School of Kinesiology, University of Michigan, Ann Arbor, Michigan 48109-2214, USA.
Scand J Med Sci Sports. 2011 Jun;21(3):359-68. doi: 10.1111/j.1600-0838.2009.01076.x. Epub 2010 Jan 31.
Lower extremity neuromuscular fatigue purportedly increases anterior cruciate ligament (ACL) injury risk through promotion of extreme landing mechanics. However, the impact of fatigue on muscle groups critical to the landing strategy remains unclear. This study examined the effects of isolated hip rotator and triceps surae fatigue on lower extremity landing biomechanics. Sixteen healthy females (18-22 years) reported for testing on two occasions, with one muscle group fatigued per session. Subjects performed three single-leg landings onto a force platform pre- and post-fatigue, defined as an 80% decrease in peak torque in the targeted muscle group. Hip rotator fatigue was induced via alternating concentric contractions and triceps surae fatigue through concentric plantar flexion contractions on an isokinetic dynamometer. Initial contact (IC) kinematics and peak stance (PS) kinetics and kinematics were analyzed pre- and post-fatigue. Hip rotator fatigue increased IC (P=0.05) and PS (P=0.04) hip internal rotation angles. Triceps surae fatigue decreased IC knee flexion (P=0.01) angle. Isolated hip rotator and triceps surae fatigue each produced modifications in lower limb kinematic parameters viewed as risk factors for ACL injury. These modifications, however, do not appear of sufficient magnitude to compromise ligament integrity, suggesting injury via an integrative lower extremity fatigue mechanism is more likely.
下肢神经肌肉疲劳据称通过促进极端着陆力学增加前交叉韧带 (ACL) 损伤的风险。然而,疲劳对着陆策略关键肌肉群的影响尚不清楚。本研究检查了孤立的髋关节旋转肌和三头肌疲劳对下肢着陆生物力学的影响。16 名健康女性(18-22 岁)在两次测试中报告了测试情况,每次测试都会疲劳一个肌肉群。受试者在力台上进行三次单腿着陆,预疲劳和疲劳后各进行三次,定义为目标肌肉群的峰值扭矩降低 80%。髋关节旋转肌疲劳通过交替的向心收缩和等速测力计上的向心跖屈收缩来诱导三头肌疲劳。分析预疲劳和疲劳后的初始接触 (IC) 运动学和峰值站立 (PS) 动力学和运动学。髋关节旋转肌疲劳增加了 IC(P=0.05)和 PS(P=0.04)髋关节内旋角度。三头肌疲劳降低了 IC 膝关节屈曲角度(P=0.01)。孤立的髋关节旋转肌和三头肌疲劳都改变了下肢运动学参数,这些参数被认为是 ACL 损伤的危险因素。然而,这些变化似乎没有大到足以损害韧带完整性的程度,这表明通过整合下肢疲劳机制导致损伤的可能性更大。