...
首页> 外文期刊>European journal of sport science: EJSS : official journal of the European College of Sport Science >Altered multi-muscle coordination patterns in habitual forefoot runners during a prolonged, exhaustive run
【24h】

Altered multi-muscle coordination patterns in habitual forefoot runners during a prolonged, exhaustive run

机译:在长时间彻底的运行期间,在习惯性前脚跑步者中改变了多肌肉协调模式

获取原文
获取原文并翻译 | 示例
           

摘要

Introduction: In response to fatigue during an exhaustive treadmill run, forefoot runner's muscles must adapt to maintain their pace. From a neuromuscular control perspective, certain muscles may not be able to sustain the force to meet the run's demands; thus, there may be alternative muscle coordination in the lower extremity that allows for continued running for an extended period of time. The aim of this study was to quantify the change in muscle coordination during a prolonged run in forefoot runners.Methods: Thirteen forefoot runners performed exhaustive treadmill runs (mean duration: 15.42.2min). The muscle coordination of seven lower extremity muscles was quantified using a high-resolution time-frequency analysis together with a pattern recognition algorithm.Results: The mean EMG intensity for the lateral and medial gastrocnemius muscles decreased with the run (p=0.02; 0.06). The weight factors of the second principal pattern decrease by 128.01% by the end of run (p=0.05, Cohen's d=0.42) representing a relatively greater biceps femoris activation in midstance but smaller midstance rectus femoris, vastus medialis, triceps surae, and tibialis anterior activation.Discussion: These results suggest that forefoot runners cannot sustain plantar flexor activation throughout an exhaustive run and change their muscle coordination strategy as a compensation. Understanding the underlying compensation mechanisms humans use to cope with fatigue will help to inform training modalities to enhance these late stage muscle activation strategies for athletes with the goal of improving performance and reducing injury.
机译:简介:在令人遗憾的跑步机运行期间疲劳,ForeooT跑步者的肌肉必须适应保持步伐。从神经肌肉控制的角度来看,某些肌肉可能无法维持符合运行需求的力量;因此,在下肢可能存在替代的肌肉协调,其允许在延长的一段时间内继续运行。本研究的目的是量化在Forefoot Runners的延长次运行期间的肌肉协调的变化。使用高分辨率时频分析与模式识别算法一起定量七个下肢肌肉的肌肉协调。结果:横向和内侧胃肠肌的平均EMG强度随着运行而减少(P = 0.02; 0.06) 。在运行结束时,第二主体图案的重量因子减少了128.01%(p = 0.05,Cohen的d = 0.42),其代表中间缓慢但较小的Midstance直肠雌激酶,Vastus Medialis,Triceps Surae和Tibialis前Activation.discussion:这些结果表明,在整个跑步过程中,前足跑步者不能维持Plantar屈肌激活,并将其肌肉协调策略改为补偿。了解人类用来应对疲劳的潜在薪酬机制将有助于为培训方式提供推进运动员的这些晚期肌肉激活策略,以提高性能和减少伤害。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号