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Estimation of Relative Load From Bar Velocity in the Full Back Squat Exercise

机译:从后背深蹲练习中的杆速估算相对负荷

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pThe use of bar velocity to estimate relative load in the back squat exercise was examined. 80 strength-trained men performed a progressive loading test to determine their one-repetition maximum (1RM) and load-velocity relationship. Mean (MV), mean propulsive (MPV) and peak (PV) velocity measures of the concentric phase were analyzed. Both MV and MPV showed a very close relationship to %1RM (Rsup2/sup=0.96), whereas a weaker association (Rsup2/sup=0.79) and larger SEE (0.14 vs. 0.06?m·ssup?1/sup) were found for PV. Prediction equations to estimate load from velocity were obtained. When dividing the sample into 3 groups of different relative strength (1RM/body mass), no differences were found between groups for the MPV attained against each %1RM. MV attained with the 1RM was 0.32±0.03?m·ssup?1/sup. The propulsive phase accounted for ~82% of concentric duration at 40% 1RM, and progressively increased until reaching 100% at 1RM. Provided that repetitions are performed at maximal intended velocity, a good estimation of load (%1RM) can be obtained from mean velocity as soon as the first repetition is completed. This finding provides an alternative to the often demanding, time-consuming and interfering 1RM or nRM tests and allows implementing a velocity-based resistance training approach./p.
机译:>检查了使用杠铃速度来估计后蹲运动中的相对负荷。 80名受过力量训练的人进行了渐进式负荷测试,以确定他们的一次重复最大值(1RM)和负荷-速度关系。分析了同心相的平均(MV),平均推进(MPV)和峰值(PV)速度测量值。 MV和MPV都显示与%1RM的关系非常密切(R 2 = 0.96),而关联性较弱(R 2 = 0.79)和SEE较大(0.14 vs. PV为0.06?m·s ?1 )。获得了从速度估算载荷的预测方程。将样品分为相对强度不同的3组(1RM /体重)时,各%1RM的MPV在各组之间未发现差异。 1RM获得的MV为0.32±0.03?m·s ?1 。推进阶段在40%1RM时约占同心持续时间的82%,并逐渐增加直到1RM达到100%。假设以最大预期速度执行重复,则在第一次重复完成后,就可以从平均速度获得良好的负载估计(%1RM)。这一发现为通常要求高,耗时且会干扰1RM或nRM测试提供了一种选择,并允许实施基于速度的阻力训练方法。

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