Schütz Pascal, List Renate, Zemp Roland, Schellenberg Florian, Taylor William R, Lorenzetti Silvio
Institute for Biomechanics, ETH Zurich, Switzerland.
J Appl Biomech. 2014 Jun;30(3):373-80. doi: 10.1123/jab.2013-0175. Epub 2013 Dec 17.
The aim of this study was to quantify how step length and the front tibia angle influence joint angles and loading conditions during the split squat exercise. Eleven subjects performed split squats with an additional load of 25% body weight applied using a barbell. Each subject's movements were recorded using a motion capture system, and the ground reaction force was measured under each foot. The joint angles and loading conditions were calculated using a cluster-based kinematic approach and inverse dynamics modeling respectively. Increases in the tibia angle resulted in a smaller range of motion (ROM) of the front knee and a larger ROM of the rear knee and hip. The external flexion moment in the front knee/hip and the external extension moment in the rear hip decreased as the tibia angle increased. The flexion moment in the rear knee increased as the tibia angle increased. The load distribution between the legs changed < 25% when split squat execution was varied. Our results describing the changes in joint angles and the resulting differences in the moments of the knee and hip will allow coaches and therapists to adapt the split squat exercise to the individual motion and load demands of athletes.
本研究的目的是量化在分腿蹲练习中步长和胫骨前角度如何影响关节角度和负荷状况。11名受试者进行分腿蹲练习,使用杠铃施加相当于自身体重25%的额外负荷。使用动作捕捉系统记录每个受试者的动作,并测量每只脚下的地面反作用力。分别使用基于聚类的运动学方法和逆动力学建模来计算关节角度和负荷状况。胫骨角度增加导致前膝的运动范围(ROM)减小,后膝和髋关节的ROM增大。随着胫骨角度增加,前膝/髋关节的外部屈曲力矩和后髋关节的外部伸展力矩减小。随着胫骨角度增加,后膝的屈曲力矩增加。当分腿蹲动作改变时,双腿之间的负荷分布变化<25%。我们描述关节角度变化以及由此导致的膝关节和髋关节力矩差异的结果,将使教练和治疗师能够根据运动员的个体运动和负荷需求调整分腿蹲练习。