Photons, Clocks, and Consciousness
- 1 August 2005
- journal article
- review article
- Published by SAGE Publications in Journal of Biological Rhythms
- Vol. 20 (4) , 314-325
- https://doi.org/10.1177/0748730405278951
Abstract
Light profoundly impacts human consciousness through the stimulation of the visual system and powerfully regulates the human circadian system, which, in turn, has a broad regulatory impact on virtually all tissues in the body. For more than 25 years, the techniques of action spectroscopy have yielded insights into the wavelength sensitivity of circadian input in humans and other mammalian species. The seminal discovery of melanopsin, the photopigmentin intrinsically photosensitive retinal ganglion cells, has provided a significant turning point for understanding human circadian phototransduction. Action spectra in humans show that the peak wavelength sensitivity for this newly discovered sensory system is within the blue portion of the spectrum. This is fundamentally different from the three-cone photopic visual system, as well as the individual rod and cone photoreceptor peaks. Studies on rodents, nonhuman primates, and humans indicate that despite having a different wavelength fingerprint, these classic visual photoreceptors still provide an element of input to the circadian system. These findings open the door to innovations in light therapy for circadian and affective disorders, as well as possible architectural light applications.Keywords
This publication has 66 references indexed in Scilit:
- Phototransduction by Retinal Ganglion Cells That Set the Circadian ClockScience, 2002
- Responses of neurones of the rat suprachiasmatic nucleus to retinal illumination under photopic and scotopic conditionsThe Journal of Physiology, 2000
- Near ultraviolet radiation elicits visual evoked potentials in childrenClinical Neurophysiology, 1999
- Photic Regulation of Melatonin in Humans: Ocular and Neural Signal TransductionJournal of Biological Rhythms, 1997
- Ultraviolet light entrains rodent suprachiasmatic nucleus pacemakerNeuroscience, 1995
- Ultraviolet regulation of neuroendocrine and circadian physiology in rodentsVision Research, 1994
- Dose-response relationship between light irradiance and the suppression of plasma melatonin in human volunteersBrain Research, 1988
- Suppression of pineal melatonin in Peromyscus leucopus by different monochromatic wavelengths of visible and near-ultraviolet light (UV-A)Brain Research, 1987
- Effect of Light Irradiance and Wavelength on the Syrian Hamster Reproductive System*Endocrinology, 1986
- The influence of different light spectra on the suppression of pineal melatonin content in the syrian hamsterBrain Research, 1984