Flynn Janice M, Holmes Jeffrey D, Andrews David M
Department of Kinesiology, Faculty of Applied Health Sciences, University of Waterloo, Waterloo, ON N2L 3G1, Canada.
Clin Biomech (Bristol). 2004 Aug;19(7):726-32. doi: 10.1016/j.clinbiomech.2004.04.015.
The objective of this study was to assess the effect of localized leg muscle fatigue on tibial acceleration following impact.
Peak tibial accelerations measured just distal to the knee joint during running have been shown to increase with general body fatigue. However, the role that local leg muscle fatigue plays in shock attenuation is not clear.
The unshod, dominant foot of 24 healthy women in two different age groups was impacted into a vertical force plate, using a human pendulum method. Impact velocity and force approximated that found in running. EMG activity of the gastrocnemius and tibialis anterior muscles was monitored during fatiguing isometric exercise to assess fatigue, and quantified at impact as a measure of muscle activation level. A skin-mounted uni-axial accelerometer, was located at the tibial tubercle under pre-load, to measure tibial acceleration at impact.
There was a significant decrease in peak tibial acceleration (P = 0.008) and acceleration slope (P = 0.033) following fatigue. There were no significant main effects or interactions for age group or muscle group for all tibial response variables.
The reduction in peak tibial acceleration following fatigue (for the test performed) is contrary to the response documented following whole-body fatigue.
本研究的目的是评估局部腿部肌肉疲劳对冲击后胫骨加速度的影响。
研究表明,跑步过程中在膝关节正下方测量的胫骨峰值加速度会随着全身疲劳而增加。然而,局部腿部肌肉疲劳在减震中所起的作用尚不清楚。
采用人体摆锤法,让24名不同年龄组的健康女性赤足,用优势脚冲击垂直力板。冲击速度和力量接近跑步时的情况。在疲劳等长运动过程中监测腓肠肌和胫骨前肌的肌电图活动以评估疲劳程度,并在冲击时进行量化,作为肌肉激活水平的指标。在预加载状态下,将一个安装在皮肤上的单轴加速度计置于胫骨结节处,以测量冲击时的胫骨加速度。
疲劳后胫骨峰值加速度(P = 0.008)和加速度斜率(P = 0.033)显著降低。对于所有胫骨反应变量,年龄组或肌肉组均无显著的主效应或交互作用。
疲劳后胫骨峰值加速度的降低(针对所进行的测试)与全身疲劳后的反应相反。