CaRMS name details
original description
Pinhey, K.F. (1926). Entomostraca of the Belle Isle Strait Expedition, 1923, with notes on other planktonic species. Part I. <em>Contributions to Canadian Biology and Fisheries, New Series.</em> 3(6):181-233., available online at https://doi.org/10.1139/f26-006 [details] Available for editors 
basis of record
Brunel, P., L. Bosse & G. Lamarche. (1998). Catalogue of the marine invertebrates of the estuary and Gulf of St. Lawrence. <em>Canadian Special Publication of Fisheries and Aquatic Sciences, 126.</em> 405 pp. (look up in IMIS) [details] Available for editors 
additional source
Avery, D.E. (2000). Induction of embryonic diapause in the copepod Acartia hudsonica. <em>Ph.D. Thesis, University of Rhode Island, Narragansett, Rhode Island, U.S.A.</em> [details] Available for editors 
additional source
Avery, D.E. (2005). Induction of embryonic dormancy in the calanoid copepod Acartia hudsonica: heritability and phenotypic plasticity in two geographically separated populations. Journal of Experimental Marine Biology and Ecology 314(2):215-225., available online at https://doi.org/10.1016/j.jembe.2004.09.005 [details] Available for editors 
additional source
Avery, D.E. (2005). Induction of embryonic dormancy in the calanoid copepod Acartia hudsonica: proximal cues and variation among individuals. Journal of Experimental Marine Biology and Ecology 314(2):203-214., available online at https://doi.org/10.1016/j.jembe.2004.09.004 [details] Available for editors 
additional source
Barthélémy, R.M. (1999). Functional morphology and taxonomic relevance of the female genital structures in Acartiidae (Copepoda: Calanoida). <em>Journal of the Marine Biological Association of the United Kingdom, Cambridge, U.K.</em> 79(5):857-870. (x.1999)., available online at https://doi.org/10.1017/S0025315499001022 [details] Available for editors 
additional source
Bochdansky, A.B. & S.M. Bollens. (2004). Relevant scales in zooplankton ecology: distribution, feeding and reproduction of the copepod Acartia hudsonica in response to thin layers of the diatom Skeletonema costatum. Limnology and Oceanography 49(3): 625-636., available online at https://doi.org/10.4319/lo.2004.49.3.0625 [details] Available for editors 
additional source
Bollens, S.M. & B.W. Frost. (1990). UV light and vertical distribution of the marine planktonic copepod Acartia hudsonica Pinhey. Journal of Experimental Marine Biology and Ecology 137(2):89-93., available online at https://doi.org/10.1016/0022-0981(90)90062-h [details] Available for editors 
additional source
Burris, Z.P. & H.G. Dam. (2015). Female mating status affects mating and male mate-choice in the copepod genus Acartia. Journal Of Plankton Research, 37(1):183-196., available online at https://doi.org/10.1093/plankt/fbu090 [details] Available for editors 
additional source
Burris, Z.P. & H.G. Dam. (2015). Resource and mate availability, and previous social experience modulate mate choice in the copepods Acartia tonsa and Acartia hudsonica. Journal Of Experimental Marine Biology And Ecology, 471: 180-189., available online at https://doi.org/10.1016/j.jembe.2015.06.009 [details] Available for editors 
additional source
Burris, Z.P. & H.G. Dam. (2015). Spermatophore production as a function of food abundance and age in the calanoid copepods, Acartia tonsa and Acartia hudsonica. Marine Biology, 162(4):841-853., available online at https://doi.org/10.1007/s00227-015-2628-6 [details] Available for editors 
additional source
Chae, Y.J., H.J. Oh, K.H. Chang, I.S. Kwak & H. Jo. (2021). Application of Next-Generation Sequencing for the Determination of the Bacterial Community in the Gut Contents of Brackish Copepod Species (Acartia hudsonica, Sinocalanus tenellus, and Pseudodiaptomus inopinus). <em>Animals.</em> 11(2):1-14. Feb 2021., available online at https://doi.org/10.3390/ani11020542 [details] Available for editors 
additional source
Chang, C.Y. (2014). Arthropoda, Maxillopoda, Copepoda, Calanoida : Continental Calanoida. <em>Invertebrate Fauna of Korea, National Institute of Biological Resources, Ministry of Environment (Korea).</em> 21(35):60 pp. [details] Available for editors 
additional source
Cieri, M.D. & D.E. Stearns. (1999). Reduction of grazing activity of two estuarine copepods in response to the exudate of a visual predator. Marine Ecology Progress Series 177:157-163. (11.ii.1999), available online at https://doi.org/10.3354/meps177157 [details] Available for editors 
additional source
