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Journal of Insect Physiology|September 4, 2012
Climate warming may increase aphids' dropping probabilities in response to high temperaturesGang Ma, Chun-Sen MaCurrent Opinion in Insect Science|November 3, 2021
Potential distribution of invasive crop pests under climate change: incorporating mitigation responses of insects into prediction modelsGang Ma, Chun-Sen MaJournal of Insect Physiology|September 24, 2011
Effect of acclimation on heat-escape temperatures of two aphid species: Implications for estimating behavioral response of insects to climate warmingGang Ma, Chun-Sen MaAnnual Review of Entomology|September 2, 2020
Survive a Warming Climate: Insect Responses to Extreme High TemperaturesChun-Sen Ma, Gang Ma, Sylvain PincebourdeThe Journal of Experimental Biology|May 31, 2015
Daily temperature extremes play an important role in predicting thermal effectsGang Ma, Ary A Hoffmann, Chun-Sen MaCurrent Opinion in Insect Science|April 30, 2026
Mechanisms governing responses of agriculturally important insects to global changeChun-Sen Ma, Gang Ma, Qing-Cai LinJournal of Thermal Biology|May 21, 2021
Are extreme high temperatures at low or high latitudes more likely to inhibit the population growth of a globally distributed aphid?Gang Ma, Ary A Hoffmann, Chun-Sen MaGlobal Change Biology|June 10, 2014
Extreme temperature events alter demographic rates, relative fitness, and community structureGang Ma, Volker H W Rudolf, Chun-Sen MaJournal of Thermal Biology|June 21, 2023
Heat-avoidance behavior associates with thermal sensitivity rather than tolerance in aphid assemblagesXue Bai, Xue-Jing Wang, Chun-Sen Ma, et al.Biology Open|March 7, 2019
Independent and combined effects of daytime heat stress and night-time recovery determine thermal performanceChun-Ming Bai, Gang Ma, Wan-Zhi Cai, et al.Pageof 88