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Identification of Sling Systems in High Economy and Low Economy Runners.

机译:确定高经济和低经济跑步者的吊索系统。

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摘要

Background and Purpose: Human locomotion requires characteristic muscle activation timing patterns that work in a defined fashion along a kinetic chain. Sling systems are chains of muscles and innervating fascia that facilitate sequential muscle activation patterns during movement. The purpose of this study was to examine four sling systems across a running gait cycle and to determine how they might differ between runners with high and low running economy.;Participants: Twenty-five recreational runners (11M, 14F, height = 1.73 +/- .07 m, mass = 70.3 +/- 11.7 kg, age = 28.6 +/- 5.1 years) completed this study.;Methods: Recreational runners completed a running economy test and were classified as high economy or low economy based on published normative data. On a separate testing day, runners completed overground running trials at a 10-km race pace and slow running pace. Surface electromyography was used to measure muscle activation during run trials for four sling systems: the Posterior Oblique Sling (POS: gluteus maximus and contralateral latissimus dorsi), the Anterior Oblique Sling (AOS: external oblique and contralateral adductors), the Lateral Sling (LAT: gluteus medius, tensor fascia latae (TFL), and contralateral quadratus lumborum (QL)), and the Deep Longitudinal Sling (LONG: tibialis anterior (TA), peroneus longus, biceps femoris (BF), multifidus, and erector spinae (ES)). Mixed-Design ANOVAs were conducted to determine differences among sling systems and between groups in muscle onset time (EMG onset), muscle offset time (EMGoffset), peak amplitude (EMG amp), and time of peak amplitude (EMGpeak). Peak times and amplitudes for the muscles of the AOS could not be established as these muscles displayed nearly constant activation throughout the gait cycle.;Results: Significant main effects were observed in the POS, LONG, and LAT at both the 10-km race pace and slow running pace for EMG onset, EMGoffset, EMGpeak, and EMGamp. Differences between high economy and low economy runners were observed for ES EMGonset Burst 3, ES EMGpeak Burst 3, ES EMG amp Burst 3, BF EMGonset Burst 1, BF EMGpeak Burst 1, BF EMGoffset Burst 2, BF EMGpeak Burst 2, BF EMG peak Burst 3, BF EMGamp Burst 1, and TA EMGpeak at the slow running speed. At the 10-km race pace, differences between high economy and low economy runners were observed for TFL EMGonset Burst 2, QL EMGoffset Burst 1, QL EMGpeak Burst 2, and QL EMGonset Burst 3.;Discussion and Conclusion: Muscles in the POS, LAT, and LONG work in defined sequential and synchronous patterns across the gait cycle with significant variability between high economy and low economy runners.
机译:背景和目的:人类的运动需要特征性的肌肉激活定时模式,这些模式以一定的方式沿动力学链起作用。吊带系统是肌肉和神经筋膜的链条,有助于运动过程中顺序的肌肉激活模式。这项研究的目的是检查整个跑步步态周期中的四个吊带系统,并确定它们在经济性高和低的跑步者之间的差异。参与者:二十五个休闲跑步者(11M,14F,身高= 1.73 + / -.07 m,质量= 70.3 +/- 11.7 kg,年龄= 28.6 +/- 5.1岁);方法:娱乐性跑步者完成了运行经济性测试,并根据已发布的规范分为高经济性或低经济性数据。在另一个测试日,跑步者以10公里的比赛速度和缓慢的跑步速度完成了地面跑步测试。在四个吊带系统的运行试验中,使用表面肌电图来测量肌肉的激活情况:后斜吊带(POS:臀大肌和对侧背阔肌),前斜吊带(AOS:外斜和对侧内收肌),外侧吊带(LAT) :臀中肌,阔筋膜张肌(TFL)和对侧腰rat肌(QL))和深纵索带(长:胫骨前(TA),腓骨长肌,股二头肌(BF),多股腓肠肌和竖脊肌(ES) ))。进行了混合设计方差分析,以确定吊索系统之间以及各组之间的肌肉发作时间(EMG发作),肌肉偏移时间(EMGoffset),峰值幅度(EMG amp)和峰值幅度时间(EMGpeak)之间的差异。无法确定AOS肌肉的峰值时间和振幅,因为这些肌肉在整个步态周期中都显示出几乎恒定的激活状态。以及EMG发作,EMGoffset,EMGpeak和EMGamp的慢跑速度。 ES EMGonset Burst 3,ES EMGpeak Burst 3,ES EMG amp Burst 3,BF EMGonset Burst 1,BF EMGpeak Burst 1,BF EMGoffset Burst 2,BF EMGpeak Burst 2,BF EMG高峰观察到高经济与低经济跑步者之间的差异爆裂3,BF EMGamp爆裂1和TA EMGpeak以慢速运行。在10公里的比赛速度下,TFL EMGonset Burst 2,QL EMGoffset Burst 1,QL EMGpeak Burst 2和QL EMGonset Burst 3发现了高经济和低经济的跑步者之间的差异。讨论与结论:POS中的肌肉, LAT和LONG在整个步态周期中以定义的顺序和同步模式工作,高经济体和低经济体之间存在显着差异。

著录项

  • 作者

    Rendos, Nicole Kristen.;

  • 作者单位

    University of Miami.;

  • 授予单位 University of Miami.;
  • 学科 Kinesiology.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 79 p.
  • 总页数 79
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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