Select All    Deselect All
 |   | 
Details
   print
  Record Links
Author Kozue Shiomi, Katsufumi Sato, Charles A. Bost, Yves Handrich doi  openurl
  Title Stay the course: maintenance of consistent orientation by commuting penguins both underwater and at the water surface Type Journal
  Year (down) 2023 Publication Marine Biology Abbreviated Journal  
  Volume 170 Issue 4 Pages 42  
  Keywords Bearing Compass Diving bird Navigation Orientation  
  Abstract Many marine vertebrates traverse more than hundreds of kilometres of the ocean. To efficiently achieve such long-distance movements, the ability to maintain orientation in a three-dimensional space is essential; however, it remains unevaluated in most species. In this study, we examined the bearing distributions of penguins undertaking long-distance foraging trips and compared their bearing consistency between underwater and at the water surface, as well as between night and day, to quantify their orientation ability. The subject species, king penguins, Aptenodytes patagonicus, from Possession Island, Crozet archipelago (46°25′S, 51°45′E; January to March 2011), showed high bearing consistency both during dives and at the water surface whilst commuting towards/from their main foraging area, the Antarctic polar front. Their bearing consistency was particularly high during and after shallow dives, irrespective of the time of day. Meanwhile, their bearings tended to vary during and after deep dives, particularly in the middle of the trip, probably owing to underwater foraging movements. However, the overall directions of deep dives during the commuting phases were similar to those of shallow dives and post-dive periods at the water surface. These findings indicate that king penguins employ compass mechanism(s) that are equivalently reliable both underwater and at the water surface, at any time of the day. This orientation ability appears to enable them to achieve long-distance trips under strong temporal constraints. Further studies on the fine-scale bearing distributions of other diving vertebrates are needed to better understand movement strategies in marine environments.  
  Programme 394  
  Campaign  
  Address  
  Corporate Author Thesis  
  Publisher Place of Publication Editor  
  Language Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 1432-1793 ISBN Medium  
  Area Expedition Conference  
  Notes Approved yes  
  Call Number Serial 8697  
Permanent link to this record
Select All    Deselect All
 |   | 
Details
   print