Hunt Michael A, Hatfield Gillian L
Department of Physical Therapy, University of British Columbia, Vancouver, Canada.
Department of Physical Therapy, University of British Columbia, Vancouver, Canada.
J Electromyogr Kinesiol. 2017 Aug;35:24-29. doi: 10.1016/j.jelekin.2017.05.007. Epub 2017 May 30.
The purpose of this study was to investigate the immediate effects of unilateral ankle plantarflexor fatigue on bilateral knee and ankle biomechanics during gait. Lower leg kinematics, kinetics, and muscle activation were assessed before and after an ankle plantarflexor fatiguing protocol in 31 healthy individuals. Fatigue (defined as >10% reduction in maximal isometric ankle plantarflexor torque production and a downward shift in the median power frequency of both heads of the gastrocnemius muscle of the fatigued limb) was achieved in 18 individuals, and only their data were used for analysis purposes. Compared to pre-fatigue walking trials, medial gastrocnemius activity was significantly reduced in the study (fatigued) limb. Other main changes following fatigue included significantly more knee flexion during loading, and an associated larger external knee flexion moment in the study limb. At the ankle joint, participants exhibited significantly less peak plantarflexion (occurring at toe-off) with fatigue. No significant differences were observed in the contralateral (non-fatigued) limb. Findings from this study indicate that fatigue of the ankle plantarflexor muscle does not produce widespread changes in gait biomechanics, suggesting that small to moderate changes in maximal ankle plantarflexor force production capacity (either an increase or decrease) will not have a substantial impact on normal lower limb functioning during gait.
本研究的目的是调查单侧踝关节跖屈肌疲劳对步态期间双侧膝关节和踝关节生物力学的即时影响。在31名健康个体中,于踝关节跖屈肌疲劳方案前后评估小腿的运动学、动力学和肌肉激活情况。18名个体出现了疲劳(定义为最大等长踝关节跖屈扭矩产生减少>10%,且疲劳侧腓肠肌两头的中位功率频率向下偏移),仅使用他们的数据进行分析。与疲劳前的步行试验相比,研究(疲劳)侧的内侧腓肠肌活动显著减少。疲劳后的其他主要变化包括在负重期间膝关节屈曲明显增加,且研究侧的膝关节屈曲外力矩相应增大。在踝关节,疲劳时参与者的峰值跖屈(发生在足趾离地时)明显减少。在对侧(未疲劳)肢体未观察到显著差异。本研究结果表明,踝关节跖屈肌疲劳不会导致步态生物力学发生广泛变化,这表明最大踝关节跖屈力产生能力的小到中度变化(增加或减少)不会对步态期间正常下肢功能产生实质性影响。