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  • Heat acclimation  (3)
  • Active sweat glands  (1)
  • 1
    Electronic Resource
    Electronic Resource
    Springer
    European journal of applied physiology 44 (1980), S. 123-133 
    ISSN: 1439-6327
    Keywords: Body drippage ; Sweating decrease ; Evaporative adjustments ; Active sweat glands
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Sweat rate and the rate of change in sweat drippage were studied during the acclimation of eight healthy male subject during exposure to heat during 10 consecutive days. During acclimation to hot humid conditions, the increase in total body sweat rate results in an increase in the rate of sweat drippage. We found, however, that on each day the drippage rate markedly decreased with time after the 1st h of heat exposure. This hidromeiosis was investigated as a function of the heat exposure time. No shortening of the onset time of hidromeiosis occurred with acclimation. With repeated heat exposures, the initial sweat rates in response to stress increased, and the subsequent decline became larger with higher sweat rates at the time of onset of hidromeiosis. Hidromeiosis appears to be a function of the degree of skin wettedness reached in the various local skin areas which determine the overall body skin wettedness upon which evaporative adjustments depend. Thus, the observed overshoot in total sweat rate as indicated by sweat drippage, and the subsequent hidromeiosis, result from initial oversweating in the poorly ventilated areas of skin. This sweat decline seems to be due to a reduction in output of the active sweat glands rather than to a reduction in active sweat gland number.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    European journal of applied physiology 50 (1983), S. 235-246 
    ISSN: 1439-6327
    Keywords: Heat acclimation ; Transient thermal loads ; Local sweating response
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary The sweating response was studied before and after passive humid heat acclimation in four resting male subjects who were exposed to slow thermal transients increasing air and wall temperatures from 28
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    European journal of applied physiology 57 (1988), S. 499-506 
    ISSN: 1439-6327
    Keywords: Heat acclimation ; Sweating rate ; Exercise ; Body temperatures
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Body temperature regulation was studied in 6 male subjects during an acclimation procedure involving uninterrupted heat exposure for 5 successive days and nights in a hot dry environment (ambient temperature =35° C, dew-point temperature =7° C; air velocity = 0.2 m·s−1). Data were obtained at rest and during exercise (relative mechanical workload =35% $$\dot V_{{\text{O}}_{{\text{2 max}}} } $$ ). At rest, hourly measurements were made of oesophageal and 4 local skin temperatures, to allow the calculation of mean skin temperature, and of body motility and heart rate. During the working periods these measurements were made at 5 min intervals. Hourly whole-body weight loss was measured at rest on a sensitive platform scale while in the working condition just before starting and immediately after completing the bicycle exercise. The results show that, in both exercise and at rest, the successive heat exposures increased the sweat gland output during the first 3 days. Afterwards, sweat rate decreased without any corresponding change, in body temperature. For the fixed workload, the sweat rate decline was associated with a decrease in circulatory strain. Adjustments in both sweating and circulatory mechanisms occur in the first 3 days of continuous heat exposure. The overall sweat rate decline could involve a redistribution of the regional sweating rates which enhances the sweat gland activities of skin areas with maximal evaporative efficiencies.
    Type of Medium: Electronic Resource
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  • 4
    Electronic Resource
    Electronic Resource
    Springer
    European journal of applied physiology 59 (1989), S. 138-145 
    ISSN: 1439-6327
    Keywords: Heat ; Sweat rate ; Sleep stage ; Heat acclimation ; Human sleep
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Experiments were carried out on four healthy male subjects in two separate sessions: (a) A baseline period of two consecutive nights, one spent at thermoneutrality [operative temperature (T o)=30°C, dew-point temperature (T dp)=7°C, air velocity (V a)=0.2 m·s−1] and the other in hot condition (T o=35°C,T dp=7°C,V a=0.2 m·s−1). During the day, the subjects lived in their normal housing and were engaged in their usual activities. (b) An acclimation period of seven consecutive daily heat exposures from 1400 to 1700 hours (T o=44°C,T dp=29°C,V a=0.3 m·s−1). During each night, the subjects slept in thermoneutral or in hot conditions. The sleep measurements were: EEG from two sites, EOG from both eyes, EMG and EKG. Esophageal and ten skin temperatures were recorded continuously during the night. In the nocturnal hot conditions, a sweat collection capsule recorded the sweat gland activity in the different sleep stages. Results showed that passive body heating had no significant effect on the sleep structure of subsequent nights at thermoneutrality. In contrast, during nights atT o=35°C an effect of daily heat exposure was observed on sleep. During the 2nd night of the heat acclimation period, sleep was more restless and less efficient than during the baseline night. The rapid eye movement sleep duration was reduced, while the rate of transient activation phases observed in sleep stage 2 increased significantly. On the 7th night, stage 4 sleep increased (+68%) over values observed during the baseline night. The sweating adaptive mechanisms of heat acclimation persisted only in stage 4 sleep. The results indicated that body temperature rhythmicity was maintained in the heat by an increase in stage 4 sleep which reduced core temperature during the first part of the night.
    Type of Medium: Electronic Resource
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