Limb and tail lengths in relation to substrate usage in Tropidurus lizards
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[1] K. Steudel,et al. Ecological correlates of hind‐limb length in the Carnivora , 1997 .
[2] R. V. Damme,et al. Evolutionary relationships between body shape and habitat use in lacertid lizards , 1999 .
[3] C. Rocha,et al. Activity patterns and body temperatures of two sympatric lizards (Tropidurus torquatus and Cnemidophorus ocellifer) with different foraging tactics in southeastern Brazil , 1993 .
[4] Walter J. Bock,et al. Functional and evolutionary morphology of woodpeckers , 1999 .
[5] W. P. Maclean. Water-loss rates of Sphaerodactylus parthenopion (Reptilia: Gekkonidae), the smallest amniote vertebrate , 1985 .
[6] T. Garland,et al. Procedures for the Analysis of Comparative Data Using Phylogenetically Independent Contrasts , 1992 .
[7] R. Gutberlet,et al. A phylogenetic analysis of the tropidurine lizards (Squamata: Tropiduridae), including new characters of squamation and epidermal microstructure , 2000 .
[8] J. Felsenstein. Phylogenies and the Comparative Method , 1985, The American Naturalist.
[9] W. Auffenberg. The Behavioral Ecology of the Komodo Monitor , 1981 .
[10] G. Colli,et al. Niche partitioning and morphology of two syntopic Tropidurus (Sauria : Tropiduridae) in Mato Grosso, Brazil , 1992 .
[11] T. Schoener,et al. Adaptive differentiation following experimental island colonization in Anolis lizards , 1997, nature.
[12] M. Rodrigues,et al. NOTES ON THE ECOLOGY AND KARYOTYPIC DESCRIPTION OF Strobilurus torquatus (SAURIA, IGUANIDAE) , 1989 .
[13] E. Pianka. Ecology and natural history of desert lizards : analyses of the ecological niche and community structure. , 1986 .
[14] T. Garland,et al. Why Not to Do Two-Species Comparative Studies: Limitations on Inferring Adaptation , 1994, Physiological Zoology.
[15] Theodore Garland,et al. Does metatarsal/femur ratio predict maximal running speed in cursorial mammals? , 1993 .
[16] J. Losos,et al. MORPHOLOGICAL DIVERSIFICATION AND ADAPTIVE RADIATION: A COMPARISON OF TWO DIVERSE LIZARD CLADES , 1999, Evolution; international journal of organic evolution.
[17] D. K. Hews. Lizard ecology: Historical and experimental perspectives , 1995 .
[18] E. Pianka. Sympatry of Desert Lizards (Ctenotus) in Western Australia , 1969 .
[19] L. Vitt,et al. The role of habitat shift in the evolution of lizard morphology: evidence from tropical Tropidurus. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[20] Satoshi Tanaka. Thermal ecology of the forest-dwelling agamid lizard, Japalura polygonata ishigakiensis , 1986 .
[21] L. Vitt,et al. A COMPARISON OF EVOLUTIONARY RADIATIONS IN MAINLAND AND CARIBBEAN ANOLIS LIZARDS , 1997 .
[22] P. Aerts,et al. No trade‐off between sprinting and climbing in two populations of the Lizard Podarcis hispanica (Reptilia: Lacertidae). , 1997 .
[23] Marguerite A Butler,et al. TESTING FOR UNEQUAL AMOUNTS OF EVOLUTION IN A CONTINUOUS CHARACTER ON DIFFERENT BRANCHES OF A PHYLOGENETIC TREE USING LINEAR AND SQUARED‐CHANGE PARSIMONY: AN EXAMPLE USING LESSER ANTILLEAN ANOLIS LIZARDS , 1997, Evolution; international journal of organic evolution.
[24] Lee FitzGerald,et al. Geographic Variation, Species Recognition, and Molecular Evolution of Cytochrome Oxidase I in the Tropidurus spinulosus Complex (Iguania: Tropiduridae) , 1998 .
[25] J. Losos,et al. Do Lizards Avoid Habitats in Which Performance Is Submaximal? The Relationship between Sprinting Capabilities and Structural Habitat Use in Caribbean Anoles , 1999, The American Naturalist.
[26] T. Garland,et al. Sprint performance of phrynosomatid lizards, measured on a high‐speed treadmill, correlates with hindlimb length , 1999 .
[27] Anthony R. Ives,et al. An Introduction to Phylogenetically Based Statistical Methods, with a New Method for Confidence Intervals on Ancestral Values , 1999 .
