静态拉伸后调节收缩对下肢爆发力的影响。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Ming Li, Youngsuk Kim, Weishuai Guo, Penglei Fan, Junsig Wang, Sukwon Kim
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引用次数: 0

摘要

本研究评估了静态拉伸(StS,4 组,每组 30 秒)和静态拉伸结合条件收缩(10 次重复下蹲跳)(SC)这两种不同方案对不同初始膝关节角度(60°、90°、120°)下蹲跳(SJ)时下肢神经肌肉反应和力量发展速度(RFD)的影响。12 名参与者完成了三项随机实验(无干预、StS 干预和 SC 干预)。除干预部分外,每次试验都包括标准化热身和三个不同角度的 SJ。数据收集使用了三维损伤运动捕捉系统、肌电图(EMG)记录系统和力平台。收集到的肌电图数据用于振幅计算,而力-时间数据则用于 RFD 计算。无论是 StS 还是 SC,都没有对五块受检肌肉的平均或峰值 EMG 振幅产生明显影响(P > 0.05)。然而,在初始膝关节角度为 120° 时,StS 组在三个不同阶段(0-50 毫秒、50-100 毫秒和 0 峰值力)的 RFD 值明显低于 SC 组和对照组(p < 0.05)。对于膝关节角度为 120°的起始活动,建议避免 StS 或将其与 10 次重复性下蹲跳相结合,以减轻对爆发力的潜在负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Conditioning Contractions on Lower-Body Explosive Force Post-Static Stretching.

The present study assessed the impacts of two distinct protocols, static stretching (StS, 4 sets of 30 seconds) and static stretching combined with conditioning contractions (10 repetitive drop jumps) (SC), on neuromuscular response and rate of force development (RFD) in the lower limbs during squat jumps (SJs) at varying initial knee-joint angles (60°,90°,120°). Twelve participants completed three randomized experimental trials (no intervention, StS intervention, and SC intervention). Except for the intervention segments, each trial included standardized warm-ups and SJs at three different angles. Data were collected using a 3-dimensional injury motion capture system, an electromyography (EMG) recording system, and a force platform. The collected EMG data were subjected to amplitude calculations, while force-time data were used for RFD computation. Neither StS nor SC significantly impacted the average or peak EMG amplitudes of the five muscles examined (p>0.05). However, at an initial knee-joint angle of 120°, the StS group demonstrated significantly lower RFD values at three distinct phases (0-50 ms, 50-100 ms, and 0-peakforce) compared to those seen in the SC and control groups (p<0.05). For activities starting with a knee-joint angle of 120°, it is recommended to either avoid StS or combine it with ten repetitive drop jumps to mitigate any potential negative impact on explosiveness.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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