65
Tickell WLN (2000) Albatrosses. Pica Press, Sussex
Tobalske BW (2010) Hovering and intermittent fl ight in birds. Bioinspir Biomim 5(4):045004
Travers RA (1981) The interarcual cartilage: a review of its development, distribution and value as
an indicator in euteleostean fi shes. J Nat Hist 15:853–871
Tu MC, Lillywhite HB, Menon JG, Menon GK (2002) Postnatal ecdysis establishes the permeability barrier in snake skin: new insights into barrier lipid structures. J Exp Biol 205:
3019–3030
Turner S (1992) Thelodont lifestyles. In: Mark–Kurik E (ed) Fossil fi shes as living animals.
Akademia (Tallinn, Estonia). Academy of Sciences of Estonia, Tallinn
Turner S, Burrow CJ (2011) A Lower Carboniferous xenacanthiform shark from Australia. J
Vertebr Paleontol 31(2):241–257
Tyler SJ, Ormerod SJ (1994) The dippers. T and AD Poyser, London
Uetzt P (2011) 15: the reptile database. Available: http://www.reptile-database.org . Accessed 23
Sept 2011
Uhen MD (2007) Evolution of marine mammals: back to the sea after 300 million years. Anat Rec
290(6):514–522. Copyright © 2007 Wiley-Liss, Inc. Reprinted with permission from John
Wiley and Sons
Van der Brugghen W, Janvier P (1993) Denticles in thelodonts. Nature 364:107
Videler JJ (2005) Avian fl ight. Oxford University Press, New York
Vogel S (1994) Life in moving fl uids. Princeton University Press, Princeton
Vogel S (2003) Comparative biomechanics: life’s physical world. Princeton, Princeton University
Press. © 2003 by Princeton University Press. Reprinted with permission
Voris HK, Voris HH (1983) Feeding strategies in marine snakes: an analysis of evolutionary, morphological, behavioral and ecological relationships. Am Zool 23(2):411–425
Waite JH, Broomell CC (2012) Changing environments and structure–property relationships in
marine biomaterials. J Exp Biol 215:873–883
Walsh SA, MacLeod N, O’Neill M (2008) Spot the penguin: can reliable taxonomic identifi cations
be made using isolated foot bones? In: Walsh S (ed) Automated taxon identifi cation in
Systematic. Reproduced with permission of TAYLOR & FRANCIS GROUP LLC in the format
Republish in a book via Copyright Clearance Center
Wang X et al (2012) Reprinted from Biochem Biophys Res Commun, 421, Wang X, Zhang Y, Wu
Q, Zhang H (2012) Evolutionary landscape of amphibians emerging from ancient freshwater
fi sh inferred from complete mitochondrial genomes, 228–231. Copyright (2012) with permission from Elsevier
Ward DJ, Duffi n CJ (1989) Mesozoic chimeroids. 1. A new chimeroid from the Early Jurassic of
Gloucestershire. Engl Mesozoic Res 2:45–51
Warham J (1977) Wing loadings, wing shapes, and fl ight capabilities of Procellariiformes. NZ J
Zool 4:73–83
Warham J (1990) The Petrels: their ecology and breeding systems. Academic, London
Watanuki Y, Niizuma Y, Geir WG, Sato K, Naito Y (2003) Stroke and glide of wing–propelled divers: deep diving seabirds adjust surge frequency to buoyancy change with depth. Proc R Soc
Lond B 270(1514):483–488 by permission of the Royal Society
Watanuki Y, Wanless S, Harris M et al (2006) Swim speeds and stroke patterns in wing–propelled
divers: a comparison among alcids and a penguin. J Exp Biol 209:1217–1230
Westhoff G et al (2005) Reprinted from Zoology 108, Westhoff G, Fry BG, Bleckmann H (2005)
Sea snakes (Lapemis curtus) are sensitive to low–amplitude water motions. Zoology 108:195–
200, Copyright (2005) with permission from Elsevier
Wetherbee DK, Barlett LM (1962) Egg teeth and shell rupture of the American Woodcock. Auk 79:117
Wiebe KL (2010) Reprinted from Wiebe KL (2010) A supplemental function of the avian egg
tooth. Condor 112:1–7 by permission from The Cooper Ornithological Society. Copyright ©
2010, The Cooper Ornithological Society. Published by the Cooper Ornithological Society
Wikelski M, Thom C (2000) Reprinted by permission from Macmillan Publishers Ltd: Nature
(Wikelski M, Thom C (2000) Marine iguanas shrink to survive El Niño. Nature 403(6765):37–
388) copyright (2000)
References
Tickell WLN (2000) Albatrosses. Pica Press, Sussex
Tobalske BW (2010) Hovering and intermittent fl ight in birds. Bioinspir Biomim 5(4):045004
Travers RA (1981) The interarcual cartilage: a review of its development, distribution and value as
an indicator in euteleostean fi shes. J Nat Hist 15:853–871
Tu MC, Lillywhite HB, Menon JG, Menon GK (2002) Postnatal ecdysis establishes the permeability barrier in snake skin: new insights into barrier lipid structures. J Exp Biol 205:
3019–3030
Turner S (1992) Thelodont lifestyles. In: Mark–Kurik E (ed) Fossil fi shes as living animals.
