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Aerial Rotation Effects on Vertical Jump Performance Among Highly Skilled Collegiate Soccer Players

机译:高技能大学足球运动员之间垂直跳跃性能的空中旋转效应

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Barker, LA, Harry, JR, Dufek, JS, and Mercer, JA. Aerial rotation effects on vertical jump performance among highly skilled collegiate soccer players. J Strength Cond Res 31(4): 932-938, 2017In soccer matches, jumps involving rotations occur when attempting to head the ball for a shot or pass from set pieces, such as corner kicks, goal kicks, and lob passes. However, the 3-dimensional ground reaction forces used to perform rotational jumping tasks are currently unknown. Therefore, the purpose of this study was to compare bilateral, 3-dimensional, and ground reaction forces of a standard countermovement jump (CMJ(0)) with those of a countermovement jump with a 180 degrees rotation (CMJ(180)) among Division-1 soccer players. Twenty-four participants from the soccer team of the University of Nevada performed 3 trials of CMJ(0) and CMJ(180). Dependent variables included jump height, downward and upward phase times, vertical (Fz) peak force and net impulse relative to mass, and medial-lateral and anterior-posterior force couple values. Statistical significance was set a priori at = 0.05. CMJ(180) reduced jump height, increased the anterior-posterior force couple in the downward and upward phases, and increased upward peak Fz (p 0.05). All other variables were not significantly different between groups (p > 0.05). However, we did recognize that downward peak Fz trended lower in the CMJ(0) condition (p = 0.059), and upward net impulse trended higher in the CMJ(0) condition (p = 0.071). It was concluded that jump height was reduced during the rotational jumping task, and rotation occurred primarily via AP ground reaction forces through the entire countermovement jump. Coaches and athletes may consider additional rotational jumping in their training programs to mediate performance decrements during rotational jump tasks.
机译:Barker,La,Harry,JR,Dufek,JS和Mercer,JA。高技能大学生足球运动员垂直跳跃性能的空中旋转效应。 J Rights Cond Res 31(4):2017年足球比赛,涉及旋转的跳跃在试图前往球射门时出现,例如转角踢球,进球踢和游戏。然而,用于执行旋转跳跃任务的三维地反作用力目前是未知的。因此,本研究的目的是将标准对策跳转(CMJ(0))的双侧,三维和地面反作用力与分割中的180度旋转(CMJ(180))进行比较-1足球运动员。内华达大学足球队的二十四位参与者进行了3个CMJ(0)和CMJ的试验(180)。相关变量包括相对于质量的跳跃高度,向上和向上相位,垂直(FZ)峰值力和净脉冲,以及内侧横向和前后力耦合值。统计学意义设定为= 0.05的先验。 CMJ(180)减少跳跃高度,增加了向下和向上和向上阶段的前后力耦合,并增加向上峰FZ(p 0.05)。组之间的所有其他变量没有显着差异(P> 0.05)。但是,我们确实认识到CMJ(0)条件下的向下峰FZ趋势较低(P = 0.059),并且在CMJ(0)条件下趋势的向上净脉冲趋势(P = 0.071)。得出结论,在旋转跳跃任务期间减少了跳跃高度,并且通过整个对照跳转,通过AP接地反作用力发生旋转。教练和运动员可以考虑在训练计划中考虑额外的旋转跳跃,以在旋转跳转任务期间调解绩效递减。

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