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Ergonomics|February 1, 1994
Intermittent microclimate cooling during rest increases work capacity and reduces heat stressS H Constable, P A Bishop, S A Nunneley, et al.
American Industrial Hygiene Association Journal|September 1, 1991
Comparisons of air and liquid personal cooling for intermittent heavy work in moderate temperaturesP A Bishop, S A Nunneley, S H Constable
Aviation, Space, and Environmental Medicine|March 1, 1991
Limitations to heavy work at 21 degrees C of personnel wearing the U.S. military chemical defense ensembleP A Bishop, R E Pieroni, J F Smith, et al.
Journal of Applied Physiology|April 1, 1976
Gas exchange in man during combined +Gz acceleration and exerciseS A Nunneley
Medicine and Science in Sports|January 1, 1978
Physiological responses of women to thermal stress: a reviewS A Nunneley
Scandinavian Journal of Work, Environment & Health|January 1, 1989
Heat stress in protective clothing. Interactions among physical and physiological factorsS A Nunneley
American Industrial Hygiene Association Journal|January 1, 1997
A lightweight ambient air-cooling unit for use in hazardous environmentsY T Chen, S H Constable, S H Bomalaski
Aviation, Space, and Environmental Medicine|August 1, 1995
Continuous and intermittent personal microclimate cooling strategiesS H Bomalaski, Y T Chen, S H Constable
Aviation, Space, and Environmental Medicine|September 1, 1981
Heat stress in the A-10 cockpit: flights over desertS A Nunneley, C F Flick
Aviation, Space, and Environmental Medicine|December 1, 1992
Heat stress in protective clothing: validation of a computer model and the heat-humidity index (HHI)M J Antuñano, S A Nunneley
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