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首页> 外文期刊>Journal of strength and conditioning research >INFLUENCE OF CLOTHING ON THERMOREGULATION AND COMFORT DURING EXERCISE IN THE HEAT
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INFLUENCE OF CLOTHING ON THERMOREGULATION AND COMFORT DURING EXERCISE IN THE HEAT

机译:衣服对热锻炼在热量的热调节和舒适的影响

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摘要

Sport textiles of synthetic fiber have been proposed to have superior properties for keeping wearers cooler, drier, and more comfortable compared with natural fibers. The impact of various fiber content and fabric construction on thermoregulation and perceptual responses are not well understood. Eight male collegiate athletes performed 3 counterbalanced trials of 45-minute treadmill run at 60% of maximal oxygen uptake in an environmental chamber (32 degrees C). Three different fibers, consisting of 100% cotton, a blend of natural fibers (50/50% cotton/soybean), and a synthetic fiber (100% polyester) with mesh loops to facilitate ventilation through the clothing, were tested. Heat strain indices, microenvironment temperature, ratings of perceived exertion (RPE), and clothing comfort were measured. Session RPE (S-RPE) and session thermal sensation (S-TS) were recorded 20 minutes after each trial. There was no effect of clothing on rectal, skin, and body temperatures, heart rate, RPE, or comfort measures (p = 0.05). A significant effect was observed for synthetic fiber compared with cotton on S-RPE (p = 0.03), S-TS (p = 0.04), and the microenvironment temperature at the chest (p = 0.02). No significant difference was shown for any other fibers on S-RPE, S-TS, or other microenvironment areas (p = 0.05). These results show that clothing fiber content and fabric construction had no effect on thermoregulation, RPE, or clothing comfort during moderate-intensity exercise in the heat; whereas synthetic fabric construction indeed effectively reduced regional microenvironment temperature and attenuated global exertion and TS, which may have important implications for exercise tolerance in the heat.
机译:已经提出了合成纤维的体育纺织品,以具有优异的特性,可与天然纤维相比保持佩戴者冷却器,干燥器和更舒适。各种纤维含量和织物结构对热调节和感知反应的影响还不太了解。八位男性大学运动员进行了35分钟跑步机的3个平衡试验,在环境室(32℃)中以最大氧气吸收的60%运行。三种不同的纤维,由100%棉,天然纤维的混合物(50/50%/ 50%棉/大豆)和合成纤维(100%涤纶),与网状环,以便于穿过衣服的通风。测量热应变索引,微环境温度,感知施用(RPE)的额定值和服装舒适性。会议RPE(S-RPE)和会话热敏(S-TS)在每次试验后20分钟记录。直肠,皮肤和身体温度,心率,RPE或舒适度(P> = 0.05)没有衣服的影响。与S-RPE上的棉花(P = 0.03),S-TS(P = 0.04)和胸部的微环境温度相比,合成纤维的显着效果(P = 0.02)。对于S-RPE,S-TS或其他微环境区域的任何其他纤维没有显示任何显着差异(P> = 0.05)。这些结果表明,在热量的温度运动期间,服装纤维含量和织物结构对温度调节,RPE或衣物舒适性没有影响;虽然合成织物结构实际上有效地降低了区域微环境温度并减弱全球劳动,并且TS,这可能对热量耐受耐受性具有重要意义。

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