首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Effects of metabolic rate on thermal responses at different air velocities in -10 degrees C.
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Effects of metabolic rate on thermal responses at different air velocities in -10 degrees C.

机译:-10°C下不同空气流速下代谢率对热响应的影响。

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The effects of exercise intensity on thermoregulatory responses in cold (-10 degrees C) in a 0.2 (still air, NoWi), 1.0 (Wi1), and 5.0 (Wi5) m x s(-1) wind were studied. Eight young and healthy men, preconditioned in thermoneutral (+20 degrees C) environment for 60 min, walked for 60 min on the treadmill at 2.8 km/h with different combinations of wind and exercise intensity. Exercise level was adjusted by changing the inclination of the treadmill between 0 degrees (lower exercise intensity, metabolic rate 124 W x m(-2), LE) and 6 degrees (higher exercise intensity, metabolic rate 195 W x m(-2), HE). Due to exercise increased heat production and circulatory adjustments, the rectal temperature (T(re)), mean skin temperature (Tsk) and mean body temperature (Tb) were significantly higher at the end of HE in comparison to LE in NoWi and Wi1, and T(re) and Tb also in Wi5. Tsk and Tb were significantly decreased by 5.0 m x s(-1) wind in comparison to NoWi and Wi1. The higher exercise intensity was intense enough to diminish peripheral vasoconstriction and consequently the finger skin temperature was significantly higher at the end of HE in comparison to LE in NoWi and Wi1. Mean heat flux from the skin was unaffected by the exercise intensity. At LE oxygen consumption (VO2) was significantly higher in Wi5 than NoWi and Wi1. Heart rate was unaffected by the wind speed. The results suggest that, with studied exercise intensities, produced without changes in walking speed, the metabolic rate is not so important that it should be taken into consideration in the calculation of wind chill index.
机译:研究了运动强度对0.2(静止空气,NoWi),1.0(Wi1)和5.0(Wi5)m x s(-1)风在寒冷(-10摄氏度)下体温调节反应的影响。八名健康的年轻人在热中性(+20摄氏度)环境中进行了60分钟的预处理,然后以2.8 km / h的跑步速度在跑步机上行走60分钟,风和运动强度的组合不同。通过在0度(较低的运动强度,代谢率124 W xm(-2),LE)和6度(较高的运动强度,代谢率195 W xm(-2),HE)之间改变跑步机的倾斜度来调整运动水平)。由于运动增加了热量的产生和循环调节,HE末期的直肠温度(T(re)),平均皮肤温度(Tsk)和平均体温(Tb)显着高于NoWi和Wi1中的LE, Wi5中的T(re)和Tb也是如此。与NoWi和Wi1相比,Tsk和Tb减小了5.0 m x s(-1)风。较高的运动强度足以减弱外周血管收缩,因此与NoWi和Wi1中的LE相比,HE末期的手指皮肤温度明显更高。来自皮肤的平均热通量不受运动强度的影响。在LE中,Wi5中的氧气消耗量(VO2)明显高于NoWi和Wi1。心率不受风速的影响。结果表明,在研究运动强度的情况下,产生的步行速度没有变化,新陈代谢率并不重要,因此在计算风寒指数时应将其考虑在内。

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