Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/44057
Title: Effects of fabrics with dynamic moisture transfer properties on skin temperature in females during exercise and recovery
Authors: Lin, X
Li, Y 
Zhou, J
Cao, X
Hu, J 
Guo, Y
Sun, S
Lv, R
Lin, Y
Ye, Q
Leung, H 
Keywords: Breast skin temperature
Fabrics with dynamic moisture transfer properties
Sports bra
Thermoregulation
Issue Date: 2015
Publisher: SAGE Publications
Source: Textile research journal, 2015, v. 85, no. 19, p. 2030-2039 How to cite?
Journal: Textile research journal 
Abstract: Based on the physiological nature of breast movement in exercising females, a sports bra made of fabric with dynamic moisture transfer properties was developed to improve female thermal comfort. This study aimed to investigate the effects of fabrics with dynamic moisture transfer properties on breast skin temperature, and the thermal physiological and psychological response of women while wearing the sports bra during exercise and recovery. Ten healthy women exercised in random order with two types of sports bra with or without the dynamic moisture transfer properties and then performed a 20-minute short-duration high-intensity exercise and rest to recover under thermoneutral conditions. Heart rate, body core temperature, skin temperature, body mass and thermal psychological subjective sensations were investigated during exercise and recovery. The results indicated that in the running state, the local breast skin temperatures of sports bra made of fabrics with dynamic moisture transfer properties (33.427±0.087) are significantly lower than bras without these dynamic moisture transfer properties (33.964±0.055) (P<0.01). During the exercise and recovery, the thermal psychological subjective sensation for the two types of fabrics were very similar, whereas the body mean skin temperature was revealed to undergo greater decreasing effects in sports bras made of fabrics with dynamic moisture transfer properties than those without the dynamic moisture transfer properties (P<0.05). These results provide novel information that usage of fabrics with dynamic moisture properties in sports bras could improve thermoregulation to benefit exercising women’s thermal comfort in terms of decreasing local breast skin temperature.
URI: http://hdl.handle.net/10397/44057
ISSN: 0040-5175
EISSN: 1746-7748
DOI: 10.1177/0040517515580532
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