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Postactivation Potentiation of Bench Press Throw Performance Using Velocity-Based Conditioning Protocols with Low and Moderate Loads

机译:使用基于速度的中低负荷的速度调节协议卧推动作的后期激活电位

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摘要

This study examined the acute effects of the bench press exercise with low and moderate loads as well as with two predetermined movement velocity loss percentages on bench press throw performance and surface electromyographic (sEMG) activity. Ten trained men completed 5 main trials in randomized and counterbalanced order one week apart. Mean propulsive velocity (MPV), peak velocity (PV) and sEMG activity of prime movers were evaluated before and periodically for 12 minutes of recovery under five conditions: using loads of 40 or 60% of 1 RM, until mean velocity dropped to 90 or 70%, as well as a control condition (CTRL). MPV and PV were increased 4-12 min into recovery by 4.5-6.8% only after the 60%1RM condition during which velocity dropped to 90% and total exercise volume was the lowest of all conditions (p < 0.01, Hedges’ g = 0.8-1.7). When peak individual responses were calculated irrespective of time, MPV was increased by 9.2 ± 4.4 (p < 0.001, Hedges’ g = 1.0) and 6.1 ± 3.6% (p < 0.001, Hedges’ g = 0.7) under the two conditions with the lowest total exercise volume irrespective of the load, i.e. under the conditions of 40 and 60% 1RM where velocity was allowed to drop to 90%. sEMG activity of the triceps was significantly greater when peak individual responses were taken into account only under the 60%1RM condition when velocity dropped to 90% (p < 0.05, Hedges’ g = 0.4). This study showed that potentiation may be maximized by taking into account individual fatigue profiles using velocity-based training.
机译:这项研究检查了中低负荷卧推运动的急性影响以及两个预定的运动速度损失百分比对卧推运动和表面肌电图(sEMG)活动的影响。十名训练有素的男人每隔一周以随机和平衡的顺序完成了5次主要试验。在以下五个条件下,在恢复之前和定期评估12分钟内,对原动机的平均推进速度(MPV),峰值速度(PV)和sEMG活性进行了评估:使用1 RM的40%或60%的负载,直到平均速度降至90或70%,以及控制条件(CTRL)。仅在60%1RM的情况下,其速度下降到90%,并且总运动量是所有情况中最低的,MPV和PV在恢复后4-12分钟内以4.5-6.8%的速度恢复(p <0.01,Hedges'g = 0.8 -1.7)。在不考虑时间的情况下计算峰值个人反应时,在两种情况下,MPV分别增加了9.2±4.4(p <0.001,Hedges'g = 1.0)和6.1±3.6%(p <0.001,Hedges'g = 0.7)。最低总运动量,与负荷无关,即在40%和60%1RM的条件下,允许速度降至90%。当速度降至90%时,只有在60%1RM条件下才考虑到峰值个体反应,三头肌的sEMG活性明显更高(p <0.05,Hedges'= 0.4)。这项研究表明,通过使用基于速度的训练来考虑各个疲劳状况,可以最大程度地增强力量。

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