Qu Xingda, Jiang Jianxin, Hu Xinyao
1 Shenzhen University.
J Appl Biomech. 2018 Jun 1;34(3):205-210. doi: 10.1123/jab.2017-0180. Epub 2018 May 25.
The objective of this study was to examine the effects of subsensory noise and fatigue on knee biomechanics during the athletic task of landing followed by cross-over cutting. A total of 32 healthy male athletes participated in the study. They were evenly divided into 2 groups: no fatigue group and fatigue group. Fatigue was induced to the lower extremity by a repetitive squatting exercise in the fatigue group. Subsensory noise was generated by linear miniature vibrators bilaterally placed around the knee joints. During data collection, the participants were instructed to perform landing followed by cross-over cutting in both the subsensory on and off conditions. Dependent variables were selected to assess knee biomechanics in the phases of landing and cross-over cutting, separately. Results showed that fatigue resulted in larger knee flexion during landing and larger knee internal rotation during cross-over cutting. Subsensory noise was found to reduce knee rotation impulse during cross-over cutting. These findings suggest that cross-over cutting is more dangerous than landing in the fatigue condition, and subsensory noise may lead to changes in knee biomechanics consistent with reduced risk of anterior cruciate ligament injuries, but the changes may be task-specific.
本研究的目的是考察阈下噪声和疲劳对落地后交叉变向这一运动任务期间膝关节生物力学的影响。共有32名健康男性运动员参与了本研究。他们被平均分为两组:无疲劳组和疲劳组。在疲劳组中,通过重复性深蹲练习使下肢产生疲劳。阈下噪声由双侧放置在膝关节周围的线性微型振动器产生。在数据收集过程中,要求参与者在阈下噪声开启和关闭两种条件下进行落地后交叉变向动作。分别选择相关变量来评估落地和交叉变向阶段的膝关节生物力学。结果显示,疲劳导致落地时膝关节屈曲角度增大,交叉变向时膝关节内旋角度增大。研究发现,阈下噪声可降低交叉变向时的膝关节旋转冲量。这些研究结果表明,在疲劳状态下,交叉变向比落地更危险,阈下噪声可能会导致膝关节生物力学发生变化,这与降低前交叉韧带损伤风险相一致,但这种变化可能具有任务特异性。