On the use of magnets to disrupt the physiological compass of birds
- 1 September 2006
- journal article
- Published by IOP Publishing in Physical Biology
- Vol. 3 (3) , 220-231
- https://doi.org/10.1088/1478-3975/3/3/007
Abstract
Behavioral researchers have attached magnets to birds during orientation experiments, assuming that such magnets will disrupt their ability to obtain magnetic information. Here, we investigate the effect of an attached magnet on the ability to derive directional information from a radical-pair based compass mechanism. We outline in some detail the geometrical symmetries that would allow a bird to identify magnetic directions in a radical-pair based compass. We show that the artificial field through an attached magnet will quickly disrupt the birds' ability to distinguish pole-ward from equator-ward headings, but that much stronger fields are necessary to disrupt their ability to detect the magnetic axis. Together with estimates of the functional limits of a radical-pair based compass, our calculations suggest that artificial fields of comparable size to the geomagnetic field are not generally sufficient to render a radical-pair based compass non-functional.Keywords
This publication has 37 references indexed in Scilit:
- Pigeon Homing: The Orientation of Young Birds that had been Prevented from Seeing the SunEthology, 2010
- Magnetoreception and its trigeminal mediation in the homing pigeonNature, 2004
- Magnetic Orientation in AnimalsPublished by Springer Nature ,1995
- Magnetic fields and orientation in homing pigeons: experiments of the late W. T. Keeton.Proceedings of the National Academy of Sciences, 1988
- Homing Experiments with Pigeons at the Magnetic EquatorSpringer Proceedings in Physics, 1986
- MAGNETIC INFLUENCES ON PIGEON HOMINGThe Biological Bulletin, 1979
- Magnets Disrupt the Orientation of Juvenile Ring-Billed GullsBioScience, 1972
- Magnets Interfere with Pigeon HomingProceedings of the National Academy of Sciences, 1971
- A Preliminary Study of a Physical Basis of Bird Navigation. Part IIJournal of Applied Physics, 1951
- A Preliminary Study of a Physical Basis of Bird NavigationJournal of Applied Physics, 1947