Osakabe Jumpei, Kajiki Masanobu, Kondo Kiho, Matsumoto Takaaki, Umemura Yoshihisa
Laboratory for Exercise Physiology and Biomechanics, Graduate School of Health and Sport Sciences, Chukyo University, Toyota, Japan.
Department of Nutrition, Faculty of Wellness, Shigakkan University, Obu, Japan.
Sports Med Int Open. 2021 Oct 25;5(3):E91-E98. doi: 10.1055/a-1588-3126. eCollection 2021 Dec.
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 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 ) and no cooling (CON). During the 2 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 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 half in hot conditions.
本研究调查了在炎热环境下,使用风扇和湿海绵进行半场(HT)休息期降温对重复冲刺运动后半程生理和感知反应的影响。八名身体活跃的男性进行了一次适应性试验以及两次实验性试验,试验采用2×30分钟的间歇骑行运动方案,在炎热条件下(35°C,相对湿度50%)有15分钟的HT休息期。两次实验性试验随机进行:用风扇使皮肤湿润(FAN)和不进行降温(CON)。在后半程,进行重复冲刺骑行运动:即每分钟进行5秒的最大蹬踏(体重×0.075kp),中间间隔25秒的无负荷蹬踏(80转/分钟)和30秒的休息。在FAN条件下,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、主观用力感觉评分、热感觉和舒适度均有显著改善(P<0.05)。不同条件下重复冲刺骑行运动表现无显著差异。结果表明,在HT休息期用风扇使皮肤湿润是一种实用且有效的降温策略,可减轻炎热条件下后半程的生理和感知压力。