Modulatory actions of light on the behavioural responses to magnetic fields by land snails probably occur at the magnetic field detection stage
Open Access
- 7 March 1998
- journal article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 265 (1394) , 367-373
- https://doi.org/10.1098/rspb.1998.0304
Abstract
The attenuation of opioid peptide–mediated antinociception or analgaesia is a well–established effect of extremely low frequency (ELF) magnetic fields. Results of prior studies indicated a modulatory role for light such that when the ELF exposures were carried out in the absence of light, the inhibitory effect on analgaesia was reduced. Here, we investigated whether this modulatory effect of light occurs at either the magnetic field detection stage or is associated with a post–detection mechanism. We compared the effects of the presence and absence of light on the attenuation of opioid–induced analgaesia in the land snail,Cepaea nemoralis, by (i) an ELF magnetic field (15 min, 60 Hz, 141 –T peak), and (ii) the prototypic opiate antagonist, naloxone. Determinations were performed during the subjective ‘day’ and ‘night’ in the presence (1.9 W m−2 and 1.0 mW m−2, respectively) and absence of light (less than 10−6W m−2). The inhibitory effects of the ELF magnetic fields and naloxone on opioid–induced analgaesia were similar in the presence of light; whereas in the absence of light the inhibitory effects of the ELF magnetic fields as a percentage of sham were markedly reduced, while those of naloxone were unaffected. This indicates that the modulatory effects of light on the actions of the ELF magnetic fields probably affect the detection mechanism prior to its coupling to the opioid system.Keywords
This publication has 39 references indexed in Scilit:
- Behavioural responses to magnetic fields by land snails are dependent on both magnetic field direction and lightProceedings Of The Royal Society B-Biological Sciences, 1996
- Magnetic Field Effects in Biology: A Survey of Possible Mechanisms with Emphasis on Radical-Pair RecombinationChemical Reviews, 1995
- MODEL FOR THE RATIONALIZATION OF MAGNETIC FIELD EFFECTS IN VIVO. APPLICATION OF THE RADICAL - PAIR MECHANISM TO BIOLOGICAL SYSTEMSPhotochemistry and Photobiology, 1994
- Criticism of Lednev's mechanism for the influence of weak magnetic fields on biological systemsBioelectromagnetics, 1992
- Dosimetry of extremely-low-frequency magnetic fieldsBioelectromagnetics, 1992
- Delineation of electric and magnetic field effects of extremely low frequency electromagnetic radiation on transcriptionBiochemical and Biophysical Research Communications, 1991
- Possible mechanism for the influence of weak magnetic fields on biological systemsBioelectromagnetics, 1991
- Day-night rhythms in the inhibitory effects of 60 Hz magnetic fields on opiate-mediated ‘analgesic’ behaviors of the land snail, Cepaea nemoralisBrain Research, 1990
- Daily rhythms of analgesia in mice: effects of age and photoperiodBrain Research, 1983
- A Functional Role for an Opiate System in Snail Thermal BehaviorScience, 1983