Phase Resetting of the Human Circadian Pacemaker with Use of a Single Pulse of Bright Light
- 1 January 1993
- journal article
- research article
- Published by Taylor & Francis in Chronobiology International
- Vol. 10 (2) , 94-102
- https://doi.org/10.3109/07420529309059697
Abstract
Since the initial studies reporting that light can alter the phase position of the human circadian system, there has been increasing interest in the use of bright light as a tool for manipulating the phase position of the circadian pacemaker. Exposure protocols typically require subjects to receive 2–5 h of exposure over several circadian cycles. As a consequence, bright light treatment can involve a considerable time investment. However, recent studies indicate that a single pulse of bright light can produce significant phase shifts in the circadian pacemaker. If a single pulse of bright light can produce significant phase-shifting effects, multiple-pulse designs may be unnecessary. This study examined the phase-shifting effects of a single 4-h pulse of bright light (12,000 lux) in 14 male and one female subject aged between 19–45 years. With use of a “constant routine” to estimate circadian phase, a single 4-h pulse of light produced significant shifts in the phase of the core temperature rhythm. The timing of the exposure, relative to the core temperature rhythm, determined the degree and direction of the phase shift. Exposure immediately prior to habitual bedtime produced a mean phase delay in the core temperature of 2.39 h (SD = 1.37 h). In contrast, exposure immediately following habitual wake-up produced a mean phase advance of 1.49 h (SD = 2.06 h). In addition, the magnitude of the shift increased the closer the light pulse was to the individual's estimated endogenous core temperature minimum. There was, however, considerable interindividual variability in this relationship. Overall, these results confirm that a single pulse of bright light can produce significant phase shifts in the phase of the circadian pacemaker controlling core temperature. Key Words: Bright light—Circadian rhythm—Core body temperature—Sleep-wake disorders—Chronobiology.Keywords
This publication has 10 references indexed in Scilit:
- Exposure to Bright Light and Darkness to Treat Physiologic Maladaptation to Night WorkNew England Journal of Medicine, 1990
- Bright Light Induction of Strong (Type 0) Resetting of the Human Circadian PacemakerScience, 1989
- Phase-dependent shift of free-running human circadian rhythms in response to a single bright pulseCellular and Molecular Life Sciences, 1987
- Phase Delay of the Rhythm of 6‐Sulphatoxy Melatonin Excretion by Artificial LightJournal of Pineal Research, 1987
- Bright Light in Work-Sleep Schedules for Shift Workers: Application of Circadian Rhythm PrinciplesPublished by Springer Nature ,1987
- Bright Light Resets the Human Circadian Pacemaker Independent of the Timing of the Sleep-Wake CycleScience, 1986
- Bright light affects human circadian rhythmsPflügers Archiv - European Journal of Physiology, 1983
- ENTRAINMENT OF HUMAN ORCADIAN RHYTHMS BY LIGHT-DARK CYCLES: A REASSESSMENTPhotochemistry and Photobiology, 1981
- Delayed Sleep Phase SyndromeArchives of General Psychiatry, 1981
- Adaptation to abrupt time shifts of the oscillator(s) controlling human circadian rhythms.The Journal of Physiology, 1978