Colin, S.P. & H.G. Dam. (2002). Latitudinal differentiation in the effects of the toxic dinoflagellate Alexandrium spp. on the feeding and reproduction of populations of the copepod Acartia hudsonica. Harmful Algae 1(1): 113-125., available online at https://doi.org/10.1016/s1568-9883(02)00007-0 [details] Available for editors 
additional source
Colin, S.P. & H.G. Dam. (2007). Comparison of the functional and numerical responses of resistant versus non-resistant populations of the copepod Acartia hudsonica fed the toxic dinoflagellate Alexandrium tamarense. <em>Harmful Algae.</em> 6(6):875-882., available online at https://doi.org/10.1016/j.hal.2007.05.003 [details] Available for editors 
additional source
Crockett, E.L. & R.P. Hassett. (2005). A cholesterol-enriched diet enhances egg production and egg viabilitywithout altering cholesterol content of biological membranes in the copepod Acartia hudsonica. Physiological and Biochemical Zoology 78(3):424-433., available online at https://doi.org/10.1086/430040 [details] Available for editors 
additional source
Dam, H.G. & S.T. Haley. (2011). Comparative dynamics of paralytic shellfish toxins (PST) in a tolerant and susceptible population of the copepod Acartia hudsonica. <em>Harmful Algae.</em> 10(3):245-253., available online at https://doi.org/10.1016/j.hal.2010.10.004 [details] Available for editors 
additional source
Deason, E.E. (1980). Grazing of Acartia hudsonica (A. clausi) on Skeletonema costatum in Narragansett Bay (USA): Influence of food concentration and temperature. <em>Marine Biology, Berlin.</em> 60(2-3):101-113, figs. 1-8, tabs. 1-7. (xii-1980)., available online at https://doi.org/10.1007/bf00389153 [details] Available for editors 
additional source
Durbin, A.G. & E.G. Durbin. (1992). Seasonal changes in size frequency distribution and estimated age in the marine copepod Acartia hudsonica during a winter-spring diatom bloom in Narragansett Bay. Limnology and Oceanography 37(2):379-392., available online at https://doi.org/10.4319/lo.1992.37.2.0379 [details] Available for editors 
additional source
Durbin, E.G. & A.G. Durbin. (1992). Effects of temperature and food abundance on grazing and short-term weight change in the marine copepod Acartia hudsonica. Limnology and Oceanography 37(2):361-378., available online at https://doi.org/10.4319/lo.1992.37.2.0361 [details] Available for editors 
additional source
Durbin, E.G., A.G. Durbin & R.G. Campbell. (1992). Body size and egg production in the marine copepod Acartia hudsonica during a winter-spring diatom bloom in Narragansett Bay. Limnology and Oceanography 37(2):342-360., available online at https://doi.org/10.4319/lo.1992.37.2.0342 [details] Available for editors 
additional source
Finiguerra, M., D.E. Avery & H.G. Dam (2014). Sodium channel expression in the copepod Acartia hudsonica as a function of exposure to paralytic shellfish toxin (PST). <i>Harmful Algae</i>. 39:75-80, available online at https://doi.org/10.1016/j.hal.2014.06.014 [details]
additional source
Finiguerra, M., D.E. Avery & H.G. Dam (2015). Determining the advantages, costs, and trade-offs of a novel sodium channel mutation in the copepod Acartia hudsonica to Paralytic Shellfish Toxins (PST). <i>Plos One</i>. 10(6), available online at https://doi.org/10.1371/journal.pone.0130097 [details] Available for editors 
additional source
Finiguerra, M., D.E. Avery & H.G. Dam. (2014). No evidence for induction or selection of mutant sodium channel expression in the copepod Acartia husdsonica challenged with the toxic dinoflagellate Alexandrium fundyense. Ecology And Evolution, 4(17):3470-3481., available online at http://dx.doi.org/10.1002/ece3.1197 [details] Available for editors 
additional source
Finiguerra, M.B. (2013). Determining the Role of a Novel Sodium Channel Mutation on Tolerance to Paralytic Shellfish Toxins in the Marine Copepod Acartia hudsonica. <em>Ph.D. Dissertation, University of Connecticut, Storrs, Connecticut, USA.</em> vi + 110 pp. Aug 2013., available online at https://digitalcommons.lib.uconn.edu/dissertations/144 [details] Available for editors 
additional source
Gerber, R.P. (2000). An identification manual to the coastal and estuarine zooplankton of the Gulf of Maine region from Passamaquoddy Bay to Long Island Sound. Part I. Text and identification keys. <em>Freeport Village Press, Freeport, Maine.</em> 1-80. [details] Available for editors 
additional source
