Heath A. MacMillan

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2008-2012 York University, Toronto, Ontario, Canada 
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"Heath MacMillan"
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Andersen MK, Willot Q, MacMillan HA. (2023) A neurophysiological limit and its biogeographic correlations: cold-induced spreading depolarization in tropical butterflies. The Journal of Experimental Biology. 226
Andersen MK, Robertson RM, MacMillan HA. (2022) Plasticity in Na+/K+-ATPase thermal kinetics drives variation in the temperature of cold-induced neural shutdown of adult Drosophila melanogaster. The Journal of Experimental Biology. 225
O'Neill E, Davis HE, MacMillan HA. (2021) A lack of repeatability creates the illusion of a trade-off between basal and plastic cold tolerance. Proceedings. Biological Sciences. 288: 20212121
Cooke SJ, Bergman JN, Madliger CL, et al. (2021) One hundred research questions in conservation physiology for generating actionable evidence to inform conservation policy and practice. Conservation Physiology. 9: coab009
Brzezinski K, MacMillan HA. (2020) Chilling induces unidirectional solute leak through the locust gut epithelia. The Journal of Experimental Biology
El-Saadi MI, Ritchie MW, Davis HE, et al. (2020) Warm periods in repeated cold stresses protect Drosophila against ionoregulatory collapse, chilling injury, and reproductive deficits. Journal of Insect Physiology. 104055
Cooke SJ, Madliger CL, Cramp RL, et al. (2020) Reframing conservation physiology to be more inclusive, integrative, relevant and forward-looking: reflections and a horizon scan. Conservation Physiology. 8: coaa016
Jass A, Yerushalmi GY, Davis HE, et al. (2019) An impressive capacity for cold tolerance plasticity protects against ionoregulatory collapse in the disease vector, . The Journal of Experimental Biology
Livingston DBH, Patel H, Donini A, et al. (2019) Active transport of brilliant blue FCF across the Drosophila midgut and Malpighian tubule epithelia. Comparative Biochemistry and Physiology. Part a, Molecular & Integrative Physiology. 110588
MacMillan HA. (2019) Dissecting cause from consequence: a systematic approach to thermal limits. The Journal of Experimental Biology. 222
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