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STRIDE ANGLE AS A NOVEL INDICATOR OF RUNNING ECONOMY IN WELL-TRAINED RUNNERS

机译:步幅角度是经过良好训练的跑步者的最新经济运行指标

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Santos-Concejero, J, Tam, N, Granados, C, Irazusta, J, Bidaurrazaga-Letona, I, Zabala-Lili, J, and Gil, SM. Stride angle as a novel indicator of running economy in well-trained runners. J Strength Cond Res 28(7): 1889-1895, 2014-The main purpose of this study was to investigate the relationship between a novel biomechanical variable, the stride angle, and running economy (RE) in a homogeneous group of long-distance athletes. Twenty-five well-trained male runners completed 4-minute running stages on a treadmill at different set velocities. During the test, biomechanical variables such as stride angle, swing time, ground contact time, stride length, stride frequency, and the different sub-phases of ground contact were recorded using an optical measurement system. VO2 values at velocities below the lactate threshold were measured to calculate RE. Stride angle was negatively correlated with RE at every speed (p<0.001, large effect sizes). Running economy was also negatively correlated with swing phase and positively correlated with ground contact time and running performance according to the best 10-km race time (p <= 0.05, moderate and large effect sizes). Last, stride angle was correlated with ground contact time at every speed (p<0.001, large effect sizes). In conclusion, it seems that optimal execution of stride angle allows runners to minimize contact time during ground contact, whereby facilitating a better RE. Coaches and/or athletes may find stride angle a useful and easily obtainable measure to track and make alterations to running technique, because changes in stride angle may influence the energy cost of running and lead to improved performance.
机译:Santos-Concejero,J,Tam,N,Granados,C,Irazusta,J,Bidaurrazaga-Letona,I,Zabala-Lili,J和Gil,SM。步幅角是受过良好训练的跑步者跑步经济性的新指标。 J Strength Cond Res 28(7):1889-1895,2014-本研究的主要目的是研究同质长距离组中新型生物力学变量,步幅角和行驶经济性(RE)之间的关系。运动员。 25名训练有素的男运动员在跑步机上以不同的设定速度完成了4分钟的跑步阶段。在测试过程中,使用光学测量系统记录了生物力学变量,例如步幅角,摆动时间,地面接触时间,步幅长度,步幅频率以及地面接触的不同子阶段。测量低于乳酸阈值的速度下的VO2值以计算RE。在每种速度下步幅角均与RE呈负相关(p <0.001,较大的效应值)。根据最佳的10公里比赛时间,奔跑经济性也与挥杆阶段成负相关,与地面接触时间和奔跑性能成正相关(p <= 0.05,中等和较大影响范围)。最后,步速角与每种速度下的地面接触时间相关(p <0.001,较大的效应尺寸)。总而言之,似乎最佳的步距角执行方式可使跑步者将地面接触期间的接触时间减至最少,从而有助于获得更好的RE。教练和/或运动员可能会发现步幅角是跟踪和更改跑步技术的有用且容易获得的措施,因为步幅角的变化可能会影响跑步的能量成本并导致性能提高。

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