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Am J Physiol Regul Integr Comp Physiol 288: R1589-R1597, 2005. First published January 27, 2005; doi:10.1152/ajpregu.00492.2004
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SLEEP AND TEMPERATURE REGULATION

Cutaneous warming promotes sleep onset

Roy J. E. M. Raymann,1,2 Dick F. Swaab,1,2 and Eus J. W. Van Someren1,2,3

1Netherlands Institute for Brain Research, 2Graduate School Neurosciences Amsterdam; and 3VU University Medical Centre, Amsterdam, The Netherlands

Submitted 22 July 2004 ; accepted in final form 26 January 2005

Sleep occurs in close relation to changes in body temperature. Both the monophasic sleep period in humans and the polyphasic sleep periods in rodents tend to be initiated when core body temperature is declining. This decline is mainly due to an increase in skin blood flow and consequently skin warming and heat loss. We have proposed that these intrinsically occurring changes in core and skin temperatures could modulate neuronal activity in sleep-regulating brain areas (Van Someren EJW, Chronobiol Int 17: 313–54, 2000). We here provide results compatible with this hypothesis. We obtained 144 sleep-onset latencies while directly manipulating core and skin temperatures within the comfortable range in eight healthy subjects under controlled conditions. The induction of a proximal skin temperature difference of only 0.78 ± 0.03°C (mean ± SE) around a mean of 35.13 ± 0.11°C changed sleep-onset latency by 26%, i.e., by 3.09 minutes [95% confidence interval (CI), 1.91 to 4.28] around a mean of 11.85 min (CI, 9.74 to 14.41), with faster sleep onsets when the proximal skin was warmed. The reduction in sleep-onset latency occurred despite a small but significant decrease in subjective comfort during proximal skin warming. The induction of changes in core temperature ({delta} = 0.20 ± 0.02°C) and distal skin temperature ({delta} = 0.74 ± 0.05°C) were ineffective. Previous studies have demonstrated correlations between skin temperature and sleep-onset latency. Also, sleep disruption by ambient temperatures that activate thermoregulatory defense mechanisms has been shown. The present study is the first to experimentally demonstrate a causal contribution to sleep-onset latency of skin temperature manipulations within the normal nocturnal fluctuation range. Circadian and sleep-appetitive behavior-induced variations in skin temperature might act as an input signal to sleep-regulating systems.

sleep electroencephalogram; body and skin temperatures; thermoregulation; sleep-onset latency; circadian rhythms



Address for reprint requests and other correspondence: R. J. E. M. Raymann, Netherlands Institute for Brain Research (NIBR), Meibergdreef 33, 1105 AZ Amsterdam (E-mail: r.raymann{at}nih.knaw.nl)




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