Amphibians as models for studying environmental change.
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[1] J. Gibbons,et al. Terrestrial habitat: A vital component for herpetofauna of isolated wetlands , 2003, Wetlands.
[2] M. Knutson,et al. AGRICULTURAL PONDS SUPPORT AMPHIBIAN POPULATIONS , 2004 .
[3] J. Kiesecker,et al. Synergism between trematode infection and pesticide exposure: A link to amphibian limb deformities in nature? , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[4] C. Carey,et al. Hypothesis Concerning the Causes of the Disappearance of Boreal Toads from the Mountains of Colorado , 1993 .
[5] N. Hairston. EVOLUTION UNDER INTERSPECIFIC COMPETITION: FIELD EXPERIMENTS ON TERRESTRIAL SALAMANDERS , 1980, Evolution; international journal of organic evolution.
[6] K. Lips,et al. Neotropical tadpoles influence stream benthos: evidence for the ecological consequences of decline in amphibian populations , 2004 .
[7] B. Young,et al. Widespread amphibian extinctions from epidemic disease driven by global warming , 2006, Nature.
[8] H. Wilbur. Competition, Predation, and the Structure of the Ambystoma-Rana Sylvatica Community , 1972 .
[9] E. Williams,et al. EFFECTS OF MALATHION ON DISEASE SUSCEPTIBILITY IN WOODHOUSE'S TOADS , 1999, Journal of wildlife diseases.
[10] M. Boone,et al. Aquatic and terrestrial mesocosms in amphibian ecotoxicology , 2005 .
[11] S. Sessions,et al. Morphological clues from multilegged frogs: are retinoids to blame? , 1999, Science.
[12] H. Wilbur. Density-Dependent Aspects of Metamorphosis in Ambystoma and Rana Sylvatica , 1976 .
[13] C. L. Rowe,et al. The Value of Simulated Pond Communities in Mesocosms for Studies of Amphibian Ecology and Ecotoxicology , 1994 .
[14] Xavier Glaudas,et al. Remarkable Amphibian Biomass and Abundance in an Isolated Wetland: Implications for Wetland Conservation , 2006, Conservation biology : the journal of the Society for Conservation Biology.
[15] E. Werner,et al. MECHANISMS CREATING COMMUNITY STRUCTURE ACROSS A FRESHWATER HABITAT GRADIENT , 1996 .
[16] P. Daszak,et al. Anthropogenic environmental change and the emergence of infectious diseases in wildlife. , 2001, Acta tropica.
[17] M. Dorcas,et al. Effects of prey type on specific dynamic action, growth, and mass conversion efficiencies in the horned frog, Ceratophrys cranwelli. , 2005, Comparative biochemistry and physiology. Part A, Molecular & integrative physiology.
[18] G. Fellers,et al. Collapse of a Regional Frog Fauna in the Yosemite Area of the California Sierra Nevada, USA , 1996 .
[19] R. L. Wyman,et al. A Symposium on Amphibian Declines and Habitat Acidification , 1992 .
[20] C. Bridges. ECOTOXICOLOGY OF AMPHIBIANS AND REPTILES , 2002, Copeia.
[21] James P. Collins,et al. Global amphibian declines: sorting the hypotheses , 2003 .
[22] L. McConnell,et al. Pesticides in mountain yellow‐legged frogs (Rana muscosa) from the Sierra Nevada Mountains of California, USA , 2004, Environmental toxicology and chemistry.
[23] JAMES P. COLLINS,et al. May You Live in Interesting Times: Using Multidisciplinary and Interdisciplinary Programs to Cope with Change in the Life Sciences , 2002 .
[24] Jaime Bertoluci. Tadpoles: the biology of anuran larvae , 2002 .
[25] J. Pounds,et al. Tests of Null Models for Amphibian Declines on a Tropical Mountain , 1997 .
[26] J. Unrine,et al. Bioaccumulation of trace elements in omnivorous amphibian larvae: implications for amphibian health and contaminant transport. , 2007, Environmental pollution.
[27] J. Congdon,et al. Oral deformities in tadpoles (Rana catesbeiana) associated with coal ash deposition: effects on grazing ability and growth , 1996 .
[28] J. Petranka,et al. Wetland Restoration for Amphibians: Should Local Sites Be Designed to Support Metapopulations or Patchy Populations? , 2006 .
[29] J. P. Collins,et al. Ecological Aspects of Amphibian Metamorphosis , 1973, Science.
[30] David M. Green,et al. Sex, isolation and fidelity: unbiased long-distance dispersal in a terrestrial amphibian , 2006 .
[31] Malcolm L. Hunter,et al. Effects of Silvicultural Edges on the Distribution and Abundance of Amphibians in Maine , 1998 .
[32] M. García‐París,et al. Evidence of a chytrid fungus infection involved in the decline of the common midwife toad (Alytes obstetricans) in protected areas of central Spain , 2001 .
