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Mechanical Differences between Barbell and Body Optimum Power Loads in the Jump Squat Exercise

机译:跳深蹲练习中杠铃和身体最佳力量负荷之间的机械差异

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摘要

This study compared the values of bar-peak force (PFBar) and power (PPBar), body-peak force (PFBody) and power (PPBody) and bar-mean propulsive power (MPPBar) in different jump-squat (JS) conditions: unloaded condition (UC); bar-loaded condition (BLC) and optimum bar-MPP condition (OBC). Twenty-five soccer players performed the JS using a bar with negligible mass (UC), using the Smith-machine bar (BLC) and using the load capable of maximizing the bar-MPP (OBC). The PFBody was significantly higher in the UC (2847.9 ± 489.1 N) than in the OBC (2655.4 ± 444.3 N). The UC presented greater PPBody (3775.9 ± 631.5 W) than the BLC (3359.7 ± 664.3 W) and OBC (3357.8 ± 625.3 W). The OBC presented higher values of PFBar, PPBar and MPPBar (676.2 ± 109.4 W) than the BLC (MPPBar = 425.8 ± 53.7 W) (all p < 0.05). In the OBC (compared to the UC), the body peak-power presented a reduction of ≈ 11%, while generating bar-power output from ≈ 59 to 73% higher than the BLC. While the fact that the body-peak power is maximized in the UC denotes a mechanical phenomenon, the bar-optimum load represents an intensity at which both components of the power equation (force and velocity) are optimized. This has important implications for sports training.
机译:这项研究比较了在不同下蹲(JS)条件下的杆峰值力(PFBar)和力量(PPBar),身体峰值力(PFBody)和力量(PPBody)和杆均值推进力(MPPBar)的值:空载状态(UC);条形负载条件(BLC)和最佳条形MPP条件(OBC)。 25名足球运动员使用质量可忽略不计的杆(UC),史密斯机杆(BLC)和能够使杆MPP最大化的负载(OBC)来执行JS。 UC中的PFBody(2847.9±489.1 N)显着高于OBC(2655.4±444.3 N)。 UC的PPBody(3775.9±631.5 W)比BLC(3359.7±664.3 W)和OBC(3357.8±625.3 W)大。与BLC(MPPBar = 425.8±53.7 W)相比,OBC的PFBar,PPBar和MPPBar值更高(676.2±109.4 W)(所有p <0.05)。在OBC中(与UC相比),车身峰值功率降低了约11%,而杆功率输出则比BLC高出约59%至73%。虽然在UC中将身体峰值功率最大化的事实表示机械现象,但条形最佳负载代表了功率方程的两个分量(力和速度)均得到优化的强度。这对运动训练具有重要意义。

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