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口服牛磺酸补充对强制对流冷却过程中运动耐受力的生理和体温调节效应。

Physiological and thermoregulatory effects of oral taurine supplementation on exercise tolerance during forced convective cooling.

机构信息

School of Sport, Health and Applied Science, St Mary's University, London, UK.

School of Biomedical Sciences, Newcastle University, Newcastle Upon Tyne, UK.

出版信息

Eur J Sport Sci. 2022 Feb;22(2):209-217. doi: 10.1080/17461391.2020.1858175. Epub 2020 Dec 25.

Abstract

We investigated the effects of taurine supplementation on cycling time to exhaustion in cold conditions. Eleven males cycled to exhaustion at a power output equivalent to the mid-point between ventilatory threshold and maximum aerobic power following 15-min rest in the cold (apparent temperature of ∼ 4°C; air flow of 4.17 m s). Two hours before, participants ingested taurine (50 mg·kg) or placebo beverage. Pulmonary gases, carbohydrate (CHO) and fat oxidation, body temperatures, mean local sweat rate, heart rate, rate of perceived exertion (RPE) and thermal comfort were recorded. Time to exhaustion was not different between trials (taurine = 14.6 ± 4.7 min; placebo = 13.4 ± 5.6 min, = 0.061,  = 0.27). There were no effects ( > 0.05) of taurine on core temperature, mean skin temperature or local sweat rates. However, the placebo condition showed greater ( < 0.05) reductions in arm-to-finger temperature gradient (i.e. vasodilation) across pre-exercise passive cold exposure and increased CHO oxidation ( < 0.05). Participants also reached a thermally 'comfortable' level quicker in the taurine condition ( < 0.05). A 50 mg·kg dose of taurine did not statistically benefit endurance exercise after moderate cold exposure but conferred some potential vascular and metabolic effects.

摘要

我们研究了牛磺酸补充对寒冷条件下自行车耐力的影响。11 名男性在寒冷条件下(约 4°C 的环境温度;4.17m/s 的空气流量)休息 15 分钟后,以相当于呼吸阈和最大有氧能力中点的功率输出进行自行车耐力测试至力竭。在这之前 2 小时,参与者摄入牛磺酸(50mg/kg)或安慰剂饮料。记录了肺气体、碳水化合物(CHO)和脂肪氧化、体温、平均局部出汗率、心率、感知用力程度(RPE)和热舒适度。两次试验的耐力时间没有差异(牛磺酸组=14.6±4.7min;安慰剂组=13.4±5.6min,=0.061,=0.27)。牛磺酸对核心温度、平均皮肤温度或局部出汗率没有影响( > 0.05)。然而,安慰剂条件在预运动被动寒冷暴露期间手臂到手指温度梯度(即血管扩张)的降低和 CHO 氧化的增加( < 0.05)更为明显。参与者在牛磺酸条件下也更快地达到了热舒适水平( < 0.05)。中等寒冷暴露后,50mg/kg 的牛磺酸剂量对耐力运动没有统计学上的益处,但具有一定的血管和代谢作用。

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