Kevin V. Brix, Ph.D.
Affiliations: | 2012 | Marine Biology and Fisheries (Marine) | University of Miami, Coral Gables, FL |
Area:
Physiology Biology, Evolution and Development Biology, Animal Physiology BiologyGoogle:
"Kevin Brix"Parents
Sign in to add mentorMartin Grosell | grad student | 2012 | University of Miami (Physiology Academic Tree) | |
(Osmoregulatory physiology of pupfish (Cyprinodon spp.) in freshwater.) |
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Publications
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DeForest DK, Ryan AC, Tear LM, et al. (2022) Comparison of Multiple Linear Regression and Biotic Ligand Models for Predicting Acute and Chronic Zinc Toxicity to Freshwater Organisms. Environmental Toxicology and Chemistry |
Crémazy A, Braz-Mota S, Brix KV, et al. (2022) Investigating the mechanisms of dissolved organic matter protection against copper toxicity in fish of Amazon's black waters. The Science of the Total Environment. 157032 |
Wood CM, McDonald MD, Grosell M, et al. (2020) The potential for salt toxicity: Can the trans-epithelial potential (TEP) across the gills serve as a metric for major ion toxicity in fish? Aquatic Toxicology (Amsterdam, Netherlands). 226: 105568 |
Crémazy A, Brix KV, Smith DS, et al. (2020) A mystery tale: Nickel is fickle when snails fail. Investigating the variability in Ni toxicity to the great pond snail. Integrated Environmental Assessment and Management |
Brix KV, DeForest DK, Tear L, et al. (2020) Development of Empirical Bioavailability Models for Metals. Environmental Toxicology and Chemistry. 39: 85-100 |
Esbaugh AJ, Brix KV, Grosell M. (2019) Na K ATPase isoform switching in zebrafish during transition to dilute freshwater habitats. Proceedings. Biological Sciences. 286: 20190630 |
Zimmer AM, Brix KV, Wood CM. (2019) Mechanisms of Ca uptake in freshwater and seawater-acclimated killifish, Fundulus heteroclitus, and their response to acute salinity transfer. Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology. 189: 47-60 |
Crémazy A, Brix KV, Wood CM. (2018) Using the Biotic Ligand Model framework to investigate binary metal interactions on the uptake of Ag, Cd, Cu, Ni, Pb and Zn in the freshwater snail Lymnaea stagnalis. The Science of the Total Environment. 647: 1611-1625 |
Crémazy A, Brix KV, Wood CM. (2018) Chronic Toxicity of Binary Mixtures of Six Metals (Ag, Cd, Cu, Ni, Pb, and Zn) to the Great Pond Snail Lymnaea stagnalis. Environmental Science & Technology |
DeForest DK, Brix KV, Tear LM, et al. (2017) MULTIPLE LINEAR REGRESSION (MLR) MODELS FOR PREDICTING CHRONIC ALUMINUM TOXICITY TO FRESHWATER AQUATIC ORGANISMS AND DEVELOPING WATER QUALITY GUIDELINES. Environmental Toxicology and Chemistry |