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Impact of magnetic fields generated by AC/DC submarine power cables on the behavior of juvenile European lobster (Homarus gammarus).
Taormina, Bastien; Di Poi, Carole; Agnalt, Ann-Lisbeth; Carlier, Antoine; Desroy, Nicolas; Escobar-Lux, Rosa Helena; D'eu, Jean-François; Freytet, Florian; Durif, Caroline M F.
Afiliación
  • Taormina B; France Energies Marines, 525 avenue Alexis de Rochon, 29280, Plouzané, France; Ifremer, Centre de Bretagne, DYNECO - Laboratoire d'écologie benthique côtière, ZI de la Pointe du Diable - CS 10070, 29280, Plouzané, France. Electronic address: bastien.taormina@france-energies-marines.org.
  • Di Poi C; Ifremer, Laboratoire des Sciences de l'Environnement Marin (LEMAR) UMR 6539 UBO/CNRS/IRD/Ifremer, CS 10070, 29280, Plouzané, France.
  • Agnalt AL; Institute of Marine Research, P.O. Box 1870, Nordnes, 5817, Bergen, Norway.
  • Carlier A; Ifremer, Centre de Bretagne, DYNECO - Laboratoire d'écologie benthique côtière, ZI de la Pointe du Diable - CS 10070, 29280, Plouzané, France.
  • Desroy N; Ifremer, Laboratoire Environnement Ressources Bretagne Nord, 38 rue du Port Blanc, 35801, Dinard, France.
  • Escobar-Lux RH; Institute of Marine Research, Austevoll Research Station, Sauganeset 16, N-5392, Storebø, Norway.
  • D'eu JF; Mappem Geophysics, Batiment Tech-Iroise, 1 rue des Ateliers, Zone de Mespaol, 29290, Saint-Renan, France.
  • Freytet F; Institute of Marine Research, Austevoll Research Station, Sauganeset 16, N-5392, Storebø, Norway.
  • Durif CMF; Institute of Marine Research, Austevoll Research Station, Sauganeset 16, N-5392, Storebø, Norway.
Aquat Toxicol ; 220: 105401, 2020 Mar.
Article en En | MEDLINE | ID: mdl-31924586
The number of submarine power cables using either direct or alternating current is expected to increase drastically in coming decades. Data concerning the impact of magnetic fields generated by these cables on marine invertebrates are scarce. In this context, the aim of this study was to explore the potential impact of anthropogenic static and time-varying magnetic fields on the behavior of recently settled juvenile European lobsters (Homarus gammarus) using two different behavioral assays. Day-light conditions were used to stimulate the sheltering behavior and facilitate the video tracking. We showed that juvenile lobsters did not exhibit any change of behavior when submitted to an artificial magnetic field gradient (maximum intensity of 200 µT) compared to non-exposed lobsters in the ambient magnetic field. Additionally, no influence was noted on either the lobsters' ability to find shelter or modified their exploratory behavior after one week of exposure to anthropogenic magnetic fields (225 ±â€¯5 µT) which remained similar to those observed in control individuals. It appears that static and time-varying anthropogenic magnetic fields, at these intensities, do not significantly impact the behavior of juvenile European lobsters in daylight conditions. Nevertheless, to form a complete picture for this biological model, further studies are needed on the other life stages as they may respond differently.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: Navíos / Conducta Animal / Campos Magnéticos / Nephropidae País/Región como asunto: Europa Idioma: En Revista: Aquat Toxicol Asunto de la revista: BIOLOGIA / TOXICOLOGIA Año: 2020 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Navíos / Conducta Animal / Campos Magnéticos / Nephropidae País/Región como asunto: Europa Idioma: En Revista: Aquat Toxicol Asunto de la revista: BIOLOGIA / TOXICOLOGIA Año: 2020 Tipo del documento: Article