Arsenic accumulation in the shore crab Carcinus maenas: the influence of nutritional state, sex and exposure concentration
暂无分享,去创建一个
[1] D. Phillips. Arsenic in aquatic organisms: a review, emphasizing chemical speciation , 1990 .
[2] J. Edmonds,et al. Accumulation of arsenic in yelloweye mullet (Aldrichetta forsteri) following oral administration of organoarsenic compounds and arsenate. , 1989, The Science of the total environment.
[3] C. Turnbull. Pleopod Cuticular Morphology as an Index of Moult Stage in the Ornate Rock Lobster, Panulirus ornatus (Fabricius 1789) , 1989 .
[4] H. Yamanaka,et al. Arsenic Concentrations in Various Tissues of Bivalves and Arsenic Species in Gills , 1988 .
[5] J. Edmonds,et al. Trimethylarsine oxide in estuary catfish (Cnidoglanis macrocephalus) and school whiting (Sillago bassensis) after oral administration of sodium arsenate; and as a natural component of estuary catfish. , 1987, The Science of the total environment.
[6] H. Yamanaka,et al. Identification of arsenobetaine and a tetramethylarsonium salt in the clam Meretrix lusoria , 1987 .
[7] W. Maher. Distribution of selenium in marine animals: relationship to diet. , 1987, Comparative biochemistry and physiology. C, Comparative pharmacology and toxicology.
[8] M. Depledge,et al. CHEMICAL FORMS OF ARSENIC IN MARINE ORGANISMS, WITH EMPHASIS ON HEMIFUSUS SPECIES , 1986 .
[9] M. Depledge,et al. Distribution of inorganic and total arsenic in tissues of the marine gastropod Hemifusus ternatanus , 1986 .
[10] K. Irgolic,et al. Arsenobetaine in the red crab, Chionoecetes opilio. , 1986, The Science of the total environment.
[11] B. Welz,et al. Decomposition of marine biological tissues for determination of arsenic, selenium, and mercury using hydride-generation and cold-vapor atomic absorption spectrometries. , 1985, Analytical chemistry.
[12] K. Irgolic,et al. Quantitative determination of arsenobetaine, the major water-soluble arsenical in three species of crab, using high pressure liquid chromatography and an inductively coupled argon plasma emission spectrometer as the arsenic-specific detector , 1985 .
[13] W. Maher. The presence of arsenobetaine in marine animals. , 1985, Comparative biochemistry and physiology. C, Comparative pharmacology and toxicology.
[14] B. Welz,et al. Mechanisms of transition metal interferences in hydride generation atomic-absorption spectrometry. Part 2. Influence of the valency state of arsenic on the degree of signal depression caused by copper, iron and nickel , 1984 .
[15] B. Welz,et al. Mechanisms of transition metal interferences in hydride generation atomic-absorption spectrometry. Part 3. Releasing effect of iron(III) on nickel interference on arsenic and selenium , 1984 .
[16] A. Shinagawa,et al. Contents and chemical forms of arsenic in shellfishes in connection with their feeding habits. , 1984 .
[17] G. Topping,et al. Arsenic levels in fish and shellfish from the North Sea , 1983 .
[18] W. Maher. Inorganic arsenic in marine organisms , 1983 .
[19] M. E. Clark,et al. Living with water stress: evolution of osmolyte systems. , 1982, Science.
[20] H. Norin,et al. Evidence for the presence of arsenobetaine and another organoarsenical in shrimps , 1982 .
[21] B. Welz,et al. Mutual interactions of elements in the hydride technique in atomic absorption spectrometry , 1981 .
[22] P. J. Peterson,et al. Chemical characteristics of arsenic in a marine food chain , 1981 .
[23] J. Edmonds,et al. Arseno-sugars from brown kelp (Ecklonia radiata) as intermediates in cycling of arsenic in a marine ecosystem , 1981, Nature.
[24] W. Langston. Arsenic in U.K. estuarine sediments and its availability to benthic organisms , 1980, Journal of the Marine Biological Association of the United Kingdom.
[25] D. Klumpp. Accumulation of arsenic from water and food by Littorina littoralis and Nucella lapillus , 1980 .
[26] S. Fowler,et al. Factors affecting the flux of arsenic through the mussel Mytilus galloprovincialis , 1979 .
[27] P. J. Peterson,et al. Arsenic and other trace elements in the waters and organisms of an estuary in SW England , 1979 .
[28] S. Fowler,et al. Arsenic metabolism in a marine food chain , 1979 .
[29] W. Evans,et al. Evaluation of a method for determination of total antimony, arsenic and tin in foodstuffs using measurement by atomic-absorption spectrophotometry with atomisation in a silica tube using the hydride generation technique. , 1979, The Analyst.
[30] S. Fowler,et al. Factors affecting bioaccumulation and elimination of arsenic in the shrimp , 1978 .
[31] P. C. Kearney,et al. Characterization of arsenic compounds formed by Daphnia magna and Tetraselmis chuii from inorganic arsenate. , 1977, Environmental health perspectives.
[32] C. Jelinek,et al. Levels of arsenic in the United States food supply , 1977, Environmental health perspectives.
[33] G. Lunde. Occurrence and transformation of arsenic in the marine environment. , 1977, Environmental health perspectives.
[34] C. Raston,et al. Isolation, crystal structure and synthesis of arsenobetaine, the arsenical constituent of the western rock lobster panulirus longipes cygnus George , 1977 .
[35] A. Dunn,et al. Heavy metals, selenium and arsenic in nine species of Australian commercial fish , 1977 .
[36] W. Penrose,et al. Limited Arsenic Dispersion in Sea Water, Sediments, and Biota Near a Continuous Source , 1975 .
[37] A. Bøhn. Arsenic in marine organisms from West Greenland , 1975 .
[38] G. George,et al. Recovery of Arsenic by Dry Ashing from Animal Tissue Fortified With Organoarsenicals or Arsenic Trioxide , 1973 .
[39] D. Aiken. Proecdysis, Setal Development, and Molt Prediction in the American Lobster (Homarus americanus) , 1973 .
[40] G. Lunde. Separation and analysis of organic-bound and inorganic arsenic in marine organisms. , 1973, Journal of the science of food and agriculture.
[41] J. C. Wallace. Feeding, starvation and metabolic rate in the shore crab Carcinus maenas , 1973 .
[42] A. L. Jackson,et al. Arsenic in marine fish and invertebrates , 1973 .
[43] M. Ahsanullah,et al. The effect of starvation on the metabolism of the shore crab, Carcinus maenas , 1973 .
[44] A. L. Jackson,et al. Dry ashing technique for the determination of arsenic in marine fish. , 1973, Journal - Association of Official Analytical Chemists.
[45] V. E. Vaskovsky,et al. Arsenic in the lipid extracts of marine invertebrates , 1972 .
[46] G. Lunde. The Absorption and Metabolism of Arsenic in Fish , 1972 .
[47] W. J. Dyer,et al. A rapid method of total lipid extraction and purification. , 1959, Canadian journal of biochemistry and physiology.
[48] A. Chapman. On the presence of compounds of arsenic in marine crustaceans and shell fish , 1926 .