Huang Ping, Fu Lin, Zhang Yan, Fekete Gusztáv, Ren Feng, Gu Yaodong
Faculty of Sports Science, Ningbo University; Research Academy of Grand Health Interdisciplinary, Ningbo University; Department of Automation, Biomechanics and Mechatronics, The Lodz University of Technology.
Faculty of Sports Science, Ningbo University.
J Vis Exp. 2019 Jun 11(148). doi: 10.3791/58842.
Under the condition of simulating a badminton court in the laboratory, this study used the injury mechanism model to analyze the maximal right lunge movements of eight professional badminton players and eight amateur players. The purpose of this protocol is to study the differences in kinematics and joint moment of the right knee and ankle. A motion capture system and force plate were used to capture data of the joint movements of the lower extremity and the vertical ground reaction force (vGRF). Sixteen young men who did not have any sports injuries in the past 6 months took part in the study. The subjects performed a maximal right lunge from the start position with their right foot, stepping on and fully contacting with the force plate, hit the shuttlecock with an underhand stroke to the designated position in the backcourt, and then returned to the start/end position. All subjects wore the same badminton shoes to avoid a difference in impact from different badminton shoes. The amateur players showed a greater range of ankle movement and reverse joint moment on the frontal plane, and a larger internal joint rotation moment on the horizontal plane. The professional badminton players exhibited greater knee moment on the sagittal and frontal planes. Therefore, these factors should be considered in the development of the training program to reduce the risk of sports injuries in knee and ankle joints. This study simulates the real badminton court and calibrates the range of activities of each movement of the subjects so that the subjects complete the experimental action in a natural state with high quality. A limitation of this study is that it does not combine joint load and muscle activity. Another limitation is that the sample size is small and should be expanded in future studies. This research method can be applied to the lower limb biomechanical research of other footwork in the badminton project.
在实验室模拟羽毛球场地的条件下,本研究采用损伤机制模型分析了8名职业羽毛球运动员和8名业余运动员的最大右侧弓步动作。本实验方案的目的是研究右膝和踝关节的运动学和关节力矩差异。使用运动捕捉系统和测力台采集下肢关节运动数据和垂直地面反作用力(vGRF)。16名在过去6个月内没有任何运动损伤的年轻男性参与了本研究。受试者从起始位置用右脚进行最大右侧弓步,踩在测力台上并完全接触,用下手击球将羽毛球击到后场指定位置,然后回到起始/结束位置。所有受试者都穿着相同的羽毛球鞋,以避免不同羽毛球鞋造成的冲击差异。业余运动员在额状面上表现出更大的踝关节活动范围和反向关节力矩,在水平面上表现出更大的关节内旋力矩。职业羽毛球运动员在矢状面和额状面上表现出更大的膝关节力矩。因此,在制定训练计划时应考虑这些因素,以降低膝关节和踝关节运动损伤的风险。本研究模拟了真实的羽毛球场地,并校准了受试者每个动作的活动范围,使受试者在自然状态下高质量地完成实验动作。本研究的一个局限性是未结合关节负荷和肌肉活动。另一个局限性是样本量较小,未来研究应扩大样本量。这种研究方法可应用于羽毛球项目其他步法的下肢生物力学研究。