在高温条件下间歇性循环运动中,皮肤湿润的风扇半间歇冷却对热反应的影响。

Sports medicine international open Pub Date : 2021-10-25 eCollection Date: 2021-12-01 DOI:10.1055/a-1588-3126
Jumpei Osakabe, Masanobu Kajiki, Kiho Kondo, Takaaki Matsumoto, Yoshihisa Umemura
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引用次数: 3

摘要

本研究探讨了在高温环境下,使用风扇和湿海绵进行间歇冷却对重复短跑运动后半段的生理和知觉反应的影响。8名身体活跃的男性进行了一项熟悉试验和两项实验性试验,分别是2×30-min间歇性自行车运动方案,在炎热条件下(35°C, 50%相对湿度)进行15分钟的高温休息。两项实验按随机顺序进行:风扇润湿皮肤(fan wet)和不冷却皮肤(CON)。在下半场,进行了重复冲刺自行车运动:即。,每分钟最大蹬踏5秒(身体weight×0.075 kp),中间有25秒的空载蹬踏(80转/分)和30秒的休息。直肠温度、皮肤温度(胸部、前臂、大腿和小腿)、心率、生理应变指数、感知运动等级、热感觉和舒适度在FAN潮湿条件下显著改善(在炎热条件下改善一半)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of Half-Time Cooling Using a Fan with Skin Wetting on Thermal Response During Intermittent Cycling Exercise in the Heat.

Effects of Half-Time Cooling Using a Fan with Skin Wetting on Thermal Response During Intermittent Cycling Exercise in the Heat.

Effects of Half-Time Cooling Using a Fan with Skin Wetting on Thermal Response During Intermittent Cycling Exercise in the Heat.

Effects of Half-Time Cooling Using a Fan with Skin Wetting on Thermal Response During Intermittent Cycling Exercise in the Heat.

The present study investigated the effects of half-time (HT) break cooling using a fan and damp sponge on physiological and perceptual responses during the 2 nd half of a repeated-sprint exercise in a hot environment. Eight physically active men performed a familiarization trial and two experimental trials of a 2×30-min intermittent cycling exercise protocol with a 15-min HT break in hot conditions (35°C, 50% relative humidity). Two experimental trials were conducted in random order: skin wetting with a fan (FAN wet ) and no cooling (CON). During the 2 nd half, a repeated-sprint cycling exercise was performed: i. e., 5 s of maximal pedaling (body weight×0.075 kp) every minute, separated by 25 s of unloaded pedaling (80 rpm) and 30 s of rest. Rectal temperature, skin temperature (chest, forearm, thigh, and calf), heart rate, physiological strain index, rating of perceived exertion, thermal sensation, and comfort were significantly improved in the FAN wet condition (P<0.05). There was no significant difference in the repeated-sprint cycling exercise performance between conditions. The results suggest that skin wetting with a fan during the HT break is a practical and effective cooling strategy for mitigating physiological and perceptual strain during the 2 nd half in hot conditions.

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