后院跑步:挑战人类表现的极限。

Kevin De Pauw, T. Ampe, Y. L. Arenales Arauz, X. Galloo, L. Buyse, M. Olieslagers, T. Demuyser, H. Corlùy, S. Lamarti, S. Provyn, A. M. Jones, R. Meeusen, B. Roelands
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引用次数: 0

摘要

超长跑越来越受欢迎,但目前还没有关于在后院超长跑活动中生理和心理反应的信息。本研究旨在确定在后院超长跑活动中认知功能、生理恢复力指标和跑步表现的变化。研究人员对 12 名男性超长跑运动员(38 ± 8 岁,BMI:23.5 ± 1.6 kg/m2,VO2max:60.8 ± 4.7 mL/min/kg)进行了赛前、赛中和赛后监测。在赛前、赛中和赛后,使用认知测试组合测定了认知能力。在比赛过程中,对感知用力值(RPE)、血液乳酸浓度和心率(HR)进行了评估。通过完成的总圈数和每圈的跑步速度来考察运动员的体能表现。运动员完成了 34±17 圈,总长度为 227.8±113.9 公里,平均速度从 9.0 公里/小时开始,到比赛结束时降至 7.5 公里/小时。不同运动员的生理恢复能力(根据心率/速度估算)各不相同,在比赛结束时,后院跑能力较强的运动员的恢复能力值明显较低(p < 0.05)。心率和乳酸水平保持不变,而 RPE 则逐渐增加(p ≤ 0.001)。与基线测量值相比,事件发生后几项认知任务的反应时间明显缩短(p ≤ 0.05)。这些观察结果表明,生理恢复能力因运动员的耐力水平而异。此外,后院超长跑活动对精神运动速度产生了负面影响。因此,研究结果表明,实施提高生理恢复力和/或心理运动速度的策略可能会对超耐力活动中的表现产生积极影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Backyard running: Pushing the boundaries of human performance

Backyard running: Pushing the boundaries of human performance

Ultrarunning is gaining in popularity but no information is available on the physiological and psychological responses during backyard ultrarunning events. The aim of this study was to determine changes in cognitive function, markers of physiological resilience, and running performance during a backyard-running event. Twelve male ultrarunners (38 ± 8 years old, BMI: 23.5 ± 1.6 kg/m2, and VO2max: 60.8 ± 4.7 mL/min/kg) were monitored before, during, and after the event. Cognitive performance was determined using a cognitive test battery before, during, and after the event. During the event, the rating of perceived exertion (RPE), blood lactate concentration, and heart rate (HR) were assessed. Physical performance was investigated using the total number of completed laps and running speed per lap. Athletes completed 34 ± 17 laps equaling 227.8 ± 113.9 km with average speeds starting at 9.0 km/h and slowing down to 7.5 km/h at the end of the event. Physiological resilience (estimated using HR/speed) varied between athletes, with significantly lower values in the more proficient backyard runners at the end of the event (p < 0.05). HR and lactate levels remained constant, whereas a progressive increase in RPE was noticed (p ≤ 0.001). A significantly worsened reaction time was observed for several cognitive tasks after the event compared to baseline measures (p ≤ 0.05). These observations show that physiological resilience differs depending on the level of endurance performance of the athletes. Furthermore, the backyard ultrarunning event negatively impacted psychomotor speed. Therefore, the results suggest that implementing strategies that enhance physiological resilience and/or psychomotor speed could potentially have a positive effect on performance in ultraendurance activities.

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