A systematic review of resistance training methodologies for the development of lower body concentric mean power, peak power, and mean propulsive power in team-sport athletes.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-10-01 Epub Date: 2021-08-04 DOI:10.1080/14763141.2021.1948601
Patrick Cormier, Tomás T Freitas, Kenneth Seaman
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Abstract

This study aimed to systematically review training methods prescribed to develop lower-body power, determine their effectiveness for the development of lower-body mechanical power and their implementation in an annual training cycle amongst team-sport athletes. The absolute and relative outcome values of concentric mean power, peak power and mean propulsive power were extracted from 19 studies. Outcomes were assessed using baseline to post intervention percent change, effect sizes, and the level of evidence concerning the method's effectiveness. A thorough analysis of the literature indicated that, based on the high level of evidence, traditional (e.g., strength training alone) and combination training (e.g., complex and contrast) methods should be considered. Further, optimal load and velocity-based training can be implemented if coaches have access to the appropriate equipment to monitor movement velocity and mechanical power in every session. This is of particular importance in periods of the season where high volumes of technical-tactical training and congested fixture periods are present. Also, flywheel, eccentric overload and weightlifting methods have been shown to be effective although the level of evidence is low. Future research should expand on current training practices whilst adequately reporting actual training loads from sport-specific training and games alongside strength-power training protocols.

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对阻力训练方法进行系统回顾,以发展团队运动运动员的下半身同心平均功率、峰值功率和平均推进功率。
本研究旨在系统回顾开发下半身力量的训练方法,确定这些方法在开发下半身机械力量方面的有效性,以及这些方法在团队运动运动员年度训练周期中的实施情况。从 19 项研究中提取了同心平均功率、峰值功率和平均推进功率的绝对和相对结果值。通过基线到干预后的百分比变化、效应大小以及有关方法有效性的证据水平对结果进行了评估。对文献的全面分析表明,基于高水平的证据,应考虑采用传统方法(如单独的力量训练)和组合训练方法(如复合训练和对比训练)。此外,如果教练员有适当的设备来监测每次训练的运动速度和机械力量,就可以实施最佳负荷和速度训练。这在赛季中技术战术训练量大、赛程密集的时期尤为重要。此外,飞轮、偏心超负荷和举重方法虽然证据不足,但已被证明是有效的。未来的研究应扩展当前的训练实践,同时充分报告运动专项训练和比赛中的实际训练负荷以及力量-功率训练方案。
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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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