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首页> 外文期刊>European journal of applied physiology >Effect of a personal ambient ventilation system on physiological strain during heat stress wearing a ballistic vest.
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Effect of a personal ambient ventilation system on physiological strain during heat stress wearing a ballistic vest.

机译:一种人身环境通气系统对戴着弹道背心的热应力期间生理应变的影响。

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摘要

The present study was conducted in order to evaluate whether physiological strain is alleviated by a new personal cooling system (CS) consisting of a layered vest and integrated blower that generate a flow of air. Twelve male volunteers were exposed to climatic conditions of 40 degrees C, 40%RH (40/40), and 35 degrees C, 60%RH (35/60) during a 115 min exercise routine, followed by 70 min resting recovery, while wearing a battle dress uniform (BDU) and a ballistic vest, with (COOL) or without (NOCOOL) CS. The CS was able to attenuate the physiological strain levels during exercise, when compared to identical exposures without the CS. Temperature elevation, (DeltaT (re)) after 100 min of exercise, was lower by 0.26 +/- 0.20 and 0.34 +/- 0.21 degrees C in 40/40 and 35/60, respectively, (p < 0.05). Mean skin temperature [Formula: see text] was lower by 0.9 +/- 0.4 and 0.6 +/- 0.5 degrees C for 40/40 and 35/60, respectively. Heart rate (HR) was not significantly different for COOL versus NOCOOL for 40/40. At 35/60, HR was lower by 10 beats per min (bpm) (p < 0.05). Physiological strain index (PSI) was 9 and 21% lower for the 40/40 and 35/60, respectively, for COOL versus NOCOOL (p < 0.05). Heat storage (S) rates were 19 and 24% lower and sweat rates were 21 and 25% lower for the 40/40 and 35/60, respectively, for COOL versus NOCOOL (p < 0.05). However, the CS was not effective in alleviating physiological strain during resting recovery with no difference in T (re) cooling rate, S, or HR drop rate between groups over resting recovery periods. The CS tested in this study was found to be an effective tool for lowering physiological strain while exercising but not during resting recovery. Therefore, the CS should be further developed in order to achieve greater attenuation of the thermal strain during exercise and improve effectiveness during rest. Overall, it has the potential to be useful for both military and sports personnel.
机译:进行本研究以评估由由分层背心和集成鼓风机组成的新的个人冷却系统(CS)是否通过产生空气流动的新的个人冷却系统(CS)来进行减轻。在115分钟的运动常规期间,十二名男性志愿者暴露于40℃,40%RH(40/40)和35℃,60%RH(35/60)的气候条件,然后进行70分钟的休息恢复穿着战斗礼服统一(BDU)和弹道背心,(酷)或没有(Nocool)CS。与没有CS的相同曝光相比,CS能够在运动期间衰减生理菌株水平。锻炼100分钟后的温度升高(Deltat(RE))分别在40/40和35/60分别较低0.26 +/- 0.20和0.34 +/- 0.21摄氏度(P <0.05)。平均皮肤温度[公式:参见文本]分别低于0.9 +/- 0.4和0.6 +/- 0.5℃,分别为40/40和35/60。对于40/40,心率(HR)对冷却与Nocool没有显着差异。在35/60时,HR每分钟降低10次(BPM)(P <0.05)。 40/40和35/60分别为40/40和35/60的生理菌株指数(PSI)为40/40和35/60,用于冷却与Nocool(P <0.05)。为40/40和35/60分别为40/40和35/60,蓄热率为19且24%,速度降低21%和25%,对于冷却而不是Nocool(P <0.05)。然而,Cs在静恢复期间缓解生理菌株的CS无效,在休息恢复周期上的组之间没有T(RE)冷却速率,S或HR降速度没有差异。发现本研究中测试的CS是一种有效的工具,用于降低生理应变,而在休息恢复过程中。因此,应该进一步开发CS以在运动期间实现热应变的更大衰减,并在休息期间提高效果。总的来说,它有可能对军事和体育人员有用。

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