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Circadian rhythms and sleep regulation in seasonal affective disorder

Published online by Cambridge University Press:  18 September 2015

J. English
Affiliation:
Dept. of Biological Sciences, University of Surrey, UK
J. Arendt
Affiliation:
Dept. of Biological Sciences, University of Surrey, UK

Extract

Seasonal affective disorder (SAD) is characterised by recurrent episodes in autumn and winter of depression, hypersomnia, augmented appetite with carbohydrate craving, and weight gain, and can be successfully treated with bright light. Circadian rhythm hypotheses (summarized in) have stimulated research into the pathophysiology of SAD, postulating that:

  1. 1.The illness is a consequence of delayed phase position,

  2. 2.It is correlated with diminished circadian amplitude, or

  3. 3.It results from changes in the nocturnal duration between dusk and dawn e.g. of low core body temperature or melatonin secretion. Light is considered to act directly on the circadian pacemaker (‘Process C’) and not on sleep dependent processes (‘Process S’). Thus successful treatment of SAD must act via mechanisms within known retinohypothalamic pathways. Conversely, emergence of SAD symptoms may reflect inappropriate neurobiological response to decreasing daylength.

Type
Research Article
Copyright
Copyright © Scandinavian College of Neuropsychopharmacology 1995

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References

Literature

1.Rosenthal, NE, Sack, DA, Gillin, JC, Lewy, AJ, Goodwin, FK, Davenport, Y, Mueller, PS, Newsome, DA, Wehr, TA. Seasonal affective disorder: a description of the syndrome and preliminary findings with light therapy. Arch gen Psychiat 1984; 41: 7280.CrossRefGoogle ScholarPubMed
2.Wirz-Justice, A. Biological rhythms in mood disorders. In: Bloom, FE, Kupfer, DJ, eds. Psychopharmacology. The Fourth Generation of Progress. New York: Raven Press 1994: 9991017.Google Scholar
3.Daan, S, Beersma, DGM, Borbély, A A. Timing of human sleep: recovery process gated by a circadian pacemaker. Am J Physiol 1984; 246: R161R178.Google ScholarPubMed
4.Czeisler, CA, Brown, EN, Ronda, JM, Kronauer, RE, Richardson, GS, Freitag, WO. A clinical method to assess the endogenous circadian phase (ECP) of the deep circadian oscillator in man. Sleep Res 1985; 14: 295.Google Scholar
5.Haug, H-J, Wirz-Justice, A, Kräuchi, K, Graw, P, Hetsch, C, Leonhardt, G, Brunner, DP. Circadian rhythms of mood under a constant routine. Neuropsychopharmacology 1994; 10 (suppl): 235S.Google Scholar
6.Boivin, DB, Duffy, JF, Dijk, D-J, Smith, JA, Czeisler, CA. Endogenous circadian rhythm of subjective modd in healthy young men. Society for Research on Biological Rhythms. 1994; 4: abstract #110.Google Scholar
7.Wirz-Justice, A, Kräuchi, K, Graw, P, Arendt, J, English, J, Brunner, DP, Haug, H-J, Leonhardt, G. Testing circadian rhythm hypotheses of winter depression in the constant routine protocol. Neuropsychopharmacology 1994; 10 (Suppl): 51.Google Scholar
8.Wirz-Justice, A, Kräuchi, K, Graw, P, Arendt, J, English, J, Haug, HJ, Leonhardt, G, Brunner, DP. Are circadian rhythms involved in the pathophysiology of SAD and its treatment by light. Society for Research on Biological Rhythms 1994; 4: abstract #107.Google Scholar
9.Shanahan, TL, Czeisler, CA. Light exposure induces equivalent phase shifts of the endogenous circadian rhythms of circulating plasma melatonin and core body temperature in men. J clin Endocrinol Metab 1991; 73: 227235.CrossRefGoogle ScholarPubMed
10.Brunner, DP, Kräuchi, K, Leonhardt, G, Graw, P, Wirz-Justice, A. Sleep parameters in SAD: effects of midday light, season, and sleep deprivation. Sleep Res 1993; 22: 396.Google Scholar
11.Brunner, DP, Leonhardt, G, Kräuchi, K, Graw, P, Wirz-Justice, A. Homeostatic regulation of non-REM sleep in SAD is preserved across depressive episodes and seasons. Sleep Res 1993; 22: 325.Google Scholar
12.Brunner, DP, Kräuchi, K, Leonhardt, G, Graw, P, Wirz-Justice, A. Sleep stage parameters in middle-aged women: effects of season, sleep deprivation, and midday light. Sleep Res 1994; 23: 481.Google Scholar
13.Brunner, DP, Kräuchi, K, Dijk, D-J, Leonhardt, G, Wirz-Justice, A. Sleep EEG in winter depressed and healthy women: the effects of total sleep deprivation and midday light treatment. Biol Psychiat 1995; submitted.Google Scholar