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The influence of deformation on barbell mechanics during the clean pull

机译:清洁拉力过程中变形对杠铃力学的影响

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摘要

For simplicity of biomechanical analyses, the weightlifting barbell is typically modelled as a rigid, non-deformable object. Most coaches and weightlifters, however, are aware of the elastic nature of the barbell, and its influence on the successful completion of lifting attempts. Variables such as velocity, work performed, and power output are indicators of the quality of performance during the snatch, clean, and related weightlifting pulling movements. The aim of this study was to establish whether differences exist in determining these biomechanical parameters when the centre of the barbell is analysed compared with each end of the barbell. Nine men performed three maximal-effort repetitions in the clean pull exercise at 85% of their self-reported single repetition maximum (1-RM) clean (90-155 kg) using a barbell instrumented for mechanical analysis. Results indicated that peak barbell speed was 5-30% (P < 0.05) lower for the centre of the barbell than the ends. Although differences (P < 0.05) in kinetic and potential energy were found between the centre and ends of the bar, differences between total work performed were small ( < 6%; P < 0.05) and no differences were observed for average power (P > 0.05). Although approximately the same work and power occur for the centre and ends of the barbell, they manifest as different kinematics as a result of the elastic nature of the equipment. The elastic characteristics should be considered when selecting instrumentation and variables for research involving barbells. Coaches should be aware of the elasticity of barbells, including selecting appropriate viewing angles as well as understanding how deformation may affect the ends of the barbell relative to the centre.
机译:为了简化生物力学分析,通常将举重杠铃建模为刚性的,不可变形的物体。但是,大多数教练和举重运动员都知道杠铃的弹性,及其对举重成功完成的影响。速度,执行的功和动力输出等变量是抓举,清洁和相关的举重牵引运动过程中性能质量的指标。这项研究的目的是确定在分析杠铃的中心与杠铃的两端时,在确定这些生物力学参数时是否存在差异。九名男子使用杠铃进行机械分析,在无氧拉举练习中进行了三次最大努力重复,其自我报告的单次最大重复运动(1-RM)最大无障碍运动(90-155 kg)的85%。结果表明,杠铃中心的峰值杠铃速度比两端降低了5-30%(P <0.05)。尽管在棒的中心和末端之间发现了动能和势能的差异(P <0.05),但是所执行的总功之间的差异很小(<6%; P <0.05),并且平均功率没有差异(P> 0.05)。尽管杠铃的中央和末端大约具有相同的功和功率,但由于设备的弹性,它们表现出不同的运动学。选择用于杠铃研究的仪器和变量时,应考虑弹性特性。教练应意识到杠铃的弹性,包括选择合适的视角以及了解变形如何影响杠铃相对于中心的末端。

著录项

  • 来源
    《Sports Biomechanics》 |2008年第2期|260-273|共14页
  • 作者单位

    Musculoskeletal Biomechanics Research Laboratory, University of Southern California, Los Angeles, California;

    Human Performance Laboratories, The University of Memphis, Memphis, Tennessee;

    Department of Health, Sport and Exercise Sciences, The University of Kansas, Lawrence, Kansas, USA;

    Musculoskeletal Biomechanics Research Laboratory, University of Southern California, Los Angeles, California;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Power; two-dimensional motion analysis; weightlifting;

    机译:功率;二维运动分析;举重;

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