高温下运动对日本和马来西亚男性体温调节的影响。

Mohamed Saat, Yutaka Tochihara, Nobuko Hashiguchi, Roland Gamini Sirisinghe, Mizuho Fujita, Chin Mei Chou
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引用次数: 56

摘要

研究了高温下低强度运动对温带和热带受试者在水分不足和充足状态下的体温调节和某些生化变化的影响。两组VO2max匹配的受试者分别为8名日本人(JS)和8名马来西亚人(MS),在两种情况下参与了本研究:低水合(不给水)和高水合(在运动开始时和运动第15、35和55分钟时提供3 mL × Kg(-1)体重的水)。两国的实验室内均调整为恒定水平(Ta: 31.6+/-0.03℃,rh: 72.3+/-0.13%)。受试者最初休息10分钟,以40%最大摄氧量骑车60分钟,然后在实验室内恢复40分钟。在测试过程中记录直肠温度(Tre)、皮肤温度(Tsk)、心率(HR)、热激活汗腺密度(HASG)、局部出汗率(M sw-back)和脱水百分比。分析血液样本的血浆葡萄糖和乳酸水平。JS组脱水程度(1.43+/-0.08%)明显高于MS组(1.15+/-0.05%)。运动时,JS组的sw-back明显高于水分充足的MS组。休息和恢复时,JS患者的HASG明显高于MS。在MS测试中,Tre较高。从运动的第5分钟开始,直到恢复期结束,MS的Tsk明显高于JS。综上所述,在休息、锻炼和恢复期间,热带地区的人有较低的M - sw-back,与较高的Tsk和Tre相关。然而,温带原生植物在高温环境下具有较高的M - sw-back和较低的Tsk和Tre。这种现象发生在低强度运动的缺水和缺水状态下。M - sw-back、Tsk和Tre的差异可能是由于被动热暴露过程中核心温度较高和干热损失增强所致。
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Effects of exercise in the heat on thermoregulation of Japanese and Malaysian males.

The effect of low-intensity exercise in the heat on thermoregulation and certain biochemical changes in temperate and tropical subjects under poorly and well-hydrated states was examined. Two VO2max matched groups of subjects consisting of 8 Japanese (JS) and 8 Malaysians (MS) participated in this study under two conditions: poorly-hydrated (no water was given) and well-hydrated (3 mL x Kg(-1) body weight of water was provided at onset of exercise, and the 15th, 35th and 55th min of exercise). The experimental room in both countries was adjusted to a constant level (Ta: 31.6+/-0.03 degrees C, rh: 72.3+/-0.13%). Subjects spent an initial 10 min rest, 60 min of cycling at 40% VO2max and then 40 min recovery in the experimental room. Rectal temperatures (Tre) skin temperatures (Tsk), heart rate (HR), heat-activated sweat glands density (HASG), local sweat rate (M sw-back) and percent dehydration were recorded during the test. Blood samples were analysed for plasma glucose and lactate levels.The extent of dehydration was significantly higher in the combined groups of JS (1.43+/-0.08%) compared to MS (1.15+/-0.05%). During exercise M sw-back was significantly higher in JS compared to MS in the well-hydrated condition. The HASG was significantly more in JS compared to MS at rest and recovery. Tre was higher in MS during the test. Tsk was significantly higher starting at the 5th min of exercise until the end of the recovery period in MS compared to JS. In conclusion, tropical natives have lower M sw-back associated with higher Tsk and Tre during the rest, exercise and recovery periods. However, temperate natives have higher M sw-back and lower Tsk and Tre during experiments in a hot environment. This phenomenon occurs in both poorly-hydrated and well-hydrated states with low intensity exercise. The differences in M sw-back, Tsk and Tre are probably due to a setting of the core temperature at a higher level and enhancement of dry heat loss, which occurred during passive heat exposure.

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