Hahn, H. & R.S. Brennan. (2024). Phenotypic plasticity drives seasonal thermal tolerance in a Baltic copepod. <em>Journal of Experimental Marine Biology and Ecology.</em> 576:1-11. 152014., available online at https://doi.org/10.1016/j.jembe.2024.152014 [details] Available for editors 
additional source
Hassett, R.P. & E.L. Crockett. (2005). Does Acartia hudsonica exhibit an enzymatic stress response to toxic Alexandrium spp? Bulletin of the Mount Desert Island Biological Laboratory 44: 71-73. [details] Available for editors 
additional source
Hussain, M.B., M. Laabir & M.N.D. Yahia. (2020). A novel index based on planktonic copepod reproductive
traits as a tool for marine ecotoxicology studies. <em>Science Of The Total Environment.</em> 727:1-11. JUL 2020., available online at https://doi.org/10.1016/j.scitotenv.2020.138621 [details] Available for editors 
additional source
Integrated Taxonomic Information System (ITIS). , available online at http://www.itis.gov [details]
additional source
Jónasdóttir, S.H. (1992). Chemical composition of food and the reproductive success of the copepods Acartia tonsa, Acartia hudsonica and Temora longicornis. Ph.D. Thesis, State University of New York at Stony Brook, New York, U.S.A. 292 pp. [details]
additional source
Jónasdóttir, S.H. (1994). Effects of food quality on the reproductive success of Acartia tonsa and Acartia hudsonica: laboratory observations. Marine Biology, Berlin 121(1):67-81., available online at https://doi.org/10.1007/bf00349475 [details] Available for editors 
additional source
Lee, E.H., S.Y. Choi, M.H. Seo & H.Y. Soh. (2026). Seasonal partitioning of abundance, egg production, and hatching success among co-occurring Acartia species in a semi-enclosed embayment. <em>Journal Of Sea Research.</em> 212: 1-11. Aug 2026. 102712., available online at https://doi.org/10.1016/j.seares.2026.102712 [details] Available for editors 
additional source
Lee, Y., W. Park & H.J. Kim. (2026). Survival and Developmental Responses of Acartia hudsonica Nauplii to Polystyrene Microplastics and Thermal Variation. <em>Water.</em> 18(2): 1-15. Apr 2026., available online at https://doi.org/10.3390/w18080932 [details] Available for editors 
additional source
Makino, W., K. Ito, Y. Oshima & J. Urabe. (2008). Effects of Protoceratium reticulatum yessotoxin on feeding rates of Acartia hudsonica: A bioassay using artificial particles coated with purified toxin. <em>Harmful Algae.</em> 7(5):639-645., available online at https://doi.org/10.1016/j.hal.2008.01.002 [details] Available for editors 
additional source
Mercado-Salas, N.F. & E. Suárez-Morales. (2011). Morfologia, diversidad y distribucion de los Cyclopoida (Copepoda) de zonas aridas del centro-norte de Mexico. I. Cyclopinae. [Morphology, diversity, and distribution of the Cyclopoida (Copepoda) from arid areas of central-north Mexico. I. Cyclopinae. ]. <em>Hidrobiologica.</em> 21(1):1-25.(Spanish). [details] Available for editors 
additional source
Middlebrook, K. & J.C. Roff. (1986). Comparison of methods for estimating animal productivity of the copepods Acartia hudsonica and Eurytemora herdmanni in Passamaquoddy Bay, New Brunswick. Canadian Journal of Fisheries and Aquatic Sciences 43(3):656-664, figs. 1-6, tabs. 1-3. (iii.1986, French summary.), available online at https://doi.org/10.1139/f86-079 [details] Available for editors 
additional source
Nangou, P.B.S, S.H.Z. Togouet, G.B. Farias, S.H. Lee, R.N. Dongmo, E.J.K. Kueppo, J. Vannini, G.B. Zambo & J.C. Molinero. (2026). Seasonal dynamics and environmental controls of non-indigenous Acartia species in the Gulf of Guinea. <em>Journal Of Plankton Research.</em> 48(4): 1-14. AUG 2026 fbag040., available online at https://doi.org/10.1093/plankt/fbag040 [details] Available for editors 
additional source
Rodriguez, V. & E.G. Durbin. (1992). Evaluation of synchrony of feeding behaviour in individual Acartia hudsonica (Copepoda, Calanoida). Marine Ecology Progress Series 87(1-2):7-13., available online at https://doi.org/10.3354/meps087007 [details] Available for editors 
additional source
Samatov, A.D. & I.N. Samatova. (1996). Spatial distribution and seasonal dynamics of the copepod Acartia hudsonica in Avachinskaya Bay (southeastern Kamchatka). Biologiya Morya, Vladivostok / Russian Journal of Marine Biology 22(1):21-30. [details]
additional source
Suchman, C.L. (1998). Factors affecting the vulnerability of Acartia spp. copepods to predation by scyphomedusae. <em>Ph.D. Dissertation, University of Rhode Island, Kingston, Rhode Island, U.S.A.</em> 240 pp. [details] Available for editors 
additional source