Akademia (Tallinn, Estonia). Academy of Sciences of Estonia, Tallinn
Turner S, Burrow CJ (2011) A Lower Carboniferous xenacanthiform shark from Australia. J
Vertebr Paleontol 31(2):241–257
Tyler SJ, Ormerod SJ (1994) The dippers. T and AD Poyser, London
Uetzt P (2011) 15: the reptile database. Available: http://www.reptile-database.org . Accessed 23
Sept 2011
Uhen MD (2007) Evolution of marine mammals: back to the sea after 300 million years. Anat Rec
290(6):514–522. Copyright © 2007 Wiley-Liss, Inc. Reprinted with permission from John
Wiley and Sons
Van der Brugghen W, Janvier P (1993) Denticles in thelodonts. Nature 364:107
Videler JJ (2005) Avian fl ight. Oxford University Press, New York
Vogel S (1994) Life in moving fl uids. Princeton University Press, Princeton
Vogel S (2003) Comparative biomechanics: life’s physical world. Princeton, Princeton University
Press. © 2003 by Princeton University Press. Reprinted with permission
Voris HK, Voris HH (1983) Feeding strategies in marine snakes: an analysis of evolutionary, morphological, behavioral and ecological relationships. Am Zool 23(2):411–425
Waite JH, Broomell CC (2012) Changing environments and structure–property relationships in
marine biomaterials. J Exp Biol 215:873–883
Walsh SA, MacLeod N, O’Neill M (2008) Spot the penguin: can reliable taxonomic identifi cations
be made using isolated foot bones? In: Walsh S (ed) Automated taxon identifi cation in
Systematic. Reproduced with permission of TAYLOR & FRANCIS GROUP LLC in the format
Republish in a book via Copyright Clearance Center
Wang X et al (2012) Reprinted from Biochem Biophys Res Commun, 421, Wang X, Zhang Y, Wu
Q, Zhang H (2012) Evolutionary landscape of amphibians emerging from ancient freshwater
fi sh inferred from complete mitochondrial genomes, 228–231. Copyright (2012) with permission from Elsevier
Ward DJ, Duffi n CJ (1989) Mesozoic chimeroids. 1. A new chimeroid from the Early Jurassic of
Gloucestershire. Engl Mesozoic Res 2:45–51
Warham J (1977) Wing loadings, wing shapes, and fl ight capabilities of Procellariiformes. NZ J
Zool 4:73–83
Warham J (1990) The Petrels: their ecology and breeding systems. Academic, London
Watanuki Y, Niizuma Y, Geir WG, Sato K, Naito Y (2003) Stroke and glide of wing–propelled divers: deep diving seabirds adjust surge frequency to buoyancy change with depth. Proc R Soc
Lond B 270(1514):483–488 by permission of the Royal Society
Watanuki Y, Wanless S, Harris M et al (2006) Swim speeds and stroke patterns in wing–propelled
divers: a comparison among alcids and a penguin. J Exp Biol 209:1217–1230
Westhoff G et al (2005) Reprinted from Zoology 108, Westhoff G, Fry BG, Bleckmann H (2005)
Sea snakes (Lapemis curtus) are sensitive to low–amplitude water motions. Zoology 108:195–
200, Copyright (2005) with permission from Elsevier
Wetherbee DK, Barlett LM (1962) Egg teeth and shell rupture of the American Woodcock. Auk 79:117
Wiebe KL (2010) Reprinted from Wiebe KL (2010) A supplemental function of the avian egg
tooth. Condor 112:1–7 by permission from The Cooper Ornithological Society. Copyright ©
2010, The Cooper Ornithological Society. Published by the Cooper Ornithological Society
Wikelski M, Thom C (2000) Reprinted by permission from Macmillan Publishers Ltd: Nature
(Wikelski M, Thom C (2000) Marine iguanas shrink to survive El Niño. Nature 403(6765):37–
388) copyright (2000)
References
