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首页> 外文期刊>European journal of applied physiology >Influence of the world's most challenging mountain ultra-marathon on energy cost and running mechanics
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Influence of the world's most challenging mountain ultra-marathon on energy cost and running mechanics

机译:世界上最具挑战性的山区超级马拉松对能源成本和运行机制的影响

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Purpose: To examine the effects of the world's most challenging mountain ultra-marathon (Tor des Géants? 2012) on the energy cost of three types of locomotion (cycling, level and uphill running) and running kinematics. Methods: Before (pre-) and immediately after (post-) the competition, a group of ten male experienced ultra-marathon runners performed in random order three submaximal 4-min exercise trials: cycling at a power of 1.5 W kg-1 body mass; level running at 9 km h-1 and uphill running at 6 km h-1 at an inclination of +15 % on a motorized treadmill. Two video cameras recorded running mechanics at different sampling rates. Results: Between pre- and post-, the uphill-running energy cost decreased by 13.8 % (P = 0.004); no change was noted in the energy cost of level running or cycling (NS). There was an increase in contact time (+10.3 %, P = 0.019) and duty factor (+8.1 %, P = 0.001) and a decrease in swing time (-6.4 %, P = 0.008) in the uphill-running condition. Conclusion: After this extreme mountain ultra-marathon, the subjects modified only their uphill-running patterns for a more economical step mechanics.
机译:目的:研究世界上最具挑战性的山区超级马拉松(Tor desGéants?2012)对三种运动(骑自行车,水平和上坡跑步)和运动学的能量消耗的影响。方法:比赛前(赛前)和比赛后(赛后),一组十名经验丰富的男性超马拉松运动员以随机顺序进行了三个次最大的4分钟运动试验:以1.5 W kg-1的力量骑自行车质量在电动跑步机上,水平跑步速度为9 km h-1,上坡跑步速度为6 km h-1。两台摄像机以不同的采样率记录了运行情况。结果:在运行前后,上坡运行的能源成本降低了13.8%(P = 0.004);液位运行或循环(NS)的能源成本未发现变化。在上坡行驶条件下,接触时间增加了(+10.3%,P = 0.019)和占空因数(+8.1%,P = 0.001),摆动时间减少了(-6.4%,P = 0.008)。结论:在这场极端的山地超级马拉松赛之后,受试者仅修改了他们的上坡跑步模式,从而获得了更为经济的踏板力学。

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