Irradiance encoding in the suprachiasmatic nuclei by rod and cone photoreceptors.

Light information is transmitted to the central clock of the suprachiasmatic nuclei (SCN) for daily synchronization to the external solar cycle. Essential for synchronization is the capacity of SCN neurons to respond in a sustained and irradiance-dependent manner to light. Melanopsin has been consid...

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Main Authors: van Diepen, H, Ramkisoensing, A, Peirson, S, Foster, R, Meijer, J
Format: Journal article
Language:English
Published: 2013
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author van Diepen, H
Ramkisoensing, A
Peirson, S
Foster, R
Meijer, J
author_facet van Diepen, H
Ramkisoensing, A
Peirson, S
Foster, R
Meijer, J
author_sort van Diepen, H
collection OXFORD
description Light information is transmitted to the central clock of the suprachiasmatic nuclei (SCN) for daily synchronization to the external solar cycle. Essential for synchronization is the capacity of SCN neurons to respond in a sustained and irradiance-dependent manner to light. Melanopsin has been considered to mediate this photosensory task of irradiance detection. By contrast, the contribution of the classical photoreceptors in irradiance encoding is less clear. Here we investigate the role of classical photoreceptors by in vivo electrophysiological responses in freely moving animals to specific wavelengths of light (UV, λmax 365 nm; blue, λmax 467 nm; and green, λmax 505 nm) in both melanopsin-deficient (Opn4(-/-)) mice and mice lacking rods and cones (rd/rd cl). Short- and long-wavelength light induced sustained irradiance-dependent responses in congenic wild-type mice (+19.6%). Unexpectedly, sustained responses to light persisted in Opn4(-/-) mice (+18.4%). These results provide unambiguous evidence that classical photoreceptors can transmit irradiance information to the SCN. In addition, at light intensities that would stimulate rod and cone photoreceptors, the SCN of rd/rd cl mice showed greatly reduced sustained responses to light (+7.8%). Collectively, our data demonstrate a role for classical photoreceptors in illuminance detection by the SCN.
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spelling oxford-uuid:2eeb4f59-3c73-47e2-9388-99a31c1e2af42022-03-26T12:51:56ZIrradiance encoding in the suprachiasmatic nuclei by rod and cone photoreceptors.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:2eeb4f59-3c73-47e2-9388-99a31c1e2af4EnglishSymplectic Elements at Oxford2013van Diepen, HRamkisoensing, APeirson, SFoster, RMeijer, JLight information is transmitted to the central clock of the suprachiasmatic nuclei (SCN) for daily synchronization to the external solar cycle. Essential for synchronization is the capacity of SCN neurons to respond in a sustained and irradiance-dependent manner to light. Melanopsin has been considered to mediate this photosensory task of irradiance detection. By contrast, the contribution of the classical photoreceptors in irradiance encoding is less clear. Here we investigate the role of classical photoreceptors by in vivo electrophysiological responses in freely moving animals to specific wavelengths of light (UV, λmax 365 nm; blue, λmax 467 nm; and green, λmax 505 nm) in both melanopsin-deficient (Opn4(-/-)) mice and mice lacking rods and cones (rd/rd cl). Short- and long-wavelength light induced sustained irradiance-dependent responses in congenic wild-type mice (+19.6%). Unexpectedly, sustained responses to light persisted in Opn4(-/-) mice (+18.4%). These results provide unambiguous evidence that classical photoreceptors can transmit irradiance information to the SCN. In addition, at light intensities that would stimulate rod and cone photoreceptors, the SCN of rd/rd cl mice showed greatly reduced sustained responses to light (+7.8%). Collectively, our data demonstrate a role for classical photoreceptors in illuminance detection by the SCN.
spellingShingle van Diepen, H
Ramkisoensing, A
Peirson, S
Foster, R
Meijer, J
Irradiance encoding in the suprachiasmatic nuclei by rod and cone photoreceptors.
title Irradiance encoding in the suprachiasmatic nuclei by rod and cone photoreceptors.
title_full Irradiance encoding in the suprachiasmatic nuclei by rod and cone photoreceptors.
title_fullStr Irradiance encoding in the suprachiasmatic nuclei by rod and cone photoreceptors.
title_full_unstemmed Irradiance encoding in the suprachiasmatic nuclei by rod and cone photoreceptors.
title_short Irradiance encoding in the suprachiasmatic nuclei by rod and cone photoreceptors.
title_sort irradiance encoding in the suprachiasmatic nuclei by rod and cone photoreceptors
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