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Issue DateTitleAuthor(s)
2018Adaptation of Aedes aegypti to salinity: Characterized by larger anal papillae in larvaeSurendran, S.N.; Sivabalakrishnan, K.; Jayadas, T.T.P.; Santhirasegaram, S.; Laheetharan, A.; Senthilnanthanan, M.; Ramasamy, R.
2019Development of the major arboviral vector Aedes aegypti in urban drain-water and associated pyrethroid insecticide resistance is a potential global health challengeSurendran, S.N.; Jayadas, T.T.P.; Kokila, S.; Sharanga, S.; Karvannan, K.; Weerarathne, T.C.; Parakrama Karunaratne, S.H.P.; Ramasamy, R.
2008Use of tilapia, Oreochromis mossambicus, for the control of mosquito breeding in water storage tanks in the Jaffna district of Sri LankaSurendran, S.N.; Kajatheepan, A.; Jude, P. J.; Ramasamy, R.
2022Reduced dengue incidence during the COVID‑19 movement restrictions in Sri Lanka from March 2020 to April 2021Surendran, S.N.; Nagulan, R.; Sivabalakrishnan, K.; Arthiyan, S.; Tharsan, A.; Jayadas, T.T.P.; Raveendran, S.; Kumanan, T.; Ramasamy, R.
2017Population genomics reveals that an anthropophilic population of Aedes aegypti mosquitoes in West Africa recently gave rise to American and Asian populations of this major disease vectorCrawford, J.E.; Alves, J.M.; Palmer, W.J.; Day, J.P.; Sylla, M.; Ramasamy, R.; Surendran, S.N.; Black IV, W.C.; Pain, A.; Jiggins, F.
2016Mosquito vectors developing in atypical anthropogenic habitats: Global overview of recent observations, mechanisms and impact on disease transmissionRamasamy, R.; Surendran, S.N.