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Mechanics and energetics of footfall patterns in running.

机译:跑步中脚步模式的力学和能量学。

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摘要

The forefoot (FF) running pattern has been recently advocated to improve running economy and prevent overuse injuries compared to the rearfoot (RF) pattern. However, these claims have not been supported by empirical evidence. The purpose of this dissertation was to investigate the potential advantages of RF and FF patterns to improve running economy and reduce injury risk in 20 natural RF and 20 natural FF runners.;The first study found that the RF group was more economical when performing the RF pattern at a slow, medium, and fast speed vs. FF running. Only running at the fast speed resulted in a difference in economy between footfall patterns in the FF group in which RF running was more economical. Therefore, there is no advantage of FF running for improving running economy.;The results of the second study indicated that there was a weak to moderate relationship between Achilles tendon (AT) moment arm length and running with either RF or FF patterns. AT force was greater during FF running, which may increase the risk of developing tendon injury.;The third study used a modeling approach to find that FF running resulted in greater elastic energy recoil in the gastrocnemius (GA) and the soleus (SO). However, greater mechanical work overall with FF running resulted in no difference in metabolic cost of the GA between footfall patterns but greater metabolic cost of the SO compared to RF running.;The fourth study found that shock attenuation was greater during RF running compared to FF running. Greater shock attenuation during RF running was a result of an increased load imposed on the system. Decomposing the vertical ground reaction force in the frequency domain revealed that RF running may have a greater reliance on passive shock attenuation mechanism whereas the FF pattern may have a greater reliance on active shock attenuation mechanisms.;These results suggest that previous speculation that the FF running pattern is more economical was not substantiated. It is likely that each footfall pattern exposes a runner to different types of injuries, rather than one footfall pattern being more injurious than another.
机译:与后脚(RF)模式相比,最近已提倡前足(FF)跑步模式以改善跑步经济性并防止过度使用伤害。但是,这些主张没有经验证据的支持。本文的目的是研究RF和FF模式在20位自然RF和20位自然FF跑步者中提高跑步经济性并降低受伤风险的潜在优势。首次研究发现,RF组在执行RF时更为经济模式在慢速,中速和快速下与FF运行相比。 FF组中,仅以高速运行才导致经济模式之间的经济差异,其中FF运行更为经济。因此,FF跑步对改善跑步经济性没有好处。;第二项研究的结果表明,跟腱(AT)力矩臂长与采用RF或FF模式跑步之间存在弱到中等的关系。 FF跑步过程中AT力较大,可能会增加肌腱损伤的风险。第三项研究采用一种建模方法发现FF跑步会导致腓肠肌(GA)和比目鱼肌(SO)产生更大的弹性能量回弹。但是,FF跑步的整体机械工作量更大,导致脚步模式之间GA的代谢成本没有差异,但是与RF跑步相比,SO的代谢成本更高;第四项研究发现,与FF相比,RF跑步期间的冲击衰减更大运行。射频运行期间更大的震动衰减是由于系统负载增加所致。分解频域中的垂直地面反作用力表明,RF运行可能对被动冲击衰减机制的依赖更大,而FF模式可能对主动冲击衰减机制的依赖更大;这些结果表明,先前的推测表明FF运行模式更经济没有得到证实。每个脚步模式可能使跑步者遭受不同类型的伤害,而不是一个脚步模式比另一个脚步伤害更大。

著录项

  • 作者

    Gruber, Allison H.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Kinesiology.;Biomechanics.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 370 p.
  • 总页数 370
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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