Measurement of in- vitro fibre dissolution rate at acidic pH
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[1] J. M. Davis,et al. The biopersistence and pathogenicity of man-made vitreous fibres after short- and long-term inhalation. , 1998, The Annals of occupational hygiene.
[2] J. R. Olson,et al. IN VITRO MEASUREMENT OF FIBER DISSOLUTION RATE RELEVANT TO BIOPERSISTENCE AT NEUTRAL pH: AN INTERLABORATORY ROUND ROBIN , 1997 .
[3] O. Kamstrup,et al. Lung clearance of experimental man-made mineral fibres, preliminary data on the effect of fibre length , 1997 .
[4] O Kamstrup,et al. Biopersistence of man-made vitreous fibers and crocidolite asbestos in the rat lung following inhalation. , 1996, Fundamental and applied toxicology : official journal of the Society of Toxicology.
[5] T. Knudsen,et al. New type of stonewool (HT fibres) with a high dissolution rate at pH = 4.5 , 1996 .
[6] Philippe Thevenaz,et al. EVALUATION OF SOLUBLE FIBERS USING THE INHALATION BIOPERSISTENCE MODEL, A NINE-FIBER COMPARISON , 1996 .
[7] K. Savolainen,et al. Durability of man-made vitreous fibres as assessed by dissolution of silicon, iron and aluminium in rat alveolar macrophages , 1995 .
[8] K. Savolainen,et al. The effect of fiber length on the dissolution by macrophages of rockwool and glasswool fibers. , 1995, Environmental research.
[9] W. Krois,et al. Method for determining in-vitro dissolution rates of man-made vitreous fibres , 1995 .
[10] L. R. Glass,et al. Multiple-dose chronic inhalation toxicity study of size-separated kaolin refractory ceramic fiber in male Fischer 344 rats. , 1995, Inhalation toxicology.
[11] S. Mattson,et al. GLASS FIBRES IN SIMULATED LUNG FLUID: DISSOLUTION BEHAVIOUR AND ANALYTICAL REQUIREMENTS , 1994 .
[12] A. de Meringo,et al. In vitro dynamic solubility test: influence of various parameters. , 1994, Environmental health perspectives.
[13] T. Hesterberg,et al. Dual pH durability studies of man-made vitreous fiber (MMVF). , 1994, Environmental health perspectives.
[14] O. Kamstrup,et al. Effect of chemical composition of man