Feltner Michael E, Bishop Elijah J, Perez Cassandra M
Department of Sports Medicine at Pepperdine University, Malibu, CA 90263, USA.
Res Q Exerc Sport. 2004 Sep;75(3):216-30. doi: 10.1080/02701367.2004.10609155.
To determine the contributions of the motions of the body segments to the vertical ground reaction force (Fz), the joint torques produced by the leg muscles, and the time course of vertical velocity generation during a vertical jump, 15 men were videotaped performing countermovement vertical jumps from a force plate with and without an arm swing. Linear kinematic, Fz, and joint torque data were computed and compared using repeated measures analysis of variance. Maximum jump height was significantly larger in the arm swing jumps compared to the no arm swing jumps and was due to both a higher height of the center of mass (CM) at takeoff (54%) and a larger vertical velocity of the CM at takeoff (46%). The net vertical impulse created during the propulsive phase of the arm swing jumps was greater due to a trend of an increased duration (0.021 s) of the propulsive phase and not to larger average values of Fz. In the arm swing jumps, the arm motion resulted in the arms making a larger maximal contribution to Fz during the middle of the propulsive phase and decreased the negative contribution of the trunk-head and thigh to Fz late in the propulsive phase. Last, the arm swing decreased the extensor torques at the hip (13%), knee (10%), and ankle (10%) early in the propulsive phase but augmented these same extensor torques later in the propulsive phase.
为了确定身体各节段的运动对垂直地面反作用力(Fz)、腿部肌肉产生的关节扭矩以及垂直跳跃过程中垂直速度产生的时间进程的贡献,对15名男性进行了录像,他们在有和没有摆臂的情况下从测力板上进行反向运动垂直跳跃。使用重复测量方差分析计算并比较了线性运动学、Fz和关节扭矩数据。与无摆臂跳跃相比,有摆臂跳跃的最大跳跃高度显著更高,这是由于起跳时质心(CM)的高度更高(54%)以及起跳时CM的垂直速度更大(46%)。有摆臂跳跃的推进阶段产生的净垂直冲量更大,这是由于推进阶段持续时间增加(0.021秒)的趋势,而不是Fz的平均值更大。在有摆臂跳跃中,手臂运动导致手臂在推进阶段中期对Fz的最大贡献更大,并在推进阶段后期减少了躯干 - 头部和大腿对Fz的负贡献。最后,摆臂在推进阶段早期降低了髋部(13%)、膝部(10%)和踝部(10%)的伸肌扭矩,但在推进阶段后期增加了这些相同的伸肌扭矩。