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Annual Review of Entomology|October 7, 2022
Molecular Mechanisms of Winter SurvivalNicholas M Teets, Katie E Marshall, Julie A Reynolds
Advances in Experimental Medicine and Biology|March 18, 2025
Lipid Metabolism in DiapauseUmut Toprak, Nicholas M Teets, Doga Cedden, et al.
Advances in Experimental Medicine and Biology|January 19, 2026
Lipid Metabolism in DiapauseUmut Toprak, Nicholas M Teets, Doga Cedden, et al.
Environmental Entomology|September 16, 2023
Survival and nutritional requirements for overwintering Drosophila suzukii (Diptera: Drosophilidae) in KentuckyEleanor A McCabe, Laura N Unfried, Nicholas M Teets
Journal of Insect Physiology|September 6, 2020
Energy balance and metabolic changes in an overwintering wolf spider, Schizocosa stridulansLeslie J Potts, Vladimir Koštál, Petr Simek, et al.
Journal of Insect Physiology|December 3, 2011
Energetic consequences of repeated and prolonged dehydration in the Antarctic midge, Belgica antarcticaNicholas M Teets, Yuta Kawarasaki, Richard E Lee, et al.
The Journal of Experimental Biology|February 11, 2011
Survival and energetic costs of repeated cold exposure in the Antarctic midge, Belgica antarctica: a comparison between frozen and supercooled larvaeNicholas M Teets, Yuta Kawarasaki, Richard E Lee, et al.
Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology|September 14, 2012
Expression of genes involved in energy mobilization and osmoprotectant synthesis during thermal and dehydration stress in the Antarctic midge, Belgica antarcticaNicholas M Teets, Yuta Kawarasaki, Richard E Lee, et al.
The Journal of Experimental Biology|July 23, 2013
The protective effect of rapid cold-hardening develops more quickly in frozen versus supercooled larvae of the Antarctic midge, Belgica antarcticaYuta Kawarasaki, Nicholas M Teets, David L Denlinger, et al.
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