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Journal of Thermal Biology|April 5, 2025
How quickly do brook trout lose long-term thermal acclimation?M J O'Donnell, A M Regish, S D McCormick, et al.Journal of Thermal Biology|May 5, 2020
How repeatable is CT<sub>max</sub> within individual brook trout over short- and long-time intervals?M J O'Donnell, A M Regish, S D McCormick, et al.Journal of Fish Biology|April 1, 2018
Proximate composition, lipid utilization and validation of a non-lethal method to determine lipid content in migrating American shad Alosa sapidissimaS M Bayse, A M Regish, S D McCormickThe Journal of Experimental Biology|December 1, 2009
Distinct freshwater and seawater isoforms of Na+/K+-ATPase in gill chloride cells of Atlantic salmonS D McCormick, A M Regish, A K ChristensenJournal of Fish Biology|September 30, 2014
Migratory patterns of hatchery and stream-reared Atlantic salmon Salmo salar smolts in the Connecticut River, U.S.AS D McCormick, A Haro, D T Lerner, et al.General and Comparative Endocrinology|April 1, 2021
Effects of long-term cortisol treatment on growth and osmoregulation of Atlantic salmon and brook troutL Vargas-Chacoff, A M Regish, A Weinstock, et al.Journal of Fish Biology|September 25, 2015
Evidence for episodic acidification effects on migrating Atlantic salmon Salmo salar smoltsJ T Kelly, D T Lerner, M F O'Dea, et al.Molecular and Cellular Endocrinology|August 25, 2020
Cortisol regulates insulin-like growth-factor binding protein (igfbp) gene expression in Atlantic salmon parrJ P Breves, R H Springer-Miller, D A Chenoweth, et al.The American Journal of Physiology|October 1, 1990
Cortisol directly stimulates differentiation of chloride cells in tilapia opercular membraneS D McCormickCell and Tissue Research|May 1, 1990
Fluorescent labelling of Na+, K(+)-ATPase in intact cells by use of a fluorescent derivative of ouabain: salinity and teleost chloride cellsS D McCormickPageof 15