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首页> 外文期刊>Journal of sports sciences. >The effect of pre-cooling intensity on cooling efficiency and exercise performance.
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The effect of pre-cooling intensity on cooling efficiency and exercise performance.

机译:预冷强度对冷却效率和运动表现的影响。

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摘要

Although pre-cooling is known to enhance exercise performance, the optimal cooling intensity is unknown. We hypothesized that mild cooling opposed to strong cooling circumvents skin vasoconstriction and thermogenesis, and thus improves cooling efficiency reflected in improved time to exhaustion. Eight males undertook three randomized trials, consisting of a pre-cooling and an exercise session. During the pre-cooling, performed in a room of 24.6 +/- 0.4 degrees C and 24 +/- 6% relative humidity, participants received either 45 min of mild cooling using an evaporative cooling shirt or strong cooling using an ice-vest. A no-cooling condition was added as a control. Subsequent cycling exercise was performed at 65%[Vdot]O(2peak) in a climatic chamber of 29.3 +/- 0.2 degrees C and 80 +/- 3% relative humidity. During the pre-cooling session, mild and strong cooling decreased the skin blood flow compared with the control. However, no differences were observed between mild and strong cooling. No thermogenesis was observed in any conditions investigated. The reduction of body heat content after pre-cooling was two times larger with strong cooling (39.5 +/- 8.4 W . m(-2)) than mild cooling (21.2 +/- 5.1 W . m(-2)). This resulted in the greatest improvement in time to exhaustion with strong cooling. We conclude that the cooling intensities investigated had a similar effect on cooling efficiency (vasoconstriction and thermogenesis) and that the improved performance after strong cooling is attributable to the greater decrease in body heat content.
机译:尽管已知预冷却可增强运动表现,但最佳冷却强度尚不清楚。我们假设,与强力冷却相反,轻度冷却可避免皮肤血管收缩和生热作用,从而提高了冷却效率,这体现在疲劳时间的改善上。八名男性进行了三项随机试验,包括预冷和锻炼。在24.6 +/- 0.4摄氏度和24 +/- 6%相对湿度的房间中进行的预冷却过程中,参与者可以使用蒸发式冷却衬衫进行45分钟的温和冷却,或者使用冰背心进行强冷却。添加无冷却条件作为对照。随后的自行车运动是在29.3 +/- 0.2℃和80 +/- 3%相对湿度的气候室内以65%V(2峰值)进行的。在预冷期间,与对照组相比,轻度和强冷会降低皮肤的血流量。但是,在温和强冷却之间没有观察到差异。在所研究的任何条件下均未观察到生热作用。在强冷(39.5 +/- 8.4 W. m(-2))下,预冷后人体热量的减少是轻度冷却(21.2 +/- 5.1 W. m(-2))的两倍。在强力冷却的情况下,最大程度地缩短了排气时间。我们得出结论,研究的冷却强度对冷却效率(血管收缩和生热)有相似的影响,强冷却后性能的改善归因于体内热量的减少。

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