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连续跳跃可提高高水平短跑运动员的触发性峰值扭矩和短跑表现。

Continuous Jumps Enhance Twitch Peak Torque and Sprint Performance in Highly Trained Sprint Athletes.

出版信息

Int J Sports Physiol Perform. 2021 Apr 1;16(4):565-572. doi: 10.1123/ijspp.2020-0240. Epub 2021 Jan 13.

Abstract

PURPOSE

The objective of this study was to analyze the effects of a conditioning activity (CA) composed of continuous countermovement jumps on twitch torque production and 30-m sprint times.

METHODS

A total of 12 sprint athletes, 10 men (23.5 [7.7] y) and 2 women (23.0 [2.8] y), volunteered to participate in this study. The participants were evaluated in 2 sessions as follows: (1) to determine the effects of the CA (3 sets of 5 continuous vertical jumps with a 1-min interval between sets) on 30-m sprint performance over time (2, 4, 6, 8, and 10 min) and (2) to evaluate twitch peak torque to determine the magnitude and time course of the induced postactivation potentiation at the same recovery intervals.

RESULTS

Mixed-model analysis of variance with Bonferroni post hoc verified that there was a decrease on the 30-m sprint time at 2 minutes (P = .01; Δ = 2.78%; effect size [ES] = 0.43) and 4 minutes (P = .02; Δ = 2%, ES = 0.30) compared with pre when the CA preceded the sprints. The peak torque of quadriceps also showed significant increase from pretest to 2 minutes (P < .01; Δ = 17.0% [12.2%]; ES = 0.45) and 4 minutes (P = .02; Δ = 7.2% [8.8%]; ES = 0.20).

CONCLUSION

The inclusion of CA composed of continuous countermovement jumps in the warm-up routine improved 30-m sprint performance at 2- and 4-minute time intervals after the CA (postactivation performance enhancement). Since postactivation potentiation was confirmed with electrical stimulation at the time when sprint performance increased, it was concluded that postactivation potentiation may have contributed to the observed performance increases.

摘要

目的

本研究旨在分析由连续反跳动作组成的热身活动(CA)对肌牵张力量产生和 30 米冲刺时间的影响。

方法

共有 12 名短跑运动员(10 名男性[23.5(7.7)岁]和 2 名女性[23.0(2.8)岁])自愿参加了这项研究。参与者在 2 个阶段进行了评估,如下所示:(1)确定 CA(3 组 5 次连续垂直跳跃,组间间隔 1 分钟)对 30 米冲刺性能的时间影响(2、4、6、8 和 10 分钟);(2)评估肌牵张峰值扭矩,以确定诱导的后激活增强的幅度和时间过程。

结果

混合模型方差分析和 Bonferroni 事后检验证实,与热身前相比,CA 在前时,30 米冲刺时间在 2 分钟(P =.01;Δ=2.78%;效应量[ES] = 0.43)和 4 分钟(P =.02;Δ=2%,ES = 0.30)时下降。股四头肌的峰值扭矩也从热身前显著增加到 2 分钟(P <.01;Δ=17.0%[12.2%];ES = 0.45)和 4 分钟(P =.02;Δ=7.2%[8.8%];ES = 0.20)。

结论

在热身程序中包含由连续反跳动作组成的 CA 可以改善 CA 后 2-4 分钟的 30 米冲刺性能(后激活性能增强)。由于在冲刺性能提高的同时用电刺激确认了后激活增强,因此可以得出结论,后激活增强可能有助于观察到的性能提高。

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