Anthropogenic electromagnetic noise disrupts magnetic compass orientation in a migratory bird.

Electromagnetic noise is emitted everywhere humans use electronic devices. For decades, it has been hotly debated whether man-made electric and magnetic fields affect biological processes, including human health. So far, no putative effect of anthropogenic electromagnetic noise at intensities below...

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Huvudupphovsmän: Engels, S, Schneider, N, Lefeldt, N, Hein, C, Zapka, M, Michalik, A, Elbers, D, Kittel, A, Hore, P, Mouritsen, H
Materialtyp: Journal article
Språk:English
Publicerad: 2014
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author Engels, S
Schneider, N
Lefeldt, N
Hein, C
Zapka, M
Michalik, A
Elbers, D
Kittel, A
Hore, P
Mouritsen, H
author_facet Engels, S
Schneider, N
Lefeldt, N
Hein, C
Zapka, M
Michalik, A
Elbers, D
Kittel, A
Hore, P
Mouritsen, H
author_sort Engels, S
collection OXFORD
description Electromagnetic noise is emitted everywhere humans use electronic devices. For decades, it has been hotly debated whether man-made electric and magnetic fields affect biological processes, including human health. So far, no putative effect of anthropogenic electromagnetic noise at intensities below the guidelines adopted by the World Health Organization has withstood the test of independent replication under truly blinded experimental conditions. No effect has therefore been widely accepted as scientifically proven. Here we show that migratory birds are unable to use their magnetic compass in the presence of urban electromagnetic noise. When European robins, Erithacus rubecula, were exposed to the background electromagnetic noise present in unscreened wooden huts at the University of Oldenburg campus, they could not orient using their magnetic compass. Their magnetic orientation capabilities reappeared in electrically grounded, aluminium-screened huts, which attenuated electromagnetic noise in the frequency range from 50 kHz to 5 MHz by approximately two orders of magnitude. When the grounding was removed or when broadband electromagnetic noise was deliberately generated inside the screened and grounded huts, the birds again lost their magnetic orientation capabilities. The disruptive effect of radiofrequency electromagnetic fields is not confined to a narrow frequency band and birds tested far from sources of electromagnetic noise required no screening to orient with their magnetic compass. These fully double-blinded tests document a reproducible effect of anthropogenic electromagnetic noise on the behaviour of an intact vertebrate.
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spelling oxford-uuid:5ce377b5-9608-4b88-8f50-3f1476ec69992022-03-26T17:31:06ZAnthropogenic electromagnetic noise disrupts magnetic compass orientation in a migratory bird.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:5ce377b5-9608-4b88-8f50-3f1476ec6999EnglishSymplectic Elements at Oxford2014Engels, SSchneider, NLefeldt, NHein, CZapka, MMichalik, AElbers, DKittel, AHore, PMouritsen, HElectromagnetic noise is emitted everywhere humans use electronic devices. For decades, it has been hotly debated whether man-made electric and magnetic fields affect biological processes, including human health. So far, no putative effect of anthropogenic electromagnetic noise at intensities below the guidelines adopted by the World Health Organization has withstood the test of independent replication under truly blinded experimental conditions. No effect has therefore been widely accepted as scientifically proven. Here we show that migratory birds are unable to use their magnetic compass in the presence of urban electromagnetic noise. When European robins, Erithacus rubecula, were exposed to the background electromagnetic noise present in unscreened wooden huts at the University of Oldenburg campus, they could not orient using their magnetic compass. Their magnetic orientation capabilities reappeared in electrically grounded, aluminium-screened huts, which attenuated electromagnetic noise in the frequency range from 50 kHz to 5 MHz by approximately two orders of magnitude. When the grounding was removed or when broadband electromagnetic noise was deliberately generated inside the screened and grounded huts, the birds again lost their magnetic orientation capabilities. The disruptive effect of radiofrequency electromagnetic fields is not confined to a narrow frequency band and birds tested far from sources of electromagnetic noise required no screening to orient with their magnetic compass. These fully double-blinded tests document a reproducible effect of anthropogenic electromagnetic noise on the behaviour of an intact vertebrate.
spellingShingle Engels, S
Schneider, N
Lefeldt, N
Hein, C
Zapka, M
Michalik, A
Elbers, D
Kittel, A
Hore, P
Mouritsen, H
Anthropogenic electromagnetic noise disrupts magnetic compass orientation in a migratory bird.
title Anthropogenic electromagnetic noise disrupts magnetic compass orientation in a migratory bird.
title_full Anthropogenic electromagnetic noise disrupts magnetic compass orientation in a migratory bird.
title_fullStr Anthropogenic electromagnetic noise disrupts magnetic compass orientation in a migratory bird.
title_full_unstemmed Anthropogenic electromagnetic noise disrupts magnetic compass orientation in a migratory bird.
title_short Anthropogenic electromagnetic noise disrupts magnetic compass orientation in a migratory bird.
title_sort anthropogenic electromagnetic noise disrupts magnetic compass orientation in a migratory bird
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