Published April 1, 2017
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Preadaptive Stage For Flight Origin
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Bogdanovich, I. A. (2017): Preadaptive Stage For Flight Origin. Vestnik Zoologii 51 (2): 179-182, DOI: 10.1515/vzoo-2017-0025, URL: http://dx.doi.org/10.1515/vzoo-2017-0025
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References
- Alexander, R. 1968. Animal Mechanics. Sidgwick and Jackson, London, 1-346.
- Beebe, C. W. 1915. Tetrapteryx stage in the ancestry of Birds. Zoologica, 2, 38-52.
- Bogdanovich, I. A. 2000. Foot transformations in early evolution of birds. Vestnik Zoologii, 34 (4-5), 123-127 [In Russian].
- Bogdanovich, I. A. 2007. Once more about origin of birds and flight: "cursorial" or "arboreal"? Vestnik Zoologii, 41 (3), 283-284.
- Bogdanovich, I. A. 2014. Origin and evolutionary-morphological characteristics of terrestrial locomotion apparatus of birds. Vestnik Zoologii, Suppl. 31, 1-80 [In Russian].
- Caple, G., Balda, R. P., Wills, W. R. 1983. The physics of leaping animals and the evolution of preflight. American Naturalist, 121 (4), 455-476.
- Carpenter, K. 2002. Forelimb biomechanics of nonavian theropod dinosaurs in predation. Senckeb Lethaea, 82 (1), 59-76.
- Coombs, W. P., Jr. 1978. Theoretical aspects of cursorial adaptations in dinosaurs. Quarterly Review of Biology, 53 (4), 393-418.
- Cowen, R., Lipps, J. H. 1982. An adaptive scenario for the origin of birds and of flight in birds. In: Mamet, B. L., Copeland, M. J., eds. Third North American Paleontological Convention, Proceedings. University de Montreal, Quebec, 1, 109-112.
- Czercas, S. A., Feduccia, A. 2014. Jurassic archosaur is a non-dinosaurian bird. Journal of Ornithology, DOI 10.1007/s 10336-014-1098-9
- Dececchi, T., Larson, H. C. E., Habib, M. B. 2016. The wings before bird: an evaluation of flapping-based locomotory hypotheses in bird antecedents. PeerJ 4: e2159; DOI 10.77.17/peerj.2159
- Du Brul, E. L. 1962. The general phenomenon of bipedalism. American Zoologist, 2, 205-208.
- Gatesy, S. M. 1991. Hind limb movements of the American alligator (Alligator mississippiensis) and postural grades. Journal of Zoology of London, 224, 577-588.
- Ilichyov, V. D., Kartashev, N. N., Shilov, I. A. 1982. General ornithology. Vysshaya shkola, Moscow, 1-464 [In Russian].
- Jenkins, F. A. Jr. 1993. The evolution of the avian shoulder joint. American journal of science, 293-A, 253-267.
- Kaiser, G., Dyke, G. 2014. The development of flight surfaces on the avian wing. Zoologicheskii Zhurnal, 93, 1155-1165 [In Russian].
- Kubo, T., Kubo, M. O. 2012. Associated evolution of bipedality and cursoriality among Triassic archosaurs: a phylogenetically controlled evaluation. Paleobiology, 38 (3), 474-485.
- Kurochkin, E. N. 2001. New Ideas about the Origin and Early Evolution of Birds. In: Kurochkin, E. N., Rakhimov, I. I., eds. Achievements and Problems of Ornithology of Northern Eurasia on the Eve of the New Century. MAGARIF, Kazan, 68-96 [In Russian].
- Kurochkin, E. N. 2004. Four-winged dinosaur and the origin of birds. Priroda, 5, 3-12 [In Russian.]
- Kurochkin, E. N. 2006. Parallel Evolution of Theropod Dinosaurs and Birds. Zoologicheskii Zhurnal, 85, 283- 297 [In Russian.]
- Kurochkin, E. N. 2007. Primogenitors of feathery kingdom. Vokrug sveta, 2, 88-93 [In Russian].
