Unusual feather structure allows partial plumage wettability in diving great cormorants Phalacrocorax carbo
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David Grémillet | Yvon Le Maho | Sarah Wanless | Rory P. Wilson | S. Wanless | D. Grémillet | Y. Maho | C. Chauvin | Christophe Chauvin | R. Wilson
[1] R. Stephenson,et al. The effect of water surface tension on feather wettability in aquatic birds , 1997 .
[2] R. Gray,et al. The phylogenetic relationships of the shags and cormorants: can sequence data resolve a disagreement between behavior and morphology? , 2000, Molecular phylogenetics and evolution.
[3] Rory P. Wilson,et al. A life in the fast lane: energetics and foraging strategies of the great cormorant , 1999 .
[4] S. Wanless,et al. Modelling the daily food requirements of wintering great cormorants: a bioenergetics tool for wildlife management , 2003 .
[5] A. M. Elowson,et al. Spread-wing postures and the water repellency of feathers: a test of Rijke's hypothesis , 1984 .
[6] J. D. Vries,et al. Thermal Conductance in Aquatic Birds in Relation to the Degree of Water Contact, Body Mass, and Body Fat: Energetic Implications of Living in a Strong Cooling Environment , 1995, Physiological Zoology.
[7] D. Grémillet. Catch per unit effort, foraging efficiency, and parental investment in breeding great cormorants (Phalacrocorax carbo carbo) , 1997 .
[8] A. Rijke. THE WATER REPELLENCY AND FEATHER STRUCTURE OF CORMORANTS, PHALACROCORACIDAE , 1967 .
[9] Rory P. Wilson,et al. Diving Birds in Cold Water: Do Archimedes and Boyle Determine Energetic Costs? , 1992, The American Naturalist.
[10] W. Suter. Der Einfluß fischfressender Vogelarten auf Süßwasserfisch-Bestände — eine Übersicht , 2005, Journal für Ornithologie.
[11] J. Speakman,et al. Foraging energetics of arctic cormorants and the evolution of diving birds , 2001 .
[12] W. Hennemann. Environmental Influences on the Energetics and Behavior of Anhingas and Double-Crested Cormorants , 1983, Physiological Zoology.
[13] R. Sellers,et al. Cormorants Phalacrocorax carbo as fish predators: An appraisal of their conservation and management in Great Britain , 1996 .
[14] R. Stephenson. The contributions of body tissues, respiratory system, and plumage to buoyancy in waterfowl , 1993 .
[15] B. Campbell,et al. A Dictionary of birds , 1985 .
[16] R. Stephenson. Effects of oil and other surface-active organic pollutants on aquatic birds , 1997, Environmental Conservation.
[17] D. Grémillet,et al. Body temperatures of free-living African penguins (Spheniscus demersus) and bank cormorants (Phalacrocorax neglectus). , 1996, The Journal of experimental biology.
[18] R. Stephenson. Respiratory and plumage gas volumes in unrestrained diving ducks (Aythya affinis). , 1995, Respiration physiology.
[19] D. Grémillet,et al. Body temperature and insulation in diving Great Cormorants and European Shags , 1998 .
[20] S M Calisal,et al. Hydrodynamic drag of diving birds: effects of body size, body shape and feathers at steady speeds. , 2001, The Journal of experimental biology.