207
Uhen MD (2010) The origin(s) of whales. Annu Rev Earth Planet Sci 38:189–219
Unwin DM, Deeming DC (2008) Pterosaur eggshell structure and its implications for pterosaur
reproductive biology. Zitteliana B 28:199–207
Van Bressem MF, Van Waerebeek K, Siebert U et al (2000) Genital diseases in the peruvian dusky
dolphin ( Lagenorhynchus obscurus ). Comp Pathol 122(4):266–277
Venn–Watson S, Smith CR, Johnson S et al (2010a) Clinical relevance of urate nephrolithiasis in
bottlenose dolphins Tursiops truncatus . Dis Aquat Organ 89(2):167–177
Venn–Watson SK, Townsend FI, Daniels RL et al (2010b) Hypocitraturia in common Bottlenose
Dolphins ( Tursiops truncatus ): assessing a potential risk factor for urate nephrolithiasis. Comp
Med 60:149–153
Verpy E, Leibovici M, Petit C (1999) Characterization of otoconin-95, the major protein of murine
otoconia, provides insights into the formation of these inner ear biominerals. Proc Natl Acad
Sci USA 96:529–534
Vickaryous MK, Hall BK (2008) Development of the dermal skeleton in Alligator mississippiensis
(Archosauria, Crocodylia) with comments on the homology of osteoderms. J Morphol 269:
398–422. Copyright © 2007 Wiley-Liss, Inc., A Wiley Company. Reprinted with permission
Vignieri S (2012) Republished with permission of AAAS, from Vignieri S (2012) Magnetic
sense. Neurosci Sci Signal 5(226):ec153; permission conveyed through Copyright Clearance
Center, Inc
Viguier C (1882) Le sens d’orientation et ses organes chez les animaux et chez l’homme. Rev Phil
France et de l’E′ tranger 14:1–36
Vilches-Troya J, Dunn RF, O’Leary DP (1984) Relationship of the vestibular hair cells to magnetic
particles in the otolith of the guitarfi sh sacculus. J Comput Neurol 226(4):489–494. Copyright
© 1984 Alan R. Liss, Inc
Vilstrup T (1951) Structure and function of the membranous sacs of the labyrinth in acanthias
vulgaris. Ejnar Munksgaard, Copenhagen
von Baer KE (1837) Anatomische und zoologische Untersuchungen über das Walross (Trichenus
rosmarus) und Vergleichung dieses Thiers mit andern See–Säugethieren. Mém de l’Acad
Impér des Sciences de Saint–Pétersbourg, 6th sér. Sci Math Phys et Nat 4:96–236
von Schreiber JCD (1774) Die Säugethiere in Abbildungen nach der Natur. Wolfgang Walther,
Erlangen, pp 1775–1855
Walcott C (1978) Annomalies in the earth’s magnetic fi eld increase the scatter of pigeon’s vanishing
bearings. In: Schmidt–König K, Keeton WTZ (eds) Animal migration, navigation, and homing.
Springer, Berlin
Walcott C, Green RP (1974) Orientation of homing pigeons altered by a change in the direction of
the applied magnetic fi eld. Science 184:180–182
Walker MM (1998) On a wing and a vector: a model for magnetic fi eld navigation by homing
pigeons. J Theor Biol 192:341–349
Walker MM, Kirschvink JL, Chang SBR et al (1984) A candidate magnetic sense organ in the
yellowfi n tuna, Thunnus albacares . Science 224:751–753
Walker MM et al (1988) Republished with permission of The Company of Biologists Ltd, from
Walker MM, Quinn TP, Kirschvink JL, Groot C (1988) Production of single-domain magnetite
throughout life by sockeye salmon, Oncorhynchus nerka. J Exp Biol 140:51–63. Copyright
(1988); permission conveyed through Copyright Clearance Center, Inc
Walker MM et al (1992) Republished with permission of The Company of Biologists Ltd, from
Walker MM, Kirschvink JL, Ahmed G, Dizon AE (1992) Evidence that fi n whales respond to
the geomagnetic fi eld during migration. J Exp Biol 171:67–78. Copyright (1992); permission
conveyed through Copyright Clearance Center, Inc
Walker CE, Diebel CV, Haugh PM et al (1997) Structure and function of the vertebrate magnetic
sense. Nature 390:371–376
Walker MM, Dennis TE, Kirschvink JL (2002) The magnetic sense and its use in long–distance
navigation by animals. Curr Opin Neurobiol 12:735–744
Walker MM et al (2007) Reprinted from Walker MM, Diebel CE, Kirschvink JL (2007)
Magnetoreception In: Hara TJ, Zielinski B (eds) Sensory systems neuroscience. Fish physiology
References
