Environmental Ergonomics Research Centre, Design School, Loughborough University, Loughborough, LE11 3TU, UK,
Eur J Appl Physiol. 2013 Nov;113(11):2723-35. doi: 10.1007/s00421-013-2697-5. Epub 2013 Aug 23.
This study tested the hypothesis that intermittent cooling in air-perfused vests (APV) will not only maintain thermal balance but, due to cyclical activations of cutaneous thermoreceptors, also enhance thermal perceptions.
Ten physically active males completed four conditions where they exercised (walking: 5 km h(-1), 2 % gradient) in a hot environment (~34.0 °C, 50 % RH) for 72 min, followed by a 33-min period of rest. They wore an APV throughout. The four conditions differed in respect to the profile of ambient air that was perfused through the APV: continuous perfusion (CP); intermittent perfusion of 6 min ON/OFF periods (IPonoff); a steady increase and decrease in flow rate in equal increments (IPramp); and an initial step-increase in the flow rate followed by an incremental decrease to zero flow rate (IPtriang). Whole body and torso thermal comfort (TC, TTC), whole body and torso temperature sensation (TS, TTS), whole body and torso skin temperature ([Formula: see text], [Formula: see text]), local relative humidity ([Formula: see text]) and rectal temperature (T re) were measured.
There were no significant differences in T re, absolute whole body and local [Formula: see text], TC, TTC and TS between the cooling profiles. However, TTS was cooler in CP and IPramp than IPonoff and IPtriang. Even though intermittent cooling did not significantly enhance thermal perceptions in CP, a trend existed for TC (P = 0.063) to become less favourable over time.
To reduce the power consumption and extend the battery life of an APV, it is recommended that an intermittent cooling profile should be adopted.
本研究旨在验证以下假设,即空气通风背心(APV)的间歇性冷却不仅能维持热平衡,而且由于皮肤感受器的周期性激活,还能增强热感觉。
10 名活跃的男性在热环境(~34.0°C,50%相对湿度)中以 5km/h 的速度和 2%的坡度进行 72 分钟的运动,随后休息 33 分钟。他们在整个过程中都穿着 APV。四种条件的区别在于通过 APV 输送的环境空气的分布方式:连续灌注(CP);6 分钟开/关周期的间歇性灌注(IPonoff);流量以相等增量稳定增加和减少(IPramp);以及流量初始阶跃增加,然后逐渐减少到零流量(IPtriang)。测量全身和躯干部的热舒适(TC、TTC)、全身和躯干部的温度感觉(TS、TTS)、全身和躯干部皮肤温度([Formula: see text]、[Formula: see text])、局部相对湿度([Formula: see text])和直肠温度(T re)。
在冷却分布中,T re、全身和局部绝对[Formula: see text]、TC、TTC 和 TS 之间没有显著差异。然而,CP 和 IPramp 中的 TTS 比 IPonoff 和 IPtriang 更凉爽。尽管间歇性冷却在 CP 中并没有显著增强热感觉,但 TC(P = 0.063)随着时间的推移变得不太有利的趋势存在。
为了降低 APV 的功耗和延长电池寿命,建议采用间歇性冷却模式。