[33] D. B. Seale. Influence of Amphibian Larvae on Primary Production, Nutrient Flux, and Competition in a Pond Ecosystem , 1980 .
[34] R. Alford,et al. Population trends associated with skin peptide defenses against chytridiomycosis in Australian frogs , 2005, Oecologia.
[35] Kevin B. Lunde,et al. The effect of trematode infection on amphibian limb development and survivorship. , 1999, Science.
[36] R. Harris,et al. Salamander Predation and the Structure of Experimental Communities: Responses of Notophthalmus and Microcrustacea , 1983 .
[37] J. Kiesecker,et al. Complex causes of amphibian population declines , 2001, Nature.
[38] Nelson G. Hairston,et al. THE EXPERIMENTAL TEST OF AN ANALYSIS OF FIELD DISTRIBUTIONS: COMPETITION IN TERRESTRIAL SALAMANDERS' , 1980 .
[39] C. Densmore,et al. Diseases of amphibians. , 2007, ILAR journal.
[40] R. D. Semlitsch,et al. Trophic relations in a temporary pond: larval salamanders and their microinvertebrate prey , 1988 .
[41] J. Kiesecker,et al. Complexity in conservation: lessons from the global decline of amphibian populations , 2002 .
[42] Raymond D. Semlitsch,et al. An Experimental Investigation of Landscape Resistance of Forest versus Old‐Field Habitats to Emigrating Juvenile Amphibians , 2002 .
[43] V. P. Mai,et al. Pesticide Mixtures, Endocrine Disruption, and Amphibian Declines: Are We Underestimating the Impact? , 2006, Environmental health perspectives.
[44] D. Sparling,et al. Amphibian decline: An integrated analysis of multiple stressor effects , 2003 .
[45] R. Relyea,et al. Predator-induced stress makes the pesticide carbaryl more deadly to gray treefrog tadpoles (Hyla versicolor) , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[46] J. Unrine,et al. Effects of competition and coal-combustion wastes on recruitment and life history characteristics of salamanders in temporary wetlands. , 2006, Aquatic toxicology.
[47] R. Relyea. THE IMPACT OF INSECTICIDES AND HERBICIDES ON THE BIODIVERSITY AND PRODUCTIVITY OF AQUATIC COMMUNITIES , 2006 .
[48] D. Wake,et al. Hermaphroditic, demasculinized frogs after exposure to the herbicide atrazine at low ecologically relevant doses , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[49] D. E. Scott,et al. Declining Amphibian Populations: The Problem of Separating Human Impacts from Natural Fluctuations , 1991, Science.
[50] Paul Stephen Corn,et al. Evidence for disease-related amphibian decline in Colorado , 2003 .
[51] K. Drouillard,et al. Immunosuppression in the northern leopard frog (Rana pipiens) induced by pesticide exposure , 2003, Environmental toxicology and chemistry.
[52] C. Haddad. Amphibian Declines: The Conservation Status of United States Species , 2008, Copeia.
[53] K. Lips,et al. Energy flow and subsidies associated with the complex life cycle of ambystomatid salamanders in ponds and adjacent forest in southern Illinois , 2006, Oecologia.
[54] D E Green,et al. Chytridiomycosis causes amphibian mortality associated with population declines in the rain forests of Australia and Central America. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[55] G. Bradley,et al. Chytridiomycosis in Native Arizona Frogs , 2002, Journal of wildlife diseases.
[56] R. D. Semlitsch,et al. Are Small, Isolated Wetlands Expendable? , 1998 .
[57] H. Shaffer,et al. Spatial Tests of the Pesticide Drift, Habitat Destruction, UV‐B, and Climate‐Change Hypotheses for California Amphibian Declines , 2002 .
[58] P. Morin,et al. Predatory salamanders reverse the outcome of competition among three species of anuran tadpoles. , 1981, Science.
[59] Paul D. Jones,et al. Plasma sex steroid concentrations and gonadal aromatase activities in African clawed frogs (Xenopus laevis) from South Africa , 2004, Environmental toxicology and chemistry.
[60] F. Allendorf,et al. Blackwell Publishing, Ltd. , 2003 .
[61] C. L. Rowe,et al. Reproduction, Embryonic Development, and Maternal Transfer of Contaminants in the Amphibian Gastrophryne carolinensis , 2005, Environmental health perspectives.
[62] L. Trueb,et al. Biology of Amphibians , 1986 .
[63] D. Marsh,et al. Metapopulation Dynamics and Amphibian Conservation , 2001 .
[64] R. Relyea,et al. Assessing the ecology in ecotoxicology: a review and synthesis in freshwater systems. , 2006, Ecology letters.
[65] K. Beard,et al. Top-down effects of a terrestrial frog on forest nutrient dynamics , 2002, Oecologia.
