The re-emergence of felid camouflage with the decay of predator recognition in deer under relaxed selection
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[1] A. Agresti,et al. Categorical Data Analysis , 1991, International Encyclopedia of Statistical Science.
[2] S. Carr,et al. Direction of Introgressive Hybridization between Species of North American Deer (Odocoileus) as Inferred from Mitochondrial-Cytochrome-b Sequences , 1993 .
[3] T. Stankowich,et al. Alarm walking in Columbian black-tailed deer: its characterization and possible antipredatory signaling functions , 2008 .
[4] J. Berger,et al. Recolonizing Carnivores and Naïve Prey: Conservation Lessons from Pleistocene Extinctions , 2001, Science.
[5] S. Lucas,et al. Chapter 12 , 2003, Unlocking.
[6] H. Ernest,et al. Genetic structure of mountain lion (Puma concolor) populations in California , 2004, Conservation Genetics.
[7] A. Ortolani. Spots, stripes, tail tips and dark eyes: Predicting the function of carnivore colour patterns using the comparative method , 1999 .
[8] T. Caro,et al. Adaptive significance of antipredator behaviour in artiodactyls , 2004, Animal Behaviour.
[9] D. Blumstein. Moving to suburbia: ontogenetic and evolutionary consequences of life on predator‐free islands , 2002 .
[10] P. Rousseeuw,et al. Wiley Series in Probability and Mathematical Statistics , 2005 .
[11] Richard G. Coss,et al. Effects of predator behavior and proximity on risk assessment by Columbian black-tailed deer , 2006 .
[12] J. Krebs,et al. Arms races between and within species , 1979, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[13] P. Daggett,et al. The Jaguar in North America , 1974, American Antiquity.
[14] J. Byers. American Pronghorn: Social Adaptations and the Ghosts of Predators Past , 1998 .
[15] A. Sarna‐Wojcicki. Correlation of late Cenozoic tuffs in the central Coast Ranges of California by means of trace and minor-element chemistry , 1976 .
[16] C. Bell,et al. 7. The Blancan, Irvingtonian, and Rancholabrean Mammal Ages , 2004 .
[17] D. Blumstein. The Multipredator Hypothesis and the Evolutionary Persistence of Antipredator Behavior , 2006 .
[18] W. Wildgen. The Paleolithic origins of art , its dynamic and topological aspects , and the transition to writing , 2003 .
[19] R. G. Coss,et al. Recognition of partially concealed leopards by wild bonnet macaques (Macaca radiata) The role of the spotted coat , 2005, Behavioural Processes.
[20] Burt P. Kotler. Antipredator Defenses in Birds and Mammals, Tim Caro. University of Chicago Press, Chicago (2005), pp. xv+591. Price £27.00 paperback , 2006 .
[21] W. Fry,et al. Cervids from the Pliocene and Pleistocene of central Washington , 1974 .
[22] A. S. Griffin,et al. Olfactory predator recognition: wallabies may have to learn to be wary , 2002 .
[23] Donald H. Owings,et al. Evolutionary Dissipation of an Antisnake System: Differential Behavior By California and Arctic Ground Squirrels in Above- and Below-Ground Contexts , 1990 .
[24] C. Groves,et al. Evolution and phylogeny of old world deer. , 2004, Molecular phylogenetics and evolution.
[25] A. Barnosky,et al. Comparison of Mammalian Species Richness and Community Structure in Historic and Mid-Pleistocene Times in the Colorado Rocky Mountains , 2005 .
[26] A. Berta. Pleistocene Mammals of North America , 1981 .
[27] D. Macdonald,et al. Evolution of the mane and group-living in the lion ( Panthera leo ): a review , 2004 .
[28] D. Blumstein,et al. A Test of the Multi-Predator Hypothesis: Rapid Loss of Antipredator Behavior after 130 years of Isolation , 2004 .
[29] R. G. Coss,et al. Context and Animal Behavior III: The Relationship Between Early Development and Evolutionary Persistence of Ground Squirrel Antisnake Behavior , 1991 .
[30] D. Smith,et al. Calibrating the molecular clock: estimates of ground squirrel divergence made using fossil and geological time markers. , 1984, Molecular biology and evolution.
[31] P. Sherman,et al. Pup Shoving by Adult Naked Mole-Rats , 2002 .
[32] How the leopard got its spots: a phylogenetic view of the evolution of felid coat patterns , 1997 .
[33] Age Differences in the Responses to Adult and Juvenile Alarm Calls by Bonnet Macaques (Macaca radiata) , 2000 .
[34] H. B. Cott,et al. Adaptive Coloration in Animals , 1940 .
[35] G. Simpson. Large Pleistocene felines of North America. American Museum novitates ; no. 1136 , 1941 .
[36] M. Culver,et al. Genomic ancestry of the American puma (Puma concolor). , 2000, The Journal of heredity.
[37] C. Swisher,et al. Land Mammal High-Resolution Geochronology, Intercontinental Overland Dispersals, Sea Level, Climate and Vicariance , 1995 .
[38] D. G. Smith,et al. Development of antisnake defenses in California ground squirrels (Spermophilus beecheyi). II: Microevolutionary effects of relaxed selection from rattlesnakes , 1993 .
[39] J. Lythgoe,et al. Zebra stripes and tiger stripes: the spatial frequency distribution of the pattern compared to that of the background is significant in display and crypsis , 1987 .
[40] U. Ramakrishnan,et al. Recognition of heterospecific alarm vocalizations by bonnet macaques (Macaca radiata). , 2000, Journal of comparative psychology.
[41] R. G. Coss,et al. PERCEPTUAL ASPECTS OF LEOPARD RECOGNITION BY WILD BONNET MACAQUES (MACACA RADIATA) , 2000 .
[42] Janice C. Daniel,et al. Foraging behavior of three Tasmanian macropodid marsupials in response to present and historical predation threat , 2003 .
[43] LARGE PLEISTOCENE FELINES OF NORTH AMERICA BY GEORGE GAYLORD SIMPSON , 2004 .