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Changes in Energy Cost and Total External Work of Muscles in Elite Race Walkers Walking at Different Speeds

机译:以不同速度行走的优秀竞走者的能量成本和肌肉总外部功的变化

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The aim of the study was to assess energy cost and total external work (total energy) depending on the speed of race walking. Another objective was to determine the contribution of external work to total energy cost of walking at technical, threshold and racing speed in elite competitive race walkers. The study involved 12 competitive race walkers aged years with 6 to 20 years of experience, who achieved a national or international sports level. Their aerobic endurance was determined by means of a direct method involving an incremental exercise test on the treadmill. The participants performed three tests walking each time with one of the three speeds according to the same protocol: an 8-minute walk with at steady speed was followed by a recovery phase until the oxygen debt was repaid. To measure exercise energy cost, an indirect method based on the volume of oxygen uptake was employed. The gait of the participants was recorded using the 3D Vicon opto-electronic motion capture system. Values of changes in potential energy and total kinetic energy in a gate cycle were determined based on vertical displacements of the centre of mass. Changes in mechanical energy amounted to the value of total external work of muscles needed to accelerate and lift the centre of mass during a normalised gait cycle. The values of average energy cost and of total external work standardised to body mass and distance covered calculated for technical speed, threshold and racing speeds turned out to be statistically significant . The total energy cost ranged from 51.2 kJ.m-1 during walking at technical speed to 78.3 kJ.m-1 during walking at a racing speed. Regardless of the type of speed, the total external work of muscles accounted for around 25% of total energy cost in race walking. Total external work mainly increased because of changes in the resultant kinetic energy of the centre of mass movement.
机译:该研究的目的是根据竞速的速度来评估能源成本和总的外部工作(总能源)。另一个目标是确定精英竞争竞走者以技术,门槛和竞速行驶时外部工作对步行总能量成本的贡献。这项研究涉及12位具有6至20年经验的具有竞争力的步行助行器,他们达到了国家或国际运动水平。他们的有氧耐力是通过直接方法进行的,包括在跑步机上进行增量运动测试。参与者按照相同的规程,每次以三种速度中的一种进行了三项测试:以稳定的速度进行八分钟的步行,之后是恢复阶段,直到偿还了氧气欠款。为了测量运动能量成本,采用了一种基于氧气吸收量的间接方法。使用3D Vicon光电运动捕捉系统记录参与者的步态。基于质心的垂直位移来确定浇口循环中势能和总动能的变化值。机械能的变化等于在正常步态周期中加速和提升质心所需的肌肉总外部功的价值。事实证明,根据技术速度,阈值和赛车速度计算出的平均能量成本值和根据车身质量和所覆盖距离标准化的总体外部工作的值具有统计学意义。总能量成本从技术速度步行时的51.2 kJ.m-1到赛车速度步行时的78.3 kJ.m-1。不论速度的类型如何,肌肉的总外部工作量约占比赛步行总能量消耗的25%。总的外部功主要是由于质心运动中心产生的动能变化而增加的。

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