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      Orientation of hatchling loggerhead sea turtles to regional magnetic fields along a transoceanic migratory pathway.

      The Journal of Experimental Biology
      Animal Migration, Animals, Atlantic Ocean, Electromagnetic Fields, Florida, Orientation, Swimming, Turtles, physiology

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          Abstract

          Young loggerhead sea turtles (Caretta caretta) from the east coast of Florida, USA, undertake a transoceanic migration around the North Atlantic Gyre, the circular current system that flows around the Sargasso Sea. Previous experiments indicated that loggerhead hatchlings, when exposed to magnetic fields replicating those that exist at five widely separated locations along the migratory pathway, responded by swimming in directions that would, in each case, help turtles remain in the gyre and advance along the migratory route. In this study, hatchlings were exposed to several additional magnetic fields that exist along or outside of the gyre's northern boundary. Hatchlings responded to fields that exist within the gyre currents by swimming in directions consistent with their migratory route at each location, whereas turtles exposed to a field that exists north of the gyre had an orientation that was statistically indistinguishable from random. These results are consistent with the hypothesis that loggerhead turtles entering the sea for the first time possess a navigational system in which a series of regional magnetic fields sequentially trigger orientation responses that help steer turtles along the migratory route. By contrast, hatchlings may fail to respond to fields that exist in locations beyond the turtles' normal geographic range.

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          Author and article information

          Journal
          21753042
          10.1242/jeb.055921

          Chemistry
          Animal Migration,Animals,Atlantic Ocean,Electromagnetic Fields,Florida,Orientation,Swimming,Turtles,physiology

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