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不同惯性负荷对飞轮深蹲练习基本训练变量的影响。

Influence of Different Inertial Loads on Basic Training Variables During the Flywheel Squat Exercise.

出版信息

Int J Sports Physiol Perform. 2018 Apr 1;13(4):482-489. doi: 10.1123/ijspp.2017-0282. Epub 2018 May 23.

DOI:10.1123/ijspp.2017-0282
PMID:28872379
Abstract

PURPOSE

To analyze the effects of different inertial loads on power production and power maintenance, as well as the number of sessions required for proper familiarization during the flywheel quarter-squat.

METHODS

Twenty-four high-level handball players attended 4 testing sessions consisting of 4 sets of 10 repetitions using 4 different inertial loads (0.025, 0.050, 0.075, and 0.100 kg·m). In addition, a 5th set of 15 repetitions was performed. Both concentric and eccentric peak power and the eccentric:concentric ratio were recorded.

RESULTS

The results showed the need to perform 3 sessions for a proper familiarization (ie, outcomes stabilization). The inertial load of 0.025 kg·m led to greater concentric peak power compared with the other inertial loads (from likely to most likely greater values). Both 0.025 and 0.050 kg·m inertial loads entailed greater eccentric peak power compared with 0.075 and 0.100 kg·m (most likely greater). Conversely, the 0.025-kg·m inertial load showed a lower eccentric:concentric ratio, presenting negative effects (most likely lower values) compared with the inertial loads of 0.050, 0.075, and 0.100 kg·m. Participants were able to perform 5-12 repetitions per set without significant peak power output decrements.

CONCLUSIONS

This study highlights the importance of performing at least 3 sessions to obtain a stable measure during flywheel squat exercise. Lower inertial loads (0.025 kg·m) are the better option for eliciting high concentric peak power output values. In contrast, medium to high inertial loads are more appropriate to achieve greater eccentric overload values.

摘要

目的

分析不同惯性负荷对力量产生和力量维持的影响,以及在飞轮半蹲中适当熟悉所需的训练次数。

方法

24 名高水平手球运动员参加了 4 次测试,包括 4 组 10 次重复,使用 4 种不同的惯性负荷(0.025、0.050、0.075 和 0.100kg·m)。此外,还进行了第 5 组 15 次重复。记录了向心和离心峰值力量以及离心:向心比值。

结果

结果表明,需要进行 3 次训练以达到适当的熟悉程度(即结果稳定)。与其他惯性负荷相比,0.025kg·m 的惯性负荷导致向心峰值力量更大(很可能更大)。0.025 和 0.050kg·m 的惯性负荷与 0.075 和 0.100kg·m 的惯性负荷相比,离心峰值力量更大(很可能更大)。相反,0.025kg·m 的惯性负荷表现出较低的离心:向心比值,与 0.050、0.075 和 0.100kg·m 的惯性负荷相比,呈现出负面效果(很可能较低)。参与者能够在每组中完成 5-12 次重复,而不会导致峰值力量输出显著下降。

结论

本研究强调了在飞轮深蹲运动中至少进行 3 次训练以获得稳定测量的重要性。较低的惯性负荷(0.025kg·m)更适合产生高向心峰值力量输出值。相比之下,中高惯性负荷更适合实现更大的离心过载值。

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