Department of Sport and Exercise Science, University of Salzburg, Hallein-Rif, Austria.
Department of Sport and Exercise Science, University of Salzburg, Hallein-Rif, Austria.
J Biomech. 2021 May 7;120:110354. doi: 10.1016/j.jbiomech.2021.110354. Epub 2021 Mar 2.
Loaded jumps are commonly used to improve leg muscle power. However, the additional load during jump-landing might increase the potential for overuse injury. Therefore, the aims of this study were to evaluate the effect that barbell load has on lower limb joint kinematics and kinetics during jump-landing and to evaluate the effect of arresting the barbell load at flight apex prior to landing on joint kinematic and kinetic variables. Barbell-loaded squat jumps (20, 40, and 60 kg) were investigated during two jump-landing conditions: 1) barbell-loaded (landing with barbell load) and 2) barbell-arrested (barbell load arrested at flight apex prior to jump-landing). Lower body kinematics and joint kinetics were assessed during jump-landing. In the barbell-loaded jump-landing condition, joint angles at initial contact decreased with increasing barbell load. Knee and hip peak power decreased (knee: -38%; hip: -46%), while ankle joint work increased with increasing barbell load. Joint moments, powers and work were decreased in the barbell-arrested condition compared to the barbell-loaded condition. Barbell-loaded jump-landings do not pose increased demands on the knee and the hip joint compared to bodyweight only jump-landings, due to the load-based reductions in jump height and joint kinematic adaptions. However, ankle joint contribution in energy dissipation is increased, possibly resulting in an increased overuse injury risk at this joint. Arresting the barbell load at flight apex prior to jump-landing substantially reduces the joint kinetics, hence serving as valuable training tool for athletes returning to sport after injuries.
负重跳跃通常用于提高腿部肌肉力量。然而,跳跃落地时的额外负荷可能会增加过度使用损伤的风险。因此,本研究的目的是评估在跳跃落地时杠铃负荷对下肢关节运动学和动力学的影响,并评估在落地前在飞行顶点停止杠铃负荷对关节运动学和动力学变量的影响。在两种跳跃落地条件下研究了杠铃负重深蹲跳(20、40 和 60 公斤):1)杠铃负重(带杠铃落地)和 2)杠铃停止(在跳跃落地前在飞行顶点停止杠铃)。在跳跃落地期间评估了下半身运动学和关节动力学。在杠铃负重跳跃落地条件下,随着杠铃负荷的增加,初始接触时的关节角度减小。膝关节和髋关节峰值功率降低(膝关节:-38%;髋关节:-46%),而踝关节工作增加。与杠铃负重条件相比,杠铃停止条件下的关节力矩、功率和功减小。与仅负重跳跃落地相比,杠铃负重跳跃落地对膝关节和髋关节的要求没有增加,这是由于跳跃高度的负荷降低和关节运动学的适应。然而,踝关节在能量耗散中的贡献增加,可能导致该关节过度使用损伤的风险增加。在落地前在飞行顶点停止杠铃负荷可显著降低关节动力学,因此是受伤后重返运动的运动员的宝贵训练工具。