Skeletons of terrestrial cetaceans and the relationship of whales to artiodactyls
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[1] J. Thewissen,et al. Additional holotype remains of Ambulocetus natans (Cetacea, Ambulocetidae), and their implications for locomotion in early whales , 2002 .
[2] Philip D. Gingerich,et al. Origin of Whales from Early Artiodactyls: Hands and Feet of Eocene Protocetidae from Pakistan , 2001, Science.
[3] J. Thewissen,et al. Eocene mammal faunas from northern Indo-Pakistan , 2001 .
[4] D. Adams,et al. Are the fossil data really at odds with the molecular data? Morphological evidence for cetartiodactyla phylogeny reexamined. , 2001, Systematic biology.
[5] J. Thewissen,et al. A new, diminutive Eocene whale from Kachchh (Gujarat, India) and its implications for locomotor evolution of cetaceans , 2000 .
[6] Zhe‐Xi Luo. Evolution: In search of the whales' sisters , 2000, Nature.
[7] M. O'Leary,et al. The time of origin of whales and the role of behavioral changes in the terrestrial-aquatic transition , 1999, Paleobiology.
[8] N Okada,et al. Phylogenetic relationships among cetartiodactyls based on insertions of short and long interpersed elements: hippopotamuses are the closest extant relatives of whales. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[9] J. Geisler,et al. The position of Cetacea within mammalia: phylogenetic analysis of morphological data from extinct and extant taxa. , 1999, Systematic biology.
[10] S. Hemilä,et al. A model of the odontocete middle ear , 1999, Hearing Research.
[11] M. Uhen. New species of protocetid archaeocete whale, Eocetus wardii (Mammalia: Cetacea) from the middle Eocene of North Carolina , 1999, Journal of Paleontology.
[12] J. Thewissen,et al. Ankle morphology of the earliest Cetaceans and its implications for the phylogenetic relations among ungulates. , 1999, Systematic biology.
[13] P. Gingerich,et al. A new Eocene archaeocete (Mammalia, Cetacea) from India and the time of origin of whales. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[14] J. Thewissen,et al. Whale ankles and evolutionary relationships , 1998, Nature.
[15] D. Bukry,et al. A new middle Eocene protocetid whale (Mammalia: Cetacea: Archaeoceti) and associated biota from Georgia , 1998, Journal of Paleontology.
[16] Frank E. Fish,et al. Locomotor evolution in the earliest cetaceans: functional model, modern analogues, and paleontological evidence , 1997, Paleobiology.
[17] N. Okada,et al. Molecular evidence from retroposons that whales form a clade within even-toed ungulates , 1997, Nature.
[18] M. Milinkovitch,et al. Evolutionary biology: Even-toed fingerprints on whale ancestry , 1997, Nature.
[19] J. Thewissen,et al. Ambulocetus natans , an Eocene cetacean (Mammalia) - from Pakistan , 1996 .
[20] P. Gingerich,et al. New whale from the Eocene of Pakistan and the origin of cetacean swimming , 1994, Nature.
[21] J. Thewissen,et al. Fossil Evidence for the Origin of Aquatic Locomotion in Archaeocete Whales , 1994, Science.
[22] J. Thewissen,et al. Origin of underwater hearing in whales , 1993, Nature.
[23] E. Simons,et al. Hind Limbs of Eocene Basilosaurus: Evidence of Feet in Whales , 1990, Science.
[24] J. Thewissen,et al. Postcranial Osteology of the most Primitive Artiodactyl: Diacodexis pakistanensis (Dichobunidae) , 1990, Anatomia, histologia, embryologia.
[25] Z. Wollberg,et al. Are seismic communication signals transmitted by bone conduction in the blind mole rat? , 1989, Hearing Research.
[26] P. Gingerich,et al. Origin of Whales in Epicontinental Remnant Seas: New Evidence from the Early Eocene of Pakistan , 1983, Science.
[27] M. Lenhardt. Bone conduction hearing in turtles. , 1982, The Journal of auditory research.
[28] K. Schmidt,et al. Speed in animals : their specialization for running and leaping , 1945 .
[29] J. Hartenberger. The emergence of whales. Evolutionary patterns in the origin of Cetacea , 1999 .
[30] P. Gingerich,et al. Terrestrial Mesonychia to Aquatic Cetacea: Transformation of the Basicranium and Evolution of Hearing in Whales , 1999 .
[31] J. Thewissen,et al. Middle Eocene Cetaceans from the Harudi and Subathu Formations of India , 1998 .
[32] J. Geisler,et al. Relationships of Cetacea to Terrestrial Ungulates and the Evolution of Cranial Vasculature in Cete , 1998 .
[33] M. O'Leary,et al. Phylogenetic and Morphometric Reassessment of the Dental Evidence for a Mesonychian and Cetacean Clade , 1998 .
[34] J. Gatesy. Molecular Evidence for the Phylogenetic Affinities of Cetacea , 1998 .
[35] Michel C. Milinkovitch,et al. Cetaceans Are Highly Derived Artiodactyls , 1998 .
[36] M. Uhen. Middle to Late Eocene Basilosaurines and Dorudontines , 1998 .
[37] Zhe‐Xi Luo. Homology and Transformation of Cetacean Ectotympanic Structures , 1998 .
[38] J. Thewissen,et al. The emergence of whales : evolutionary patterns in the origin of Cetacea , 1998 .
[39] P. Gingerich,et al. Functional and Behavioral Implications of Vertebral Structure in Pachyaena ossifraga (Mammalia, Mesonychia) , 1992 .
[40] J. E. King. Seals of the World , 1964 .
[41] B. Schaeffer. Notes on the origin and function of the artiodactyl tarsus. American Museum novitates ; no. 1356 , 1947 .
[42] G. Simpson,et al. A review of the Archaeoceti , 1936 .
[43] A. Howell. Aquatic Mammals: their Adaptations to Life in the Water , 1930, Nature.