Uhen MD (2010) The origin(s) of whales. Annu Rev Earth Planet Sci 38:189–219
Unwin DM, Deeming DC (2008) Pterosaur eggshell structure and its implications for pterosaur
reproductive biology. Zitteliana B 28:199–207
Van Bressem MF, Van Waerebeek K, Siebert U et al (2000) Genital diseases in the peruvian dusky
dolphin ( Lagenorhynchus obscurus ). Comp Pathol 122(4):266–277
Venn–Watson S, Smith CR, Johnson S et al (2010a) Clinical relevance of urate nephrolithiasis in
bottlenose dolphins Tursiops truncatus . Dis Aquat Organ 89(2):167–177
Venn–Watson SK, Townsend FI, Daniels RL et al (2010b) Hypocitraturia in common Bottlenose
Dolphins ( Tursiops truncatus ): assessing a potential risk factor for urate nephrolithiasis. Comp
Med 60:149–153
Verpy E, Leibovici M, Petit C (1999) Characterization of otoconin-95, the major protein of murine
otoconia, provides insights into the formation of these inner ear biominerals. Proc Natl Acad
Sci USA 96:529–534
Vickaryous MK, Hall BK (2008) Development of the dermal skeleton in Alligator mississippiensis
(Archosauria, Crocodylia) with comments on the homology of osteoderms. J Morphol 269:
398–422. Copyright © 2007 Wiley-Liss, Inc., A Wiley Company. Reprinted with permission
Vignieri S (2012) Republished with permission of AAAS, from Vignieri S (2012) Magnetic
sense. Neurosci Sci Signal 5(226):ec153; permission conveyed through Copyright Clearance
Center, Inc
Viguier C (1882) Le sens d’orientation et ses organes chez les animaux et chez l’homme. Rev Phil
France et de l’E′ tranger 14:1–36
Vilches-Troya J, Dunn RF, O’Leary DP (1984) Relationship of the vestibular hair cells to magnetic
particles in the otolith of the guitarfi sh sacculus. J Comput Neurol 226(4):489–494. Copyright
© 1984 Alan R. Liss, Inc
Vilstrup T (1951) Structure and function of the membranous sacs of the labyrinth in acanthias
vulgaris. Ejnar Munksgaard, Copenhagen
von Baer KE (1837) Anatomische und zoologische Untersuchungen über das Walross (Trichenus
rosmarus) und Vergleichung dieses Thiers mit andern See–Säugethieren. Mém de l’Acad
Impér des Sciences de Saint–Pétersbourg, 6th sér. Sci Math Phys et Nat 4:96–236
von Schreiber JCD (1774) Die Säugethiere in Abbildungen nach der Natur. Wolfgang Walther,
Erlangen, pp 1775–1855
Walcott C (1978) Annomalies in the earth’s magnetic fi eld increase the scatter of pigeon’s vanishing
bearings. In: Schmidt–König K, Keeton WTZ (eds) Animal migration, navigation, and homing.
Springer, Berlin
Walcott C, Green RP (1974) Orientation of homing pigeons altered by a change in the direction of
the applied magnetic fi eld. Science 184:180–182
Walker MM (1998) On a wing and a vector: a model for magnetic fi eld navigation by homing
pigeons. J Theor Biol 192:341–349
Walker MM, Kirschvink JL, Chang SBR et al (1984) A candidate magnetic sense organ in the
yellowfi n tuna, Thunnus albacares . Science 224:751–753
Walker MM et al (1988) Republished with permission of The Company of Biologists Ltd, from
Walker MM, Quinn TP, Kirschvink JL, Groot C (1988) Production of single-domain magnetite
throughout life by sockeye salmon, Oncorhynchus nerka. J Exp Biol 140:51–63. Copyright
(1988); permission conveyed through Copyright Clearance Center, Inc
Walker MM et al (1992) Republished with permission of The Company of Biologists Ltd, from
Walker MM, Kirschvink JL, Ahmed G, Dizon AE (1992) Evidence that fi n whales respond to
the geomagnetic fi eld during migration. J Exp Biol 171:67–78. Copyright (1992); permission
conveyed through Copyright Clearance Center, Inc
Walker CE, Diebel CV, Haugh PM et al (1997) Structure and function of the vertebrate magnetic
sense. Nature 390:371–376
Walker MM, Dennis TE, Kirschvink JL (2002) The magnetic sense and its use in long–distance
navigation by animals. Curr Opin Neurobiol 12:735–744
Walker MM et al (2007) Reprinted from Walker MM, Diebel CE, Kirschvink JL (2007)
Magnetoreception In: Hara TJ, Zielinski B (eds) Sensory systems neuroscience. Fish physiology
References
