Catherine Propper

Northern Arizona University, Flagstaff, AZ, United States 
Endocrinology Biology, Evolution and Development Biology, Environmental Health
"Catherine Propper"
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Miranda RA, Searcy BT, Propper CR. (2015) Arginine vasotocin induces calling behavior with a female social stimulus and interacts with gonadotropins to affect sexual behaviors in male Xenopus tropicalis. Physiology & Behavior. 151: 72-80
Wolff SE, Veldhoen N, Helbing CC, et al. (2015) Estrogenic environmental contaminants alter the mRNA abundance profiles of genes involved in gonadal differentiation of the American bullfrog. The Science of the Total Environment. 521: 380-7
Schwendiman AL, Propper CR. (2012) A common environmental contaminant affects sexual behavior in the clawed frog, Xenopus tropicalis. Physiology & Behavior. 106: 520-6
Searcy BT, Beckstrom-Sternberg SM, Beckstrom-Sternberg JS, et al. (2012) Thyroid hormone-dependent development in Xenopus laevis: a sensitive screen of thyroid hormone signaling disruption by municipal wastewater treatment plant effluent. General and Comparative Endocrinology. 176: 481-92
Htwe NM, Singleton GR, Hinds LA, et al. (2012) Breeding ecology of rice field rats, Rattus argentiventer and R. tanezumi in lowland irrigated rice systems in the Philippines Agriculture, Ecosystems and Environment. 161: 39-45
Raymond-Whish S, Mayer LP, O'Neal T, et al. (2007) Drinking water with uranium below the U.S. EPA water standard causes estrogen receptor-dependent responses in female mice. Environmental Health Perspectives. 115: 1711-6
Mayer LP, Dyer CA, Propper CR. (2003) Exposure to 4-tert-octylphenol accelerates sexual differentiation and disrupts expression of steroidogenic factor 1 in developing bullfrogs. Environmental Health Perspectives. 111: 557-61
Mayer LP, Overstreet SL, Dyer CA, et al. (2002) Sexually dimorphic expression of steroidogenic factor 1 (SF-1) in developing gonads of the American bullfrog, Rana catesbeiana. General and Comparative Endocrinology. 127: 40-7
Mayer LP, Propper CR. (2000) Intra- and extracellular dehydration has no effect on plasma levels of angiotensin II in an amphibian. The Journal of Experimental Zoology. 286: 343-9
Taylor K, Mayer LP, Propper CR. (1999) Intra- and extracellular dehydration-induced thirst-related behavior in an amphibian. Physiology & Behavior. 65: 717-21
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