John D. K. Armstrong

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2016-2017 Chemistry University of Texas at Arlington, Arlington, TX, United States 
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Auer SK, Bassar RD, Turek D, et al. (2020) Metabolic Rate Interacts with Resource Availability to Determine Individual Variation in Microhabitat Use in the Wild. The American Naturalist. 196: 132-144
Burton T, Rollinson N, McKelvey S, et al. (2020) Adaptive Maternal Investment in the Wild? Links between Maternal Growth Trajectory and Offspring Size, Growth, and Survival in Contrasting Environments. The American Naturalist. 195: 678-690
Armstrong JD, Bean CW, Wells DA. (2018) The Scottish invasion of pink salmon in 2017. Journal of Fish Biology
McLennan D, Armstrong JD, Stewart DC, et al. (2018) Telomere elongation during early development is independent of environmental temperatures in Atlantic salmon. The Journal of Experimental Biology
Hellinghausen G, Roy D, Lee JT, et al. (2018) Effective methodologies for enantiomeric separations of 150 pharmacology and toxicology related 1°, 2°, and 3° amines with core-shell chiral stationary phases. Journal of Pharmaceutical and Biomedical Analysis. 155: 70-81
McLennan D, Armstrong JD, Stewart DC, et al. (2017) Links between parental life histories of wild salmon and the telomere lengths of their offspring. Molecular Ecology
Auer SK, Anderson GJ, McKelvey S, et al. (2017) Nutrients from salmon parents alter selection pressures on their offspring. Ecology Letters
Burton T, Robertsen G, Stewart DC, et al. (2016) Maternal age at maturation underpins contrasting behavior in offspring. Behavioral Ecology : Official Journal of the International Society For Behavioral Ecology. 27: 1280-1287
Robertsen G, Armstrong JD, Nislow KH, et al. (2014) Spatial variation in the relationship between performance and metabolic rate in wild juvenile Atlantic salmon. The Journal of Animal Ecology. 83: 791-9
Otero J, L'Abée-Lund JH, Castro-Santos T, et al. (2014) Basin-scale phenology and effects of climate variability on global timing of initial seaward migration of Atlantic salmon (Salmo salar). Global Change Biology. 20: 61-75
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