1 |
김경수, 최정화. (2002) 소재에 따른 자외선, 복사열 차단력, 대한가정학회지, 40(10), 77-85
|
2 |
Bain, B., & Vallerand, A. L. (1992). Limb blood flow while wearing aircrew chemical defense ensembles in the heat with and without auxiliary cooling. Aviation, space, and Environmental Medicine. 63(4), 267-272
|
3 |
Chen, Y. T., Constable, S. H., & Bomalaski, S. H. (1997). A light weight ambient air-cooling unit for use in hazardous environments. American Industrial Hygiene Association Journal, 58, 10-14
DOI
ScienceOn
|
4 |
Cohen, J. B., Allan, J. R., & Sowood, P. J. (1989). Effect of head or neck cooling used with a liquid-conditioned vest during simulated aircraft sorties. Aviation, space, and Environmental Medicine, 60, 315-320
|
5 |
Hanson, M. A. (1999). Development of draft British standard : the assessment of heat strain for workers wearing personal protective equipment. The Annals of Occupational Hygiene, 43(5), 309-319
DOI
PUBMED
ScienceOn
|
6 |
Joy, R. J., & Goldman, R. F. (1968). A method of relating physiology and military performance. A study of some effects of vapor barrier clothing in a hot climate. Military Medicine, 133(6), 458-470
|
7 |
Pimental, N. A., Avellini, B. A., & Heaney, J. H. (1992). Ability of passive microclimate cooling vest to reduce thermal strain and increase tolerance time to work in the heat. Proceedings of the fifth international Conference on Environmental Ergonomics. 226
|
8 |
Richardson, G. Cohen, J.B., McPhate, D.C., & Hayes, P.A. (1988). A personal conditioning system based on a liquid-conditioned vest and a thermoelectric supply system. Ergonomics, 31(7), 1041-1047
DOI
ScienceOn
|
9 |
Rodahl, K., & Guthe, T. (1988). Physiological limitations of human performance in hot environments, with particular reference to work in heat-exposed industry. In I.B. Mekjavic et al. (Eds.), Environmental Ergonomics-Sustaining Human Performance in Harsh Environments (pp.34, pp.39). Philadelphia, New York, London: Taylor & Francis
|
10 |
Nag, P. K., Pradhan, C. K., Nag, A., Ashtekar, S. P., & Desai, H. (1998). Efficacy of water-cooled garment for auxiliary body cooling in heat. Ergonomics, 41(2), 177-187
|
11 |
설향 (2001). 인체의 피부냉점 분포에 관한 연구. 서울대학교 생활과학대학원 박사학위 논문
|
12 |
Parsons, K.C. (1988). Protective clothing: heat exchange and physiological objectives. Ergonomics, 31(7), 991-1007
DOI
PUBMED
ScienceOn
|
13 |
최정화, 황경숙. (2002). 냉각복 개발을 위한 효율적 냉각부위 규명에 관한 연구. 한국의류학회지, 26(6), 771-778
과학기술학회마을
ScienceOn
|
14 |
Bishop, P., Ray, P., & Reneau, P. (1995). A review of the ergonomics of work in the US military chemical protective clothing. Int J of Industrial Ergonomics, 15, 271-283
DOI
ScienceOn
|
15 |
Proctor, T.D.(1988). Conditioned clothing: the needs of industry and the wearer. Ergonomics, 31(7), 987-990
DOI
PUBMED
ScienceOn
|
16 |
Featherstone, G. (1988). Development and use of an air-cooled suit for work in nuclear reactor. Ergonomics, 31(7), 1025-1029
DOI
PUBMED
ScienceOn
|
17 |
최정화, 황경숙. (2001). 더운 환경에서의 냉각조끼의 착용효과에 관한 연구. 한국의류학회지, 25(1), 83-90
|
18 |
Nunneley, S. A. (1988). Design and evaluation of clothing for protection from heat stress: An overview. In I.B. Mekjavic et al. (Eds.), Environmental Ergonomics-Sustaining Human Performance in Harsh Environments (pp.88). Philadelphia, New York, London: Taylor & Francis
|
19 |
Strydom. (1971). Wearer related performance standards for conditioned clothing. Ergonomics, 31(70), 1093-1101
DOI
PUBMED
ScienceOn
|
20 |
기상청 기후통계. (2005). 기상청- 자료 검색일 2005,5. 30, 자료출처 http://www.kma.go.kr/kor/weather/climate/climate_06_01.jsp
|
21 |
Epstein, Y, Shapiro, Y, & Brill, S. (1986). Comparison between different auxiliary cooling devices in a severe hot/dry' climate. Ergonomics, 29(1), 41-48
DOI
ScienceOn
|
22 |
김화님, 황근미 (1991). 농촌 여성의 노동 실태 조사(44-10-08), 시험연구보고서. 농촌생활연구소
|
23 |
Frim, J. (1989). Head cooling is desirable but not essential for preventing heat strain in Pilots. Aviation, space, and Environmental Medicine, 60, 1056-1062
|
24 |
Nishihara, N., Tanabe, S., Hayama, H., & Komatsu, M. (2002). A cooling vest for working comfortably in a moderately hot environment. Journal of Physiological. Anthropology and Applied Human Science, 21(1), 75-82
DOI
ScienceOn
|
25 |
Wialliams, C. G., Wyndham, C. H., & Morrison, J. F. (1967). Rate of loss of acclimatization in summer and winter. Journal of Applied Physiology, 22, p.21
|
26 |
Allan, J. R. (1988). The development of personal conditioning in military aviation. Ergonomics, 31(7), 1031-1040
DOI
PUBMED
ScienceOn
|
27 |
Constable, S. H., Bishop, P. A., Nunneley, S. A., & Chen, T. (1994). Intermittent microclimate cooling during rest increases work capacity and reduces heat stress. Ergonomics, 37(2), 277-285
DOI
ScienceOn
|
28 |
ISO 9920. (1995). Ergonomics of the thermal environment-Estimation of the thermal insulation and evaporative resistance of a clothing ensemble. International Organization for standardization, Switzerland
|
29 |
Holmer. (1992). The assessment of heat strain for workers wearing personal protective equipment. The Annals of Occupational Hygiene, 43(5), 309-319
DOI
PUBMED
ScienceOn
|
30 |
ISO 7726. (1995). Thermal environments-Instruments and methods for measuring physical quantities. International Organization for standardization, Switzerland
|
31 |
Minard, D., & Compan, L. (1963). Elevation of body temperature in disease. In J. D. Hardy (Eds), Temperature: Its Measurement and Control in Science and Industry (V 3, part 3, pp.253). New York: Reinhold
|
32 |
Choi, J. W., Kim M. J., & Lee J. Y. (2005). Ergonomic investigation of red pepper harvest workers in Korea: A pilot study for developing personal protective clothing. Applied Ergonormics. (In Press)
|
33 |
Bomalaski, S. H., Chen, Y. T., & Constable, S. H. (1995). Continuous and intermittent personal microclimate. cooling'strategies. Aviat Space Environ Med, 66(8), 745-750
|