Effect of 24-h Sleep Deprivation on Whole-Body Heat Loss in Older Males during Exercise in the Heat.
case_series · Level IV
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- Record sourced from PubMed, PMID 40623158.
- Also identified by DOI 10.1249/MSS.0000000000003812.
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Abstract
Older adults commonly experience sleep deprivation, which has been observed to alter thermoregulatory function in young adults. This may exacerbate risks of heat-related injury and illness during heat stress, due to age-related reductions in heat loss capacity. However, whether sleep deprivation modulates thermoregulatory function in older adults remains unclear. Thus, we aimed to assess the impact 24 h of total sleep deprivation has on whole-body heat loss during exercise-heat stress in older adults. Following either a night of normal sleep or 24-h sleep deprivation, 10 older males (mean (SD); age 61 (4) yr) performed three 30-min exercise bouts at incrementally increasing rates of metabolic heat production (150, 200, 250 W·m -2 ), each separated by 15-min rest in hot, dry conditions (40°C, ~13% relative humidity). Whole-body total (dry + evaporative) heat loss and metabolic heat production were measured continuously using direct and indirect calorimetry, respectively, and used to calculate body heat storage. Peak whole-body total loss (mean difference (95% confidence interval), -12 (-20 to -3) W·m -2 ; P = 0.010) was reduced and body heat storage (0.60 (0.32 to 0.89) kJ·min -1 ; P = 0.002) increased during high-intensity exercise following sleep deprivation compared with normal sleep. However, evaporative heat loss (-10 (-20 to 1) W·m -2 ; P = 0.062) and dry heat gain (-2 (-9 to 5) W·m -2 ; P = 0.512) were not different between conditions. Sleep deprivation impaired whole-body total heat loss in older males, leading to greater heat storage during exercise-heat stress. Thus, sleep-deprived older adults performing prolonged high-intensity exercise in hot conditions may be at a heightened risk of heat-related illness or injury.
Medical subject headings
- Sleep Deprivation
- Body Temperature Regulation
- Hot Temperature
- Exercise