[28] M. Pagel. A method for the analysis of comparative data , 1992 .
[29] P. Aerts,et al. Regular ArticleNo trade-off between sprinting and climbing in two populations of the LizardPodarcis hispanica(Reptilia: Lacertidae)☆ , 1997 .
[30] R. Shine,et al. Thermal Biology of the Australian Forest Dragon, Hypsilurus spinipes (Agamidae) , 1995 .
[31] E. Abouheif. A method for testing the assumption of phylogenetic independence in comparative data , 1999 .
[32] B. Sinervo,et al. The effects of morphology and perch diameter on sprint performance of Anolis lizards , 1989 .
[33] Theodore Garland,et al. Physiological Differentiation of Vertebrate Populations , 1991 .
[34] E. Pianka,et al. Ecology And Natural History Of Desert Lizards , 1986 .
[35] T. Garland,et al. Effects of branch length errors on the performance of phylogenetically independent contrasts. , 1998, Systematic biology.
[36] G. Perry. The Evolution of Search Modes: Ecological versus Phylogenetic Perspectives , 1999, The American Naturalist.
[37] B. Jayne,et al. Effects of incline on speed, acceleration, body posture and hindlimb kinematics in two species of lizard Callisaurus draconoides and Uma scoparia. , 1998, The Journal of experimental biology.
[38] T. Garland,et al. Polytomies in Comparative Analyses of Continuous Characters , 1993 .
[39] T. Garland. Laboratory endurance capacity predicts variation in field locomotor behaviour among lizard species , 1999, Animal Behaviour.
[40] M. Rodrigues. Lizards, Snakes, and Amphisbaenians from the Quaternary Sand Dunes of the Middle Rio Sao Francisco, Bahia, Brazil , 1996 .
[41] T. Garland,et al. Ecological Morphology of Locomotor Performance in Squamate Reptiles , 2022 .
[42] L. Vitt. An introduction to the ecology of cerrado lizards , 1991 .
[43] D. Irschick,et al. An intraspecific analysis of trade-offs in sprinting performance in a West Indian lizard species (Anolis lineatopus) , 1998 .
[44] Theodore Garland,et al. Phylogenetic Analysis of Covariance by Computer Simulation , 1993 .
[45] J. Losos,et al. The effect of perch diameter on escape behaviour of Anolis lizards : laboratory predictions and field tests , 1996, Animal Behaviour.
[46] Robert N. Fisher,et al. A comparative analysis of clinging ability among pad‐bearing lizards , 1996 .
[47] R. Díaz-Uriarte. Anti–predator behaviour changes following an aggressive encounter in the lizard Tropidurus hispidus , 1999, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[48] Martha,et al. Phylogenetic Analysis and Taxonomy of the Tropidurus Group of Lizards ( Iguania : Tropiduridae ) , 2022 .
[49] R. Ballinger,et al. Ecological Observations of the Lizard, Xenosaurus grandis in Cuautlapan, Veracruz, Mexicol , 1995 .
[50] W. Atchley. Ratios, Regression Intercepts, and the Scaling of Data , 1978 .
[51] Ramón Díaz-Uriarte,et al. TESTING HYPOTHESES OF CORRELATED EVOLUTION USING PHYLOGENETICALLY INDEPENDENT CONTRASTS: SENSITIVITY TO DEVIATIONS FROM BROWNIAN MOTION , 1996 .
[52] G. Burghardt. Lizard Ecology: Studies of a Model Organism, Raymond B. Huey, Eric R. Pianka, Thomas W. Schoener (Eds.). Harvard University Press, Cambridge, Massachusetts (1983), 501 , 1984 .
[53] Jayne,et al. Effects of incline and speed on the three-dimensional hindlimb kinematics of a generalized iguanian lizard (Dipsosaurus dorsalis) , 1999, The Journal of experimental biology.
[54] Barry Sinervo,et al. Walking the Tight Rope: Arboreal Sprint Performance Among Sceloporus Occidentalis Lizard Populations , 1991 .
[55] Joint effects of feeding and breeding behaviour on trophic dimorphism in hummingbirds , 1999, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[56] Jonathan B. Losos,et al. Ecomorphology, Performance Capability, and Scaling of West Indian Anolis Lizards: An Evolutionary Analysis , 1990 .
[57] T. Garland,et al. Polytomies and phylogenetically independent contrasts: examination of the bounded degrees of freedom approach. , 1999, Systematic biology.
