Sanna Giorgio, O'Connor Kristian M
Neuromechanics Laboratory, Department of Human Movement Sciences, University of Wisconsin-Milwaukee, PO Box 413, Milwaukee, WI 53201, USA.
Clin Biomech (Bristol). 2008 Aug;23(7):946-54. doi: 10.1016/j.clinbiomech.2008.03.065. Epub 2008 May 12.
The increased number of women participating in sports has been paralleled by a greater knee injury rate in women compared to men. Among these injuries, those occurring to the anterior cruciate ligament are commonly observed during sidestep cutting maneuvers. In addition, general fatigue appears to correlate with injuries to the passive structures during a game. The purpose of the study was to examine the fatigue-related changes in lower limb mechanics during a cutting maneuver in female athletes.
Twelve college female soccer players were recruited. Sidestep cutting maneuvers were performed prior to, and after a fatiguing exercise (60-min shuttle run). Fatigue state was evaluated by calculating power output from countermovement jumps performed before and after the shuttle run. Three-dimensional stance leg hip, knee and ankle kinematics and kinetics during the cutting task were calculated and reported as initial ground contact angle, ranges of motion and peak moments of the stance phase. Cutting maneuver stance leg mechanics were analyzed through repeated measures two-way ANOVAs (P<0.05).
Jumping power output decrements suggested fatigue was induced. Sagittal and frontal planes kinematics and kinetics of the cutting task did not change after fatigue. In the transverse plane, the hip, knee and ankle joints were more externally rotated at touchdown, and during stance the knee underwent greater internal rotation.
Increased knee internal rotation has potentially important implication for increased injury risk when combined with unexpected perturbation faced in a game. Also, the fact that the sub-maximal level of fatigue did not lead to greater dynamic changes suggests a possible threshold of fatigue before function is dramatically affected.
参与体育运动的女性人数增加的同时,女性膝盖受伤率高于男性。在这些损伤中,前交叉韧带损伤常见于侧步切入动作中。此外,一般疲劳似乎与比赛中被动结构的损伤有关。本研究的目的是检查女运动员在切入动作过程中与疲劳相关的下肢力学变化。
招募了12名大学女子足球运动员。在疲劳运动(60分钟穿梭跑)之前和之后进行侧步切入动作。通过计算穿梭跑前后进行的纵跳的功率输出评估疲劳状态。计算并报告切入任务期间三维支撑腿的髋、膝和踝关节的运动学和动力学数据,以支撑相的初始地面接触角度、运动范围和峰值力矩表示。通过重复测量双向方差分析(P<0.05)分析切入动作支撑腿力学。
纵跳功率输出下降表明诱发了疲劳。疲劳后切入任务的矢状面和额状面运动学和动力学没有变化。在横断面中,髋、膝和踝关节在触地时更多地向外旋转,并且在支撑期间膝盖进行更大程度的内旋。
膝盖内旋增加在与比赛中面临的意外扰动相结合时,可能对增加受伤风险具有重要意义。此外,次最大疲劳水平并未导致更大动态变化这一事实表明,在功能受到显著影响之前可能存在疲劳阈值。