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首页> 外文期刊>British journal of sports medicine >Core temperature up to 41.5oC during the UCI Road Cycling World Championships in the heat
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Core temperature up to 41.5oC during the UCI Road Cycling World Championships in the heat

机译:核心温度高达41.5oC,在UCI路骑自行车世界锦标赛中的热量

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摘要

To characterise the core temperature response and power output profile of elite male and female cyclists during the 2016 UCI Road World Championships. This may contribute to formulating environmental heat stress policies.Core temperature was recorded via an ingestible capsule in 10, 15 and 15 cyclists during the team time trial (TTT), individual time trial (ITT) and road race (RR), respectively. Power output and heart rate were extracted from individual cycling computers. Ambient conditions in direct sunlight were hot (37°C±3°C) but dry (25%±16% relative humidity), corresponding to a wet-bulb globe temperature of 27°C±2°C.Core temperature increased during all races (p<0.001), reaching higher peak values in TTT (39.8°C±0.9°C) and ITT (39.8°C±0.4°C), relative to RR (39.2°C±0.4°C, p<0.001). The highest temperature recorded was 41.5°C (TTT). Power output was significantly higher during TTT (4.7±0.3?W/kg) and ITT (4.9±0.5?W/kg) than RR (2.7±0.4?W/kg, p<0.001). Heart rate increased during the TTs (p<0.001) while power output decreased (p<0.001).85% of the cyclists participating in the study (ie, 34 of 40) reached a core temperature of at least 39°C with 25% (ie, 10 of 40) exceeding 40°C. Higher core temperatures were reached during the time trials than the RR.
机译:在2016年UCI Road World锦标赛中,以精英男女骑自行车者的核心温度响应和功率输出轮廓。这可能有助于配制环境热应激策略。在团队时间试验(TTT),单个时间试验(ITT)和道路(RR)中,通过10,15和15名骑自行车者中的可摄入胶囊记录核心温度。从单独的循环计算机中提取功率输出和心率。直接阳光下的环境条件热(37°C±3°C),但干燥(相对湿度为25%±16%),对应于湿灯泡全球温度为27°C±2°C。芯温度在全部内容增加比赛(P <0.001),相对于RR(39.2°C±0.4°C,P <0.001),达到TTT(39.8°C±0.9°C)和ITT(39.8°C±0.4°C)的较高峰值。记录的最高温度为41.5°C(TTT)。 TTT(4.7±0.3≤W/ kg)和ITT(4.9±0.5≤W/ kg)显着高于RR(2.7±0.4≤W/ kg,p <0.001)。在TTS(P <0.001)期间心率增加(P <0.001),而功率输出减少(P <0.001).85%参与研究的骑自行车者(即40个中的34个)达到至少39℃的核心温度,25% (即,100个中的10个)超过40℃。在时间试验期间达到较高的核心温度比RR。

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