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大力士运动的生物力学及其应用:一项系统综述。

The Biomechanics and Applications of Strongman Exercises: a Systematic Review.

作者信息

Hindle Benjamin R, Lorimer Anna, Winwood Paul, Keogh Justin W L

机构信息

Faculty of Health Sciences and Medicine, Bond University, Gold Coast, Australia.

Sports Performance Research Institute New Zealand (SPRINZ), AUT Millennium Institute, AUT University, Auckland, New Zealand.

出版信息

Sports Med Open. 2019 Dec 9;5(1):49. doi: 10.1186/s40798-019-0222-z.

Abstract

BACKGROUND

The sport of strongman is becoming increasingly popular, catering for females, lightweight, and Masters competitors, with strongman exercises also being used by strength and conditioning coaches for a range of athletic groups. Thus, a systematic review was conducted to examine researchers' current understanding of the biomechanics of strongman exercises, with a view to improve strongman athlete performance, provide biomechanical evidence supporting the transferability of strongman exercises to strength and conditioning/rehabilitation programs, and identify gaps in the current knowledge of the biomechanics of strongman exercises.

METHODS

A two-level search term strategy was used to search five databases for studies relevant to strongman exercises and biomechanics.

RESULTS

Eleven articles adherent to the inclusion criteria were returned from the search. The studies provided preliminary biomechanical analysis of various strongman exercises including the key biomechanical performance determinants of the farmer's walk, heavy sled pull, and tire flip. Higher performing athletes in the farmer's walk and heavy sled pull were characterized by a greater stride length and stride rate and reduced ground contact time, while higher performing athletes in the tire flip were characterized by a reduced second pull phase time when compared with lower performing athletes. Qualitative comparison of carrying/walking, pulling and static lifting strongman, traditional weight training exercises (TWTE), and common everyday activities (CEA), like loaded carriage and resisted sprinting, were discussed to further researchers' understanding of the determinants of various strongman exercises and their applications to strength and conditioning practice. A lack of basic quantitative biomechanical data of the yoke walk, unilateral load carriage, vehicle pull, atlas stone lift and tire flip, and biomechanical performance determinants of the log lift were identified.

CONCLUSIONS

This review has demonstrated the likely applicability and benefit of current and future strongman exercise biomechanics research to strongman athletes and coaches, strength and conditioning coaches considering using strongman exercises in a training program, and tactical operators (e.g., military, army) and other manual labor occupations. Future research may provide a greater understanding of the biomechanical determinants of performance, potential training adaptations, and risks expected when performing and/or incorporating strongman exercises into strength and conditioning or injury rehabilitation programs.

摘要

背景

大力士运动越来越受欢迎,吸引了女性、轻量级选手和大师级选手参与,力量与体能教练也将大力士训练用于各类运动员群体。因此,开展了一项系统综述,以考察研究人员目前对大力士训练生物力学的理解,旨在提高大力士运动员的表现,提供生物力学证据支持将大力士训练应用于力量与体能训练/康复项目,并找出当前大力士训练生物力学知识中的空白。

方法

采用两级搜索词策略在五个数据库中搜索与大力士训练和生物力学相关的研究。

结果

搜索返回了11篇符合纳入标准的文章。这些研究对各种大力士训练进行了初步生物力学分析,包括农夫行走、重型雪橇拉动和轮胎翻转的关键生物力学性能决定因素。在农夫行走和重型雪橇拉动中表现较好的运动员的特点是步幅更大、步频更高且地面接触时间缩短,而在轮胎翻转中表现较好的运动员与表现较差的运动员相比,第二拉动阶段时间缩短。讨论了搬运/行走、拉动和静态举重类大力士训练与传统重量训练练习(TWTE)以及常见日常活动(CEA)(如负重行走和阻力冲刺)的定性比较,以加深研究人员对各种大力士训练决定因素及其在力量与体能训练实践中的应用的理解。研究发现缺少轭架行走、单侧负重行走、车辆拉动、石担推举和轮胎翻转的基本定量生物力学数据,以及圆木举重的生物力学性能决定因素。

结论

本综述表明,当前和未来的大力士训练生物力学研究可能对大力士运动员和教练、考虑在训练计划中使用大力士训练的力量与体能教练,以及战术操作人员(如军事人员、陆军)和其他体力劳动者职业具有适用性和益处。未来的研究可能会让人们更深入地了解表现的生物力学决定因素、潜在的训练适应性,以及在进行大力士训练和/或将其纳入力量与体能训练或损伤康复项目时预期的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5dcf/6901656/653174b02518/40798_2019_222_Fig1_HTML.jpg

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