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首页> 外文期刊>Journal of strength and conditioning research >Kinematic and kinetic analysis of maximal velocity deadlifts performed with and without the inclusion of chain resistance.
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Kinematic and kinetic analysis of maximal velocity deadlifts performed with and without the inclusion of chain resistance.

机译:在有和没有链条阻力的情况下进行的最大速度硬拉运动学和动力学分析。

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The purpose of this study was to investigate whether the deadlift could be effectively incorporated with explosive resistance training (ERT) and to investigate whether the inclusion of chains enhanced the suitability of the deadlift for ERT. Twenty-three resistance trained athletes performed the deadlift with 30, 50, and 70% 1-repetition maximum (1RM) loads at submaximal velocity, maximal velocity (MAX), and MAX with the inclusion of 2 chain loads equal to 20 or 40% of the subjects' 1RM. All trials were performed on force platforms with markers attached to the barbell to calculate velocity and acceleration using a motion capture system. Significant increases in force, velocity, power, rate of force development, and length of the acceleration phase (p < 0.05) were obtained when repetition velocity increased from submaximal to maximal. During MAX repetitions with a constant resistance, the mean length of the acceleration phase ranged from 73.2 (+/-7.2%) to 84.9 (+/-12.2%) of the overall movement. Compared to using a constant resistance, the inclusion of chains enabled greater force to be maintained to the end of the concentric action and significantly increased peak force and impulse (p < 0.05), while concurrently decreasing velocity, power, and rate of force development (p < 0.05). The effects of chains were influenced by the magnitude of the chain and barbell resistance, with greater increases and decreases in mechanical variables obtained when heavier chain and barbell loads were used. The results of the investigation suggest that the deadlift can be incorporated effectively in ERT programs. Coaches and athletes should be aware that the inclusion of heavy chains may have both positive and negative effects on kinematics and kinetics of an exercise.
机译:这项研究的目的是调查硬拉是否可以与爆炸阻力训练(ERT)有效结合,以及调查链的包含是否增强硬拉对ERT的适用性。 23名经过阻力训练的运动员以30%,50%和70%的1次重复最大(1RM)负荷进行了硬拉,次最大速度,最大速度(MAX)和MAX包含2个等于20%或40%的链条负荷受试者的1RM。所有试验均在带有标记物的力量平台上进行,该标记物附着在杠铃上,以使用运动捕捉系统计算速度和加速度。当重复速度从次最大值增加到最大值时,力,速度,功率,力发展速率和加速阶段的长度显着增加(p <0.05)。在具有恒定阻力的MAX重复过程中,加速阶段的平均长度为整个运动的73.2(+/- 7.2%)到84.9(+/- 12.2%)。与使用恒定阻力相比,链的夹杂使在同心作用结束时可以保持更大的力,并显着增加了峰值力和冲量(p <0.05),同时降低了速度,功率和力的产生速度( p <0.05)。链条的效果受链条大小和杠铃阻力的影响,当使用较重的链条和杠铃载荷时,机械变量的增大和减小的幅度更大。调查结果表明,硬拉可以有效地纳入ERT程序中。教练和运动员应意识到,包含重链可能会对运动的运动学和动力学产生积极和消极的影响。

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