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Can perceptual indices estimate physiological strain across a range of environments and metabolic workloads when wearing explosive ordnance disposal and chemical protective clothing?

机译:感知指数能否在穿着爆炸性弹药处理和化学防护服时估算一系列环境和代谢工作量的生理应变?

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摘要

Objective Explosive ordnance disposal (EOD) often requires technicians to wear multiple protective garments in challenging environmental conditions. The accumulative effect of increased metabolic cost coupled with decreased heat dissipation associated with these garments predisposes technicians to high levels of physiological strain. It has been proposed that a perceptual strain index (PeSI) using subjective ratings of thermal sensation and perceived exertion as surrogate measures of core body temperature and heart rate, may provide an accurate estimation of physiological strain. Therefore, this study aimed to determine if the PeSI could estimate the physiological strain index (PSI) across a range of metabolic workloads and environments while wearing heavy EOD and chemical protective clothing. Methods Eleven healthy males wore an EOD and chemical protective ensemble while walking on a treadmill at 2.5, 4 and 5.5 km·h− 1 at 1% grade in environmental conditions equivalent to wet bulb globe temperature (WBGT) 21, 30 and 37 °C. WBGT conditions were randomly presented and a maximum of three randomised treadmill walking trials were completed in a single testing day. Trials were ceased at a maximum of 60-min or until the attainment of termination criteria. A Pearson's correlation coefficient, mixed linear model, absolute agreement and receiver operating characteristic (ROC) curves were used to determine the relationship between the PeSI and PSI. Results A significant moderate relationship between the PeSI and the PSI was observed [r = 0.77; p 0.001; mean difference = 0.8 ± 1.1 a.u. (modified 95% limits of agreement − 1.3 to 3.0)]. The ROC curves indicated that the PeSI had a good predictive power when used with two, single-threshold cut-offs to differentiate between low and high levels of physiological strain (area under curve: PSI three cut-off = 0.936 and seven cut-off = 0.841). Conclusions These findings support the use of the PeSI for monitoring physiological strain while wearing EOD and chemical protective clothing. However, future research is needed to confirm the validity of the PeSI for active EOD technicians operating in the field.
机译:客观的爆炸物处理(EOD)通常要求技术人员在具有挑战性的环境条件下穿着多件防护服。与这些衣服相关的代谢成本增加和热量散发的累积效应使技术人员容易遭受高水平的生理疲劳。已经提出,使用主观的热感觉和感知的劳累作为核心体温和心率的替代量度的感知应变指数(PeSI)可以提供生理应变的准确估计。因此,本研究旨在确定PeSI是否可以在穿着沉重的EOD和化学防护服的同时,在各种代谢工作量和环境中估算生理应变指数(PSI)。方法在相当于湿球温度(WBGT)21、30和37°C的环境条件下,以1%的坡度在2.5、4和5.5 km·h-1的跑步机上行走时,有11名健康男性穿着EOD和化学防护服。随机呈现WBGT条件,并且在一个测试日内最多完成了三个随机跑步机步行试验。在最长60分钟或直到达到终止标准之前,才停止试验。使用皮尔逊相关系数,混合线性模型,绝对一致性和接收器工作特性(ROC)曲线确定PeSI和PSI之间的关系。结果观察到PeSI和PSI之间存在显着的适度关系[r = 0.77; p <0.001;平均差异= 0.8±1.1 a.u. (修改协议的95%限制-1.3到3.0)]。 ROC曲线表明,与两个单阈值临界值结合使用时,PeSI具有良好的预测能力,可区分低和高水平的生理应变(曲线下的区域:PSI的三个临界值= 0.936和七个临界值= 0.841)。结论这些发现支持在使用EOD和化学防护服时使用PeSI监测生理张力。但是,需要进一步的研究来确认PeSI对于在现场工作的现役EOD技术人员的有效性。

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