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Using Drop Jumps and Jump Squats to Assess Eccentric and Concentric Force-Velocity Characteristics

机译:使用跳投和下蹲来评估偏心和同心力速度特征

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摘要

The purpose of this study was to investigate the eccentric and concentric force-velocity (Fv) characteristics recorded during drop jumps (DJ) from different heights and loaded jump squats (JS) and to determine the number of jumps required to accurately model the eccentric and concentric Fv relationships. Fourteen resistance-trained men (age: 21.9 ± 1.8 years) performed a countermovement jump (CMJ) and DJ from heights of 0.40, 0.60, and 0.80 m. JS with loads equivalent to 0%, 27%, 56%, and 85% 1-repetition maximum were performed in a separate session. Force platforms and a 3-D motion analysis system were used to record the average force (F¯) and velocity (v¯) during the absorption (CMJ, DJ40, DJ60, DJ80) and propulsion (JS0, JS27, JS56, JS85) phases of the jumps. Eccentric (absorption phase) and concentric (propulsion phase) Fv characteristics were then calculated and linear regression equations were determined when the number of jumps included was varied. F¯ during the absorption phase significantly increased from CMJ to DJ60 while v¯ increased significantly from CMJ to DJ80. The two-point method (CMJ, DJ80) resulted in a significantly lower y-intercept (mean difference [MD]: 0.7 N/kg) and a greater slope (MD: 0.7 Ns/m) for the eccentric Fv characteristics compared to the multiple-point method. F¯ increased significantly and v¯ decreased significantly with increasing external load in the JS conditions. The two-point method (JS0, JS85) resulted in a significantly greater y-intercept (MD: 1.1 N/kg) compared to the multiple-point method for the concentric Fv characteristics. Both DJ and loaded JS may provide means of assessing the eccentric and concentric Fv characteristics with only two jumps being required.
机译:这项研究的目的是调查在不同高度和负重下蹲(JS)的跌落跳跃(DJ)期间记录的偏心和同心力速度(Fv)特性,并确定准确建模偏心和偏心所需的跳跃次数。同心Fv关系。 14名接受过阻力训练的男子(年龄:21.9±1.8岁)从0.40、0.60和0.80 m的高度进行了反跳动作(CMJ)和DJ。在单独的会话中执行了JS,其负载分别等于0%,27%,56%和85%的1次重复最大值。力平台和3-D运动分析系统用于记录平均力( F )和速度( v )在跳跃的吸收(CMJ,DJ40,DJ60,DJ80)和推进(JS0,JS27,JS56,JS85)阶段中。然后计算偏心(吸收阶段)和同心(推进阶段)Fv特性,并在改变跳跃次数时确定线性回归方程。 F < / mi> ¯ 在吸收阶段从CMJ到DJ60显着增加,而 v < / mrow> 从CMJ大幅提高到DJ80。与偏心Fv特性相比,两点法(CMJ,DJ80)导致y截距明显降低(平均差[MD]:0.7 N / kg),偏心Fv特性的斜率更大(MD:0.7 Ns / m)。多点法。 F < / mi> ¯ 显着增加,并且 v ¯ 减少了在JS条件下,随着外部负载的增加,性能显着提高。与同心Fv特性的多点方法相比,两点方法(JS0,JS85)导致更大的y截距(MD:1.1 N / kg)。 DJ和加载的JS都可以提供评估偏心和同心Fv特性的方法,而只需要两次跳跃即可。

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