- Kurochkin, E. N., Bogdanovich, I. A. 2008. On the origin of avian flight: compromise and system approaches. Biology Bulletin, 35, 1-11.
- Kurochkin, E. N., Bogdanovich, I. A. 2010. The origin of feathered flight. Paleontological journal, 44, 1570-1588.
- Kuznetsov, A. N. 1999. Structural types of limbs and evolution of running technique in tetrapods. Zoological Museum of Moscow State University, Zoologicheskie issledovania, 3, 1-94 [In Russian].
- Kuznetsov, A. N., Sennikov, A. G. 2000. On the function of a perforated acetabulum in archosaurs and birds. Paleontological journal, 34 (4), 76-85 [In Russian].
- Long, C. A., Zhang, G. P., George, T. F., Long, C. F. 2003. Physical theory, origin of flight, and synthesis proposed for birds. Journal of Theoretical Biology, 224 (1), 9-26.
- Martin, L. D. 1983. The origin of birds and of avian flight. Current Ornithology, 1, 105-129.
- Middleton, K. M., Gatesy, S. M. 2000. Theropod forelimb design and evolution. Zoological Journal of the Linnean Society, 128 (2), 149-187.
- Mivart, G. 1871 (Convertion 2004). The genesis of species. D. Appleton and Company, New York, 1-314.
- Osborn, H. F. 1916. Skeletal adaptations of Ornitholestes, Struthiomimus, Tyrannosaurus. Bulletin of the American Museum of Natural History, 35, 733-771.
- Ostrom, J. H. 1976. Archaeopteryx and the origin of birds. Biological Journal of the Linnean Society, 8, 91-182.
- Ostrom, J. H. 1979. Bird flight: How did it begin? American scientists, 67, 46-56.
- Padian, K. 1983. A functional analysis of flying and walking in pterosaurs. Paleobiology, 9, 218-239.
- Parrish, J. M. 1986. Locomotor adaptations in the hindlimb and pelvis of the Thecodontia. Hunteria, 1 (2), 1-35.
- Panyutina, A. A., Korzun, L. P., Kuznetsov, A. N. 2015. Flight of mammals: from terrestrial limbs to wings. Springer, 1-332.
- Sennikov, A. G. 1989. The Major Evolutionary Patterns of the Development of the Locomotor Apparatus of Archosaurs. Paleontologicheskii Zhurnal, 4, 63-72 [In Russian].
- Sennikov, A. G. 1999. The Evolution ofthe Postcranial Skeleton in Archosaurs in Connection with New Finds of the Rauisuchidae in the Early Triassic of Russia. Paleontologicheskii Zhurnal, 6, 44-56 [In Russian].
- Sennikov, A. G, Makarov, O. 2009. How saurian bones revive. Popular mechanics, 12, 38-44 [In Russian].
- Senter, P. 2006 a. Forelimb function in Ornitholestes hermanni Osborn (Dinosauria, Theropoda). Palaeontology, 49, 1029-1034.
- Senter, P. 2006 b. Comperison of forelimb function between Deinonychus and Bambiraptor (Theropoda: Droaeosauridae). Journal of Vertebrate Palaeontology, 26, 897-906.
- Thulborn, R. A. 1984. The avian relationships of Archaeopteryx, and the origin of birds. Zoological Journal of the Linnean Society, 82, 119-158.
- Schmalhausen, I. I. 1947. Bases of comparative anatomy of vertebrates. Sovietskaya nauka, Moscow, 1-540 [In Russian].
- Xu, X., Cheng, Y., Wang, X., Chang, C. 2003. Pygostyle-like structure from Beipiaosaurus (Theropoda, Therizono-sauroidea) from the Lower Cretaceous Yixian Formation of Liaoning, China. Acta Geologica Sinica, 77 (3), 294-298.
- Xu, X., Zhang, F. 2005. A new maniraptoran dinosaur from China with long feathers on the metatarsus. Naturwissenschaften, 92, 173-177.
- Zinoviev, A. V. 2010. Comparative anatomy, structural modifications and adaptive evolution of avian apparatus of bipedal locomotion. KMK Scientific Press Ltd., Moscow, 1-285 [In Russian].