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Relationship between 800-m Running Performance and Aerobic and Anaerobic Energy Metabolism Capacities in Well-Trained Middle-Distance Runners

机译:训练有素的中长跑运动员800 m跑步成绩与有氧和无氧能量代谢能力之间的关系

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The aim of this study was to elucidate the relationship between the 800-m running performance and aerobic and anaerobic energy metabolism capacities in well-trained middle-distance runners. This study was conducted on 12 male middle-distance runners (age 19.7±0.9 years, height 170.0±4.6 cm, body weight 58.9±3.0 kg, body fat 7.8%±1.2%, 800-m season best time 1′53″2±2″2, and equivalent to an average velocity of 25.4±0.4 km·h~(?1) over 800 m). Participants underwent three running tests on a treadmill to assess aerobic (maximal oxygen uptake , lactate threshold intensity , and running economy ) and anaerobic (maximal accumulated oxygen deficit and maximal accumulation blood lactate concentration ) energy metabolism capacities. The results demonstrated a significantly negative relationship between the 800-m running velocity and RE and MAOD (r =?0.78 and ?0.72, respectively), but not with VO_(2)max, LTI, and ΔbLa (r =?0.16, ?0.17, and 0.11, respectively). Furthermore, this study demonstrated that >70% of the 800-m running velocity could be explained by RE, LTI, and ΔbLa. These results suggest that RE affects the 800-m running performance in well-trained runners.
机译:这项研究的目的是阐明受过良好训练的中长跑运动员800米跑步成绩与有氧和无氧能量代谢能力之间的关系。这项研究是针对12名男性中长跑运动员(年龄19.7±0.9岁,身高170.0±4.6厘米,体重58.9±3.0公斤,体脂7.8%±1.2%,800米季节最佳时间1′53″ 2)进行的。 ±2“ 2,相当于800 m的平均速度为25.4±0.4 km·h〜(?1)。参与者在跑步机上进行了三个运行测试,以评估有氧(最大摄氧量,乳酸阈值强度和运行经济性)和无氧(最大累积氧亏和最大累积血液乳酸浓度)能量代谢能力。结果表明800 m的运行速度与RE和MAOD之间显着负相关(分别为r =?0.78和?0.72),但与VO_(2)max,LTI和ΔbLa( r分别为0.16、0.17和0.11。此外,这项研究表明,RE,LTI和ΔbLa可以解释800-m运行速度的70%以上。这些结果表明,RE影响了训练有素的跑步者800米跑步性能。

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