Multicompartment kinetic models for lead. I. Bone diffusion models for long-term retention.
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[1] A. H. Marcus,et al. Multicompartment kinetic models for lead. II. Linear kinetics and variable absorption in humans without excessive lead exposures. , 1985, Environmental research.
[2] A. H. Marcus,et al. Multicompartment kinetic model for lead. III. Lead in blood plasma and erythrocytes. , 1985, Environmental research.
[3] B. Brunekreef. The relationship between air lead and blood lead in children: a critical review. , 1984, The Science of the total environment.
[4] A. H. Marcus. Compartmental models with spatial diffusion: estimation for bone-seeking tracers , 1983 .
[5] Han K. Kang,et al. Determination of blood‐lead elimination patterns of primary lead smelter workers , 1983 .
[6] C. Malloy,et al. Distribution of lead in body fluids after ingestion of soft solder. , 1983, British journal of industrial medicine.
[7] A. Steenhout. Kinetics of lead storage in teeth and bones: an epidemiologic approach. , 1982, Archives of environmental health.
[8] K. Norwich. Can diffusion coefficients be estimated from plasma clearance curves of intact animals? , 1982, Journal of theoretical biology.
[9] K. Norwich,et al. Power functions in physiology and pharmacology. , 1982, Journal of theoretical biology.
[10] B. Aungst,et al. The effect of dose on the disposition of lead in rats after intravenous and oral administration. , 1981, Toxicology and applied pharmacology.
[11] C. C. Travis,et al. ON STRUCTURAL IDENTIFICATION , 1981 .
[12] P. Desilva. Determination of lead in plasma and studies on its relationship to lead in erythrocytes. , 1981, British journal of industrial medicine.
[13] C. Patterson,et al. "ULtra-clean" isotope diultion/mass spectrometic analyses for lead in human blood plasma indicated that most reported values are artificially high. , 1980, Clinical chemistry.
[14] G. Wetherill,et al. Effect of food intake and fasting on gastrointestinal lead absorption in humans. , 1980, The American journal of clinical nutrition.
[15] H. Gonick,et al. Erythrocyte lead-binding protein after occupational exposure. I. Relationship to lead toxicity. , 1980, Environmental research.
[16] E. Batschelet,et al. On the kinetics of lead in the human body , 1979, Journal of mathematical biology.
[17] A. H. Marcus. The body burden of lead: comparison of mathematical models for accumulation. , 1979, Environmental research.
[18] P. Bartholdi,et al. Critical analysis of methods for analysing human calcium kinetics. , 1978, Journal of theoretical biology.
[19] A. Cavalleri,et al. Determination of plasma lead levels in normal subjects and in lead-exposed workers , 1978, British journal of industrial medicine.
[20] G. Wetherill,et al. Magnitude of lead intake from respiration by normal man. , 1977, The Journal of laboratory and clinical medicine.
[21] G. Wetherill,et al. Kinetic analysis of lead metabolism in healthy humans. , 1976, The Journal of clinical investigation.
[22] C. W. Mays,et al. 210Pb studies in beagles. , 1975, Health physics.
[23] M. Wise. Interpreting both short- and long-term power laws in physiological clearance curves , 1974 .
[24] G. Wetherill,et al. Studies of Human Lead Metabolism by Use of Stable Isotope Tracers , 1974, Environmental health perspectives.
[25] R. Baloh. Laboratory diagnosis of increased lead absorption. , 1974, Archives of environmental health.
[26] George W. Wetherill,et al. Lead Metabolism in the Normal Human: Stable Isotope Studies , 1973, Science.
[27] B. Stover,et al. The association of 210Pb with constituents of erythrocytes. , 1973, Health physics.
[28] J. Hursh. Retention of 210Pb in beagle dogs. , 1973, Health physics.
[29] J. Loutit. Alkaline earth metabolism in adult man , 1973 .
[30] C. Onkelinx,et al. Radial Diffusion and Power Function Retention of Alkaline Earth Radio-isotopes in Adult Bone , 1968, Nature.
[31] M. Berman,et al. The routine fitting of kinetic data to models: a mathematical formalism for digital computers. , 1962, Biophysical journal.
[32] T. Clarkson,et al. Uptake of lead by human erythrocytes in vitro. , 1958, The Biochemical journal.
[33] J. C. Jaeger,et al. Conduction of Heat in Solids , 1952 .
[34] The National Academy of Sciences , 1928, Science.
[35] West Yorkshire , 1907 .
[36] J. Goldsmith,et al. Effect of airborne lead on blood lead , 1983 .
[37] P. Hammond,et al. Dependence of apparent blood lead half-life on the length of previous lead exposure in humans. , 1982, Fundamental and applied toxicology : official journal of the Society of Toxicology.
[38] R. Snee. Models for the relationship between blood lead and air lead , 1982, International archives of occupational and environmental health.
[39] P. Gartside,et al. The impact of air-lead on blood-lead in man--a critique of the recent literature. , 1981, Food and cosmetics toxicology.
[40] C. Thron. The nonexistence of "hermaphroditic" tracer systems. , 1980, Bulletin of mathematical biology.
[41] A. H. Marcus,et al. Power laws in compartmental analysis— II. numerical evaluation of semi-Markov models , 1977 .
[42] S. R. Bernard. Dosimetric data and metabolic model for lead. , 1977, Health physics.
[43] R. Heaney. CHAPTER 3 – Calcium Kinetics in Plasma: As they apply to the measurements of bone formation and resorption rates , 1976 .
[44] G. Wetherill,et al. Delayed appearance of tracer lead in facial hair. , 1976, Archives of environmental health.
[45] A. Gallant. Testing a Subset of the Parameters of a Nonlinear Regression Model , 1975 .
[46] W. McRoberts. Alteration in the fractionated blood lead concentrations in the development of inorganic lead poisoning, and the concept of the role of "lead integration" in lead absorption. , 1973, The Journal of the Society of Occupational Medicine.
[47] J. Vaughan. THE PHYSIOLOGY OF BONE , 1970, The Ulster Medical Journal.
[48] J. Marshall. Measurements and Models of Skeletal Metabolism , 1969 .
[49] L. Rosenhead. Conduction of Heat in Solids , 1947, Nature.