Weinhandl Joshua T, Smith Jeremy D, Dugan Eric L
Department of Human Movement Sciences, University of Wisconsin-Milwaukee, Milwaukee, WI, USA.
J Appl Biomech. 2011 May;27(2):108-15. doi: 10.1123/jab.27.2.108.
The purpose of the study was to investigate the effects of fatigue on lower extremity joint kinematics, and kinetics during repetitive drop jumps. Twelve recreationally active males (n = 6) and females (n = 6) (nine used for analysis) performed repetitive drop jumps until they could no longer reach 80% of their initial drop jump height. Kinematic and kinetic variables were assessed during the impact phase (100 ms) of all jumps. Fatigued landings were performed with increased knee extension, and ankle plantar flexion at initial contact, as well as increased ankle range of motion during the impact phase. Fatigue also resulted in increased peak ankle power absorption and increased energy absorption at the ankle. This was accompanied by an approximately equal reduction in energy absorption at the knee. While the knee extensors were the muscle group primarily responsible for absorbing the impact, individuals compensated for increased knee extension when fatigued by an increased use of the ankle plantar flexors to help absorb the forces during impact. Thus, as fatigue set in and individuals landed with more extended lower extremities, they adopted a landing strategy that shifted a greater burden to the ankle for absorbing the kinetic energy of the impact.
本研究的目的是调查疲劳对重复纵跳过程中下肢关节运动学和动力学的影响。12名有运动习惯的男性(n = 6)和女性(n = 6)(9名用于分析)进行重复纵跳,直到他们无法再达到初始纵跳高度的80%。在所有跳跃的冲击阶段(100毫秒)评估运动学和动力学变量。疲劳着陆时,初始接触时膝关节伸展增加,踝关节跖屈增加,并且在冲击阶段踝关节活动范围增加。疲劳还导致踝关节峰值功率吸收增加以及踝关节能量吸收增加。同时,膝关节的能量吸收大约有同等程度的减少。虽然膝关节伸肌是主要负责吸收冲击的肌肉群,但个体在疲劳时会通过增加踝关节跖屈肌的使用来补偿膝关节伸展增加,以帮助在冲击过程中吸收力量。因此,随着疲劳的出现,个体下肢伸展更大幅度着地时,他们采用了一种着陆策略,将更大的吸收冲击动能的负担转移到了踝关节。