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Torso undergarments: their merit for clothed and armored individuals in hot-dry conditions.

作者信息

Van den Heuvel Anne M J, Kerry Pete, Van der Velde Jeroen H P M, Patterson Mark J, Taylor Nigel A S

机构信息

Centre for Human and Applied Physiology, School of Health Sciences, University of Wollongong, Wollongong, New South Wales, Australia.

出版信息

Aviat Space Environ Med. 2010 Dec;81(12):1107-13. doi: 10.3357/asem.2854.2010.

DOI:10.3357/asem.2854.2010
PMID:21197855
Abstract

INTRODUCTION

The aim of this study was to evaluate how the textile composition of torso undergarment fabrics may impact upon thermal strain, moisture transfer, and the thermal and clothing comfort of fully clothed, armored individuals working in a hot-dry environment (41.2 degrees C and 29.8% relative humidity).

METHODS

Five undergarment configurations were assessed using eight men who walked for 120 min (4 km x h(-1)), then alternated running (2 min at 10 km x h(-1)) and walking (2 min at 4 km x h(-1)) for 20 min. Trials differed only in the torso undergarments worn: no t-shirt (Ensemble A); 100% cotton t-shirt (Ensemble B); 100% woolen t-shirt (Ensemble C); synthetic t-shirt (Ensemble D: nylon, polyethylene, elastane); hybrid shirt (Ensemble E).

RESULTS

Thermal and cardiovascular strain progressively increased throughout each trial, with the average terminal core temperature being 38.5 degrees C and heart rate peaking at 170 bpm across all trials. However, no significant between-trial separations were evident for core or mean skin temperatures, or for heart rate, sweat production, evaporation, the within-ensemble water vapor pressures, or for thermal or clothing discomfort.

CONCLUSION

Thus, under these conditions, neither the t-shirt textile compositions, nor the presence or absence of an undergarment, offered any significant thermal, central cardiac, or comfort advantages. Furthermore, there was no evidence that any of these fabrics created a significantly drier microclimate next to the skin.

摘要

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