-maximal effort.

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冷却对踝关节肌肉力量、肌电图和步态地面反作用力的影响。
冷却对神经肌肉功能和步态表现的影响尚未得到充分研究。本研究的目的是研究在10°C的气候室内冷水中局部冷却20分钟对小腿肌肉最大等长力和肌电图(EMG)活动的影响。步态地面反作用力(GRFs)也被评估。16名健康大学生参加了本课题内设计实验研究。使用手持式测力仪测量胫骨前肌(TA)和腓肠肌内侧肌(GM)的等距力,并使用表面电极记录肌电图。使用测力板记录步态时的地面反作用力和所需的摩擦系数(RCOF)。冷却后TA肌的等长最大力显著降低(P < 0.001)。冷却后GM肌的平均肌电波幅增加(P < 0.003),提示疲劳诱导。我们发现,在干燥和平坦的地面上,步态GRFs和RCOF没有显著变化。这些发现可能表明,局部适度冷却20分钟的10°C冷水,可能会影响最大肌肉表现,而不影响亚最大努力的活动。
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