Comparing the Effects of Static Stretching Alone and in Combination with Post-Activation Performance Enhancement on Squat Jump Performance at Different Knee Starting Angles.

IF 2.4 2区 医学 Q2 SPORT SCIENCES Journal of Sports Science and Medicine Pub Date : 2023-12-01 DOI:10.52082/jssm.2023.769
Ming Li, Xiangwei Meng, Lihao Guan, Youngsuk Kim, Sukwon Kim
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Abstract

We aimed to investigate the impact of isolated static stretching (4 sets of 30 seconds) and its combined form with 10 repetitive drop jumps on lower limb performance during squat jumps at different knee joint starting angles (60°, 90°, and 120°). Thirteen participants completed three randomly ordered experimental visits, each including a standardized warm-up and squat jumps at three angles, apart from the intervention or control. Information was gathered through a three-dimensional movement tracking system, electromyography system, and force platform. The electromyography data underwent wavelet analysis to compute the energy values across the four wavelet frequency bands. The average power (Pavg), peak power (Ppeak), peak ground reaction force (GRFpeak), peak center of mass velocity (Vpeak), and force-velocity relationship at peak power (SFv) were extracted from the force and velocity-time data. The results revealed no significant influence of isolated static stretching, or its combined form with drop jumps, on the energy values across the frequency bands of the gastrocnemius, biceps femoris and rectus femoris, or the Pavg or Ppeak (P > 0.05). However, at 120°, static stretching reduced the GRFpeak (P = 0.001, d = 0.86) and SFv (P < 0.001, d = 1.12), and increased the Vpeak (P = 0.001, d = 0.5). The GRFpeak, Pavg, Ppeak, and SFv increased with an increase in the joint angle (P < 0.05), whereas the Vpeak decreased (P < 0.05). These findings suggest that static stretching does not diminish power output during squat jumps at the three angles; however, it alters GRFpeak, Vpeak, and the relative contributions of force and velocity to peak power at 120°, which can be eliminated by post-activation performance enhancement. Moreover, compared to 60° and 90°, 120° was more favorable for power and peak force output.

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比较单独静态拉伸和结合激活后性能增强对不同膝盖起始角度下深蹲跳性能的影响。
我们的目的是研究在不同的膝关节起始角度(60°、90°和120°)下蹲跳时,孤立的静态拉伸(4组30秒)及其与10次重复跌落跳的组合形式对下肢表现的影响。13名参与者完成了三次随机排序的实验访问,每次访问包括标准化的热身和三个角度的深蹲跳跃,除了干预或控制。通过三维运动跟踪系统、肌电图系统和力平台收集信息。对肌电数据进行小波分析,计算四个小波频带的能量值。从力和速度-时间数据中提取了平均功率(Pavg)、峰值功率(Ppeak)、地面反作用力峰值(GRFpeak)、质心速度峰值(Vpeak)和峰值功率(SFv)时的力-速度关系。结果显示,单独静态拉伸或与跌落跳跃联合拉伸对腓肠肌、股二头肌、股直肌以及pag、Ppeak各频带能量值均无显著影响(P > 0.05)。然而,在120°时,静态拉伸降低了GRFpeak (P = 0.001, d = 0.86)和SFv (P < 0.001, d = 1.12),增加了Vpeak (P = 0.001, d = 0.5)。GRFpeak、Pavg、Ppeak和SFv随关节角度的增大而增大(P < 0.05),而Vpeak则减小(P < 0.05)。这些发现表明,静态拉伸并不会减少三个角度下蹲跳时的力量输出;然而,它改变了GRFpeak, Vpeak以及力和速度对120°峰值功率的相对贡献,这可以通过激活后性能增强来消除。此外,与60°和90°相比,120°更有利于功率和峰值力输出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.60
自引率
6.20%
发文量
56
审稿时长
4-8 weeks
期刊介绍: The Journal of Sports Science and Medicine (JSSM) is a non-profit making scientific electronic journal, publishing research and review articles, together with case studies, in the fields of sports medicine and the exercise sciences. JSSM is published quarterly in March, June, September and December. JSSM also publishes editorials, a "letter to the editor" section, abstracts from international and national congresses, panel meetings, conferences and symposia, and can function as an open discussion forum on significant issues of current interest.
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