Body Temperature Predicts the Direction of Internal Desynchronization in Humans Isolated from Time Cues

Author:

Daan Serge1,Honma Sato2,Honma Ken-ichi2

Affiliation:

1. Center for Life Sciences, University of Groningen, Groningen, the Netherlands

2. Department of Chronomedicine, Hokkaido University Medical School, Sapporo, Japan

Abstract

This publication presents a new analysis of experiments that were carried out in human subjects in isolation from time cues, under supervision of Jürgen Aschoff and Rütger Wever at the Max Planck Institute for Behavioural Physiology (Erling-Andechs, Germany, 1964-1974). Mean rectal temperatures (tb) were compared between subjects who showed internal desynchronization (ID) and internal synchronization (IS) of the endogenous rhythms of sleep-wakefulness and of body temperature. The results showed that tb was reduced in long ID (circadian sleep-wake cycle length [τSW] > 27 h) and increased in short ID (τSW < 22 h) relative to IS. In subjects with both ID and IS sections in the complete record, these differences were also found when comparing only the IS sections: Low tb during IS predicts the later occurrence of long ID, and high tb predicts the incidence of short ID. While this association is associated with sex differences in tb, it also occurs within each sex. To the extent that the variation in tb reflects the variation in heat production (metabolic rate), the results are consistent with the proposition that the spontaneous frequency of the human sleep-wake oscillator is associated with the metabolic rate, as suggested on the basis of the proportionality of meal frequency and sleep-wake frequency. The finding thus has implications for our views on spontaneous sleep timing.

Publisher

SAGE Publications

Subject

Physiology (medical),Physiology

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