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Author (up) Vacha, M.; Puzova, T.; Kvicalova, M. url  doi
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  Title Radio frequency magnetic fields disrupt magnetoreception in American cockroach Type Journal Article
  Year 2009 Publication The Journal of Experimental Biology Abbreviated Journal J Exp Biol  
  Volume 212 Issue Pt 21 Pages 3473-3477  
  Keywords Animals; *Electromagnetic Fields; *Magnetics; Motor Activity/physiology; Perception/*physiology; Periplaneta/*physiology; *Radio Waves  
  Abstract The sense that allows birds to orient themselves by the Earth's magnetic field can be disabled by an oscillating magnetic field whose intensity is just a fraction of the geomagnetic field intensity and whose oscillations fall into the medium or high frequency radio wave bands. This remarkable phenomenon points very clearly at one of two existing alternative magnetoreception mechanisms in terrestrial animals, i.e. the mechanism based on the radical pair reactions of specific photosensitive molecules. As the first such study in invertebrates, our work offers evidence that geomagnetic field reception in American cockroach is sensitive to a weak radio frequency field. Furthermore, we show that the 'deafening' effect at Larmor frequency 1.2 MHz is stronger than at different frequencies. The parameter studied was the rise in locomotor activity of cockroaches induced by periodic changes in the geomagnetic North positions by 60 deg. The onset of the disruptive effect of a 1.2 MHz field was found between 12 nT and 18 nT whereas the threshold of a doubled frequency field 2.4 MHz fell between 18 nT and 44 nT. A 7 MHz field showed no impact even in maximal 44 nT magnetic flux density. The results indicate resonance effects rather than non-specific bias of procedure itself and suggest that insects may be equipped with the same magnetoreception system as the birds.  
  Address Department of Animal Physiology, Faculty of Science, Masaryk University, Brno, Kotlarska 2, 611 37, Brno, Czech Republic. vacha@sci.muni.cz  
  Corporate Author Thesis  
  Publisher Place of Publication Editor  
  Language English Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 0022-0949 ISBN Medium  
  Area Expedition Conference  
  Notes PMID:19837889 Approved no  
  Call Number IT'IS @ evaj @ Serial 258  
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