Suchman, C.L. (2000). Escape behavior of Acartia hudsonica copepods during interactions with scyphomedusae. <em>Journal of Plankton Research.</em> 22(12):2307=2323., available online at https://doi.org/10.1093/plankt/22.12.2307 [details] Available for editors 
additional source
Sullivan, B.K. & L.T. McManus. (1986). Factors controling seasonal succession of the copepods Acartia hudsonica and A. tonsa in Narragansett Bay, Rhode Island: temperature and resting egg production. Marine Ecology Progress Series 28(1-2):121-128. (09.i.1986), available online at https://doi.org/10.3354/meps028121 [details] Available for editors 
additional source
Sullivan, B.K. & P.V. Banzon. (1990). Food limitation and benthic regulation of populations of the copepod Acartia hudsonica Pinhey in nutrient-limited and nutrient-enriched systems. Limnology and Oceanography 35(7):1618-1631., available online at https://doi.org/10.4319/lo.1990.35.7.1618 [details] Available for editors 
additional source
Sullivan, B.K., J.H. Costello & D. Van Keuren. (2007). Seasonality of the copepods Acartia hudsonica and Acartia tonsa in Narragansett Bay, RI, USA during a period of climate change. Estuarine, Coastal and Shelf Science 73(1-2):259-267., available online at https://doi.org/10.1016/j.ecss.2007.01.018 [details] Available for editors 
additional source
Ueda, H. (1986). Redescription of the planktonic calanoid copepod Acartia hudsonica from Atlantic and Pacific waters: a new record from Japanese waters. Journal of the Oceanographical Society of Japan 42(2):124-133, figs. 1-5, tab. 1. (iv.1986; in Japanese.), available online at https://doi.org/10.1007/bf02109099 [details] Available for editors 
additional source
Ueda, H. (1986). Reproductive isolation between the sympatric, closely related species Acartia omorii and A. hudsonica (Copepoda: Calanoida). <em>Bulletin of the Plankton Society of Japan.</em> 33(1):59-60. [details] Available for editors 
additional source
Ueda, H. (1987). Temporal and spatial distribution of the two closely related Acartia species A. omorii and A. hudsonica (Copepoda, Calanoida) in a small inlet water of Japan. Estuarine, Coastal and Shelf Science 24:691-700. (v.1987), available online at https://doi.org/10.1016/0272-7714(87)90107-7 [details] Available for editors 
additional source
White, M.M. & I.A. McLaren. (2000). Copepod development rates in relation to genome size and 18S rDNA copy number. Genome 43(5):750-755., available online at https://doi.org/10.1139/gen-43-5-750 [details] Available for editors 
additional source
Wijeyaratne, M.J.S. & R.S. Gunawardene. (1988). Chemotherapy of ectoparasite, Ergasilus ceylonensis of Asian cichlid, Etroplus suratensis. Journal of Applied Ichthyology , 4(2):97-100., available online at https://doi.org/10.1111/j.1439-0426.1988.tb00472.x [details] Available for editors 
additional source
Wlodarczyk, E., A.G. Durbin & E.G. Durbin. (1992). Effect of temperature on lower feeding thresholds, gut evacuation rate, and diel feeding behavior in the copepod Acartia hudsonica. Marine Ecology Progress Series 85(1-2):93-106., available online at https://doi.org/10.3354/meps085093 [details] Available for editors 
additional source
Yen, J. & D.M. Fields. (1992). Escape responses of Acartia hudsonica (Copepoda) nauplii from the flow field of Temora longicornis (Copepoda). Archiv für Hydrobiologie, Beiheften, Ergebnisse der Limnologie, Stuttgart 36:123-134. [details] Available for editors 
additional source
Yoo, K.I., H.K. Hue & W.C. Lee. (1991). Taxonomical revision on the genus Acartia (Copepoda: Calanoida) in the Korean waters. Bulletin of the Korean Fisheries Society 24(4):255-265. [details] Available for editors 
additional source
Zhang, H., M. Finiguerra, H.G. Dam, Y.S. Huang, D.H. Xu, G.X. Liu & S.J. Lin. (2013). An improved method for achieving high-quality RNA for copepod transcriptomic studies. Journal of Experimental Marine Biology and Ecology 446:57-66., available online at https://doi.org/10.1016/j.jembe.2013.04.021 [details] Available for editors 
additional source
Zheng, Y., H.G. Dam & D.E. Avery. (2011). Differential responses of populations of the copepod Acartia hudsonica to toxic and nutritionally insufficient food algae. <em>Harmful Algae.</em> 10(6):723-731., available online at https://doi.org/10.1016/j.hal.2011.06.003 [details]
Present Inaccurate Introduced: alien Containing type locality
Unreviewed
Distribution Arctic to Chesapeake Bay [details]
Habitat upper region epipelagic of the Gulf and estuary [details]
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