Tamura Akihiro, Akasaka Kiyokazu, Otsudo Takahiro, Shiozawa Junya, Toda Yuka, Yamada Kaori
Graduate School of Medicine, Saitama Medical University, Japan.
Graduate School of Medicine, Saitama Medical University, Japan; School of Physical Therapy, Saitama Medical University, Japan.
J Phys Ther Sci. 2017 Mar;29(3):498-504. doi: 10.1589/jpts.29.498. Epub 2017 Mar 22.
[Purpose] Fatigue alters lower extremity landing strategies and decreases the ability to attenuate impact during landing. The purpose of this study was to reveal the influence of fatigue on dynamic alignment and joint angular velocities in the lower extremities during a single leg landing. [Subjects and Methods] The 34 female college students were randomly assigned to either the fatigue or control group. The fatigue group performed single-leg drop vertical jumps before, and after, the fatigue protocol, which was performed using a bike ergometer. Lower extremity kinematic data were acquired using a three-dimensional motion analysis system. The ratio of each variable (%), for the pre-fatigue to post-fatigue protocols, were calculated to compare differences between each group. [Results] Peak hip and knee flexion angular velocities increased significantly in the fatigue group compared with the control group. Furthermore, hip flexion angular velocity increased significantly between each group at 40 milliseconds after initial ground contact. [Conclusion] Fatigue reduced the ability to attenuate impact by increasing angular velocities in the direction of hip and knee flexion during landings. These findings indicate a requirement to evaluate movement quality over time by measuring hip and knee flexion angular velocities in landings during fatigue conditions.
[目的] 疲劳会改变下肢着地策略,并降低着地时缓冲冲击力的能力。本研究的目的是揭示疲劳对单腿着地过程中下肢动态对线和关节角速度的影响。[对象与方法] 34名女大学生被随机分为疲劳组和对照组。疲劳组在使用自行车测力计进行疲劳方案前后进行单腿下落垂直跳。使用三维运动分析系统获取下肢运动学数据。计算每个变量在疲劳前与疲劳后方案中的比例(%),以比较各组之间的差异。[结果] 与对照组相比,疲劳组的髋和膝屈曲角速度峰值显著增加。此外,在初始地面接触后40毫秒时,各组之间的髋屈曲角速度显著增加。[结论] 疲劳通过增加着地时髋和膝屈曲方向的角速度,降低了缓冲冲击力的能力。这些发现表明,需要在疲劳状态下通过测量着地时的髋和膝屈曲角速度来评估随时间变化的运动质量。