TY - JOUR
T1 - Relative importance of different surface regions for thermal comfort in humans
AU - Nakamura, Mayumi
AU - Yoda, Tamae
AU - Crawshaw, Larry I.
AU - Kasuga, Momoko
AU - Uchida, Yuki
AU - Tokizawa, Ken
AU - Nagashima, Kei
AU - Kanosue, Kazuyuki
N1 - Funding Information:
Acknowledgments This study was partly supported by the Grant-in-Aid for Scientific Research No. 18659062 and Grant-in-Aid for Young Scientists (B) No. 19700483 from the Ministry of Education, Culture, Sports, Science and Technology of Japan, and by Waseda University Global COE Program, ‘‘Sport Sciences for the Promotion of Active Life’’.
PY - 2013/1
Y1 - 2013/1
N2 - In a previous study, we investigated the contribution of the surface of the face, chest, abdomen, and thigh to thermal comfort by applying local temperature stimulation during whole-body exposure to mild heat or cold. In hot conditions, humans prefer a cool face, and in cold they prefer a warm abdomen. In this study, we extended investigation of regional differences in thermal comfort to the neck, hand, soles, abdomen (Experiment 1), the upper and lower back, upper arm, and abdomen (Experiment 2). The methodology was similar to that used in the previous study. To compare the results of each experiment, we utilized the abdomen as the reference area in these experiments. Thermal comfort feelings were not particularly strong for the limbs and extremities, in spite of the fact that changes in skin temperature induced by local temperature stimulation of the limbs and extremities were always larger than changes that were induced in the more proximal body parts. For the trunk areas, a significant difference in thermal comfort was not observed among the abdomen, and upper and lower back. An exception involved local cooling during whole-body mild cold exposure, wherein the most dominant preference was for a warmer temperature of the abdomen. As for the neck and abdomen, clear differences were observed during local cooling, while no significant difference was observed during local warming. We combined the results for the current and the previous study, and characterized regional differences in thermal comfort and thermal preference for the whole-body surface.
AB - In a previous study, we investigated the contribution of the surface of the face, chest, abdomen, and thigh to thermal comfort by applying local temperature stimulation during whole-body exposure to mild heat or cold. In hot conditions, humans prefer a cool face, and in cold they prefer a warm abdomen. In this study, we extended investigation of regional differences in thermal comfort to the neck, hand, soles, abdomen (Experiment 1), the upper and lower back, upper arm, and abdomen (Experiment 2). The methodology was similar to that used in the previous study. To compare the results of each experiment, we utilized the abdomen as the reference area in these experiments. Thermal comfort feelings were not particularly strong for the limbs and extremities, in spite of the fact that changes in skin temperature induced by local temperature stimulation of the limbs and extremities were always larger than changes that were induced in the more proximal body parts. For the trunk areas, a significant difference in thermal comfort was not observed among the abdomen, and upper and lower back. An exception involved local cooling during whole-body mild cold exposure, wherein the most dominant preference was for a warmer temperature of the abdomen. As for the neck and abdomen, clear differences were observed during local cooling, while no significant difference was observed during local warming. We combined the results for the current and the previous study, and characterized regional differences in thermal comfort and thermal preference for the whole-body surface.
KW - Behavioral thermoregulation
KW - Cold exposure
KW - Heat exposure
KW - Temperature sensation
KW - Thermal comfort
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U2 - 10.1007/s00421-012-2406-9
DO - 10.1007/s00421-012-2406-9
M3 - Article
C2 - 22569893
AN - SCOPUS:84872280813
SN - 1439-6319
VL - 113
SP - 63
EP - 76
JO - European Journal of Applied Physiology
JF - European Journal of Applied Physiology
IS - 1
ER -