Culturing larvae of marine invertebrates.
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[1] M. Hadfield. Biofilms and marine invertebrate larvae: what bacteria produce that larvae use to choose settlement sites. , 2011, Annual review of marine science.
[2] R. R. Strathmann,et al. Evolutionary and experimental change in egg volume, heterochrony of larval body and juvenile rudiment, and evolutionary reversibility in pluteus form , 2009, Evolution & development.
[3] F. Faleiro,et al. Brachionus vs Artemia duel: optimizing first feeding of Upogebia pusilla (Decapoda: Thalassinidea) larvae. , 2009 .
[4] E. Herniou,et al. Extreme levels of hidden diversity in microscopic animals (Rotifera) revealed by DNA taxonomy. , 2009, Molecular phylogenetics and evolution.
[5] D. Vaughn. Predator-Induced Larval Cloning in the Sand Dollar Dendraster excentricus: Might Mothers Matter? , 2009, The Biological Bulletin.
[6] N. Boon,et al. Analysis of the evolution of microbial communities associated with different cultures of rotifer strains belonging to different cryptic species of the Brachionus plicatilis species complex , 2009 .
[7] Juliana C. Baylon,et al. Appropriate food type, feeding schedule and Artemia density for the zoea larvae of the mud crab, Scylla tranquebarica (Crustacea:Decapoda:Portunidae) , 2009 .
[8] M. Schmale,et al. Larval growth, development, and survival of laboratory-reared Aplysia californica: effects of diet and veliger density. , 2009, Comparative biochemistry and physiology. Toxicology & pharmacology : CBP.
[9] S. Wakeham,et al. Fatty acid composition of larvae of the sand dollar Dendraster excentricus (Echinodermata) might reflect FA composition of the diets , 2008 .
[10] C. Häse,et al. Re-emergence of Vibrio tubiashii in bivalve shellfish aquaculture: severity, environmental drivers, geographic extent and management. , 2008, Diseases of aquatic organisms.
[11] R. R. Strathmann,et al. An Extraordinarily Long Larval Duration of 4.5 Years from Hatching to Metamorphosis for Teleplanic Veligers of Fusitriton oregonensis , 2007, The Biological Bulletin.
[12] J. Aronowicz. The “agitator”: an inexpensive device for culturing large numbers of fragile marine invertebrate larvae , 2007 .
[13] J. Pechenik. Larval experience and latent effects--metamorphosis is not a new beginning. , 2006, Integrative and comparative biology.
[14] J. Castell,et al. Ingestion rates and dietary lipids affect growth and fatty acid composition of Dendraster excentricus larvae , 2006 .
[15] A. Moran,et al. A SIMPLE TECHNIQUE FOR PHYSICAL MARKING OF LARVAE OF MARINE BIVALVES , 2009 .
[16] R. Andersen,et al. Algal culturing techniques , 2005 .
[17] S. George,et al. Diet and salinity effects on larval growth and development of the sand dollar Mellita isometra , 2004 .
[18] G. Wray,et al. Culture of echinoderm larvae through metamorphosis. , 2004, Methods in cell biology.
[19] R. Emlet,et al. METAMORPHOSIS OF BARNACLE NAUPLII: EFFECTS OF FOOD VARIABILITY AND A COMPARISON WITH AMPHIBIAN MODELS , 2000 .
[20] Pechenik,et al. Evaluating whether velar lobe size indicates food limitation among larvae of the marine gastropod Crepidula fornicata. , 2000, Journal of experimental marine biology and ecology.
[21] S. Amemiya,et al. Embryonic Thermosensitivity of the Ascidian, Ciona savignyi , 1997 .
[22] S. Amemiya. Complete regulation of development throughout metamorphosis of sea urchin embryos devoid of macromeres , 1996, Development, growth & differentiation.
[23] R. R. Strathmann. Are planktonic larvae of marine benthic invertebrates too scarce to compete within species , 1996 .
[24] H. Fujisawa. Variation in Embryonic Temperature Sensitivity among Groups of the Sea Urchin, Hemicentrotus pulcherrimus, which Differ in their Habitats , 1995 .
[25] T. Ayukai. Ingestion of Ultraplankton by the Planktonic Larvae of the Crown-of-Thorns Starfish, Acanthaster planci. , 1994, The Biological bulletin.
[26] L. Mcedward. Morphology and Development of a Unique Type of Pelagic Larva in the Starfish Pteraster tesselatus (Echinodermata: Asteroidea). , 1992, The Biological bulletin.
[27] B. Hansen. Feeding behaviour in larvae of the opisthobranchPhiline aperta , 1991 .
[28] L. Levin. A review of methods for labeling and tracking marine invertebrate larvae , 1990 .
[29] M. D. Keller,et al. Microwave treatment for sterilization of phytoplankton culture media , 1988 .
[30] M. F. Strathmann. Reproduction and development of marine invertebrates of the northern Pacific coast , 1987 .
[31] D. Morse,et al. EXCESS POTASSIUM INDUCES LARVAL METAMORPHOSIS IN FOUR MARINE INVERTEBRATE SPECIES , 1986 .
[32] D. Wethey. Ranking of settlement cues by barnacle larvae: influence of surface contour , 1986 .
[33] P. Leahy. Laboratory culture of Strongylocentrotus purpuratus adults, embryos, and larvae. , 1986, Methods in cell biology.
[34] P. Sorgeloos,et al. International study on Artemia. XXV. Factors determining the nutritional effectiveness of Artemia: The relative impact of chlorinated hydrocarbons and essential fatty acids in San Francisco Bay and San Pablo Bay Artemia , 1985 .
[35] D. Levine,et al. Nutritional significance of long-chain polyunsaturated fatty acids to the zoeal development of the brachyuran crab, Eurypanopeus depressus (Smith) , 1984 .
[36] J. Høeg. A culture system for rearing marine invertebrate larvae and its application to larvae of rhizocephalan barnacles , 1984 .
[37] M. Sprung,et al. Physiological energetics of mussel larvae (Mytilus edulis). II. Food uptake , 1984 .
[38] M. Omori. Growth, feeding, and mortality of larval and early postlarval stages of the oceanic shrimp Sergestes similis Hansen , 1979 .
[39] K. Simon. Vital staining of Patiria miniata larvae , 1974 .
[40] R. Hinegardner. Growth and development of the laboratory cultured sea urchin. , 1969, The Biological bulletin.
[41] R. Yanagimachi. The Use of Cetyl Alcohol in the Rearing of the Rhizocephalan Larvae 1) , 1961 .
[42] Gail M. Cavanaugh. Formulae and methods IV [i.e., 4th ed.] of the Marine Biological Laboratory Chemical Room. Gail M. Cavanaugh, editor. , 1956 .