[58] L. Vitt,et al. Behavioural ecology of Tropidurus hispidus on isolated rock outcrops in Amazonia , 1996, Journal of Tropical Ecology.
[59] J. Losos,et al. ECOLOGICAL CORRELATES OF NUMBER OF SUBDIGITAL LAMELLAE IN ANOLES , 1997 .
[60] J. Scheibe. Climate, Competition, and the Structure of Temperate Zone Lizard Communities , 1987 .
[61] D. Miles. Chapter 10. Covariation between Morphology and Locomotory Performance in Sceloporine Lizards , 1994 .
[62] E. Williams. The Origin of Faunas. Evolution of Lizard Congeners in a Complex Island Fauna: A Trial Analysis , 1972 .
[63] A. F. Bennett,et al. The evolution of activity capacity. , 1991, The Journal of experimental biology.
[64] B. Jayne,et al. A Field Study of the Effects of Incline on the Escape Locomotion of a Bipedal Lizard, Callisaurus draconoides , 1999, Physiological and Biochemical Zoology.
[65] E. N. Arnold. A cladisticization: phylogenetic relationships of the lizard families. , 1989, Science.
[66] J. Melville,et al. Evolutionary relationships between morphology, performance and habitat openness in the lizard genus Niveoscincus (Scincidae: Lygosominae) , 2000 .
[67] J. Pounds. Ecomorphology, Locomotion, and Microhabitat Structure: Patterns in a Tropical Mainland Anolis Community , 1987 .
[68] J. Losos,et al. THE EVOLUTION OF FORM AND FUNCTION: MORPHOLOGY AND LOCOMOTOR PERFORMANCE IN WEST INDIAN ANOLIS LIZARDS , 1990, Evolution; international journal of organic evolution.
[69] D. Miles,et al. Locomotor performance and dominance in male Tree Lizards, Urosaurus ornatus , 2000 .
[70] A. Greer. The Biology and Evolution of Australian Lizards , 1989 .
[71] T. Garland. Rate Tests for Phenotypic Evolution Using Phylogenetically Independent Contrasts , 1992, The American Naturalist.
[72] T. Garland,et al. EVOLUTION OF SPRINT SPEED IN LACERTID LIZARDS: MORPHOLOGICAL, PHYSIOLOGICAL, AND BEHAVIORAL COVARIATION , 1995, Evolution; international journal of organic evolution.
[73] L. Vitt,et al. Ecology of the arboreal tropidurid lizard Tropidurus (=Plica) umbra in the Amazon region , 1997 .
[74] Glasheen,et al. Size-dependence of water-running ability in basilisk lizards (Basiliscus basiliscus) , 1996, The Journal of experimental biology.
[75] J. Losos. The Evolution of Convergent Structure in Caribbean Anolis Communities , 1992 .
[76] E. Williams. 15. ECOMORPHS, FAUNAS, ISLAND SIZE, AND DIVERSE END POINTS IN ISLAND RADIATIONS OF ANOLIS , 1983 .
[77] T. Schoener,et al. ADAPTATION AND CONSTRAINT IN THE EVOLUTION OF SPECIALIZATION OF BAHAMIAN ANOLIS LIZARDS , 1994, Evolution; international journal of organic evolution.
[78] L. Vitt. Ecology and life history of the scansorial arboreal lizard Plica plica (Iguanidae) in Amazonian Brazil , 1991 .
[79] J. Losos,et al. ECOLOGICAL MORPHOLOGY OF CARIBBEAN ANOLES , 1999 .
[80] Anthony R. Ives,et al. Using the Past to Predict the Present: Confidence Intervals for Regression Equations in Phylogenetic Comparative Methods , 2000, The American Naturalist.
[81] R. Shine,et al. Shrinking forest shrinks skink : morphological change in response to rainforest fragmentation in the prickly forest skink (Gnypetoscincus queenslandiae) , 1999 .
[82] Trade-Offs Between Sprinting and Clinging Ability in Kenyan Chameleons , 1993 .
[83] J. Losos,et al. A COMPARATIVE ANALYSIS OF THE ECOLOGICAL SIGNIFICANCE OF MAXIMAL LOCOMOTOR PERFORMANCE IN CARIBBEAN ANOLIS LIZARDS , 1998, Evolution; international journal of organic evolution.
[84] A. F. Bennett,et al. SELECTION ON LOCOMOTOR PERFORMANCE CAPACITY IN A NATURAL POPULATION OF GARTER SNAKES , 1990, Evolution; international journal of organic evolution.