[66] J. Rohr,et al. Aquatic herbicide exposure increases salamander desiccation risk eight months later in a terrestrial environment , 2005, Environmental toxicology and chemistry.
[67] C. Briggs,et al. Emerging infectious disease as a proximate cause of amphibian mass mortality. , 2006, Ecology.
[68] B. Young,et al. Response to Comment on "Status and Trends of Amphibian Declines and Extinctions Worldwide" , 2005, Science.
[69] David Skelly,et al. Proximity to Pollution Sources and Risk of Amphibian Limb Malformation , 2005, Environmental health perspectives.
[70] D. E. Scott,et al. AMPHIBIAN POPULATION DECLINES AT SAVANNAH RIVER SITE ARE LINKED TO CLIMATE, NOT CHYTRIDIOMYCOSIS , 2005 .
[71] Gene E. Likens,et al. Energy Flow and Nutrient Cycling in Salamander Populations in the Hubbard Brook Experimental Forest, New Hampshire , 1975 .
[72] C. Carey. How Physiological Methods and Concepts Can Be Useful in Conservation Biology1 , 2005, Integrative and comparative biology.
[73] R. Harris,et al. Salamander Predation and the Structure of Experimental Communities: Anuran Responses , 1983 .
[74] Paul D. Jones,et al. Plasma concentrations of estradiol and testosterone, gonadal aromatase activity and ultrastructure of the testis in Xenopus laevis exposed to estradiol or atrazine. , 2005, Aquatic toxicology.
[75] C. Davidson. DECLINING DOWNWIND: AMPHIBIAN POPULATION DECLINES IN CALIFORNIA AND HISTORICAL PESTICIDE USE , 2004 .
[76] Raymond D. Semlitsch,et al. Biological Criteria for Buffer Zones around Wetlands and Riparian Habitats for Amphibians and Reptiles , 2003 .
[77] Fernando Castro,et al. Catastrophic Population Declines and Extinctions in Neotropical Harlequin Frogs (Bufonidae: Atelopus) 1 , 2005 .
[78] P. Daszak,et al. Infectious disease and amphibian population declines , 2003 .
[79] J. Brunner,et al. INTRASPECIFIC RESERVOIRS: COMPLEX LIFE HISTORY AND THE PERSISTENCE OF A LETHAL RANAVIRUS , 2004 .
[80] J. Petranka,et al. Effectiveness of Removal Sampling for Determining Salamander Density and Biomass: A Case Study in an Appalachian Streamside Community , 2001 .
[81] R. L. Wyman. Experimental assessment of salamanders as predators of detrital food webs: effects on invertebrates, decomposition and the carbon cycle , 1998, Biodiversity & Conservation.
[82] R. Knapp,et al. Non‐Native Fish Introductions and the Decline of the Mountain Yellow‐Legged Frog from within Protected Areas , 2000 .
[83] Nelson G. Hairston,et al. Community ecology and salamander guilds , 1987 .
[84] E. Michael Thurman,et al. Parasite (Ribeiroia ondatrae) infection linked to amphibian malformations in the western United States , 2002 .
[85] B. Jackson,et al. Responses of benthic fish exposed to contaminants in outdoor microcosms--examining the ecological relevance of previous laboratory toxicity tests. , 2004, Aquatic toxicology.
[86] M. Smith,et al. Dispersal and the metapopulation paradigm in amphibian ecology and conservation : are all amphibian populations metapopulations? , 2005 .
[87] R. Alford,et al. Emerging infectious disease and the loss of biodiversity in a Neotropical amphibian community. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[88] J. Unrine,et al. PREVALENCE OF BATRACHOCHYTRIUM DENDROBATIDIS IN AMERICAN BULLFROG AND SOUTHERN LEOPARD FROG LARVAE FROM WETLANDS ON THE SAVANNAH RIVER SITE, SOUTH CAROLINA , 2007, Journal of wildlife diseases.
[89] V. Vredenburg. Reversing introduced species effects: Experimental removal of introduced fish leads to rapid recovery of a declining frog. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[90] R. Speare,et al. Epidemic Disease and the Catastrophic Decline of Australian Rain Forest Frogs , 1996 .
[91] J. Kiesecker,et al. Glucocorticosteroid Hormone Treatment of Larval Treefrogs Increases Infection by Alaria Sp. Trematode Cercariae , 2005, The Journal of parasitology.
[92] J. Burger,et al. Relationships among Isolated Wetland Size, Hydroperiod, and Amphibian Species Richness: Implications for Wetland Regulations , 2000 .
[93] L. McConnell,et al. Pesticides and amphibian population declines in California, USA , 2001, Environmental toxicology and chemistry.
[94] R. Speare,et al. Origin of the Amphibian Chytrid Fungus , 2004, Emerging infectious diseases.