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首页> 外文期刊>European Journal of Applied Physiology >Efficacy of body ventilation system for reducing strain in warm and hot climates
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Efficacy of body ventilation system for reducing strain in warm and hot climates

机译:人体通风系统在温暖和炎热的气候下减少劳损的功效

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摘要

This study determined whether a torso-vest forced ambient air body ventilation system (BVS) reduced physiological strain during exercise-heat stress. Seven heat-acclimated volunteers attempted nine, 2-h treadmill walks at 200 W m?2 in three environments, ?40°C, 20% rh (HD), 35°C, 75% rh (HW), and 30°C, 50% rh, (WW) wearing the Army Combat Uniform, interceptor body armor (IBA) and Kevlar helmet. Three trials in each environment were BVS turned on (BVSOn), BVS turned off (BVSOff), and no BVS (IBA). In HD, BVSOn significantly lowered core temperature (T re), heart rate (HR), mean skin temperature (T sk), mean torso skin temperature (T torso), thermal sensation (TS), heat storage (S), and physiological strain index (PSI), versus BVSOff and IBA (P < 0.05). For HW (n = 6), analyses were possible only through 60 min. Exercise tolerance time (min) during HW was significantly longer for BVSOn (116 ± 10 min) versus BVSOff (95 ± 22 min) and IBA (96 ± 18 min) (P < 0.05). During HW, BVSOn lowered HR at 60 min versus IBA, T sk from 30 to 60 min versus BVSOff and IBA, and PSI from 45 to 60 min versus BVSOff and at 60 min versus IBA (P < 0.05). BVSOn changes in T re and HR were lower in HD and HW. During WW, BVSOn significantly lowered HR, T sk, and T torso versus BVSOff and IBA (P < 0.05) during late exercise. Sweating rates were significantly lower for BVSOn versus BVSOff and IBA in both HD and WW (P < 0.05), but not HW. These results indicate that BVSOn reduces physiological strain in all three environments by a similar amount; however, in hot-dry conditions the BVSOff increases physiological strain.
机译:这项研究确定了躯干式强迫环境空气通风系统(BVS)在运动热应激过程中是否降低了生理张力。七名经过热适应训练的志愿者尝试在200°C,20%rh(HD),35°C,75%Rh(HW),以及在30°C,50%rh(WW)的情况下穿着陆军作战服,拦截器防弹衣(IBA)和凯夫拉尔头盔。每个环境中的三个试验分别是:打开BVS(BVSOn ),关闭BVS(BVSOff )和不使用BVS(IBA)。在高清中,BVSOn 会显着降低核心温度(T re ),心率(HR),平均皮肤温度(T sk ),平均躯干皮肤温度(T tosso ),热感(TS),储热(S)和生理应变指数(PSI),相对于BVSOff 和IBA(P <0.05)。对于硬件(n = 6),只能在60分钟内进行分析。 BVSOn (116±10分钟)相对于BVSOff (95±22分钟)和IBA(96±18分钟),HW期间的运动耐力时间(min)明显更长(P <0.05)。在硬件操作期间,BVSOn 与IBA相比在60分钟时的心率降低,与BVSOff 和IBA相比,T sk 从30分钟降低至60分钟,而BVSOff 和与IBA相比在60分钟时(P <0.05)。 HD和HW中T re 和HR的BVSOn 变化较低。在WW期间,BVSOn 与BVSOff 和IBA相比,在后期运动中显着降低了HR,T sk 和T躯干和PBA(P <0.05)。 HD和WW的BVSOn 和IBA的出汗率均显着低于BVSOff 和PBA(P <0.05),但HW则没有。这些结果表明,BVSOn 在所有三个环境中均减少了相似的生理压力;然而,在干热条件下,BVSOff 会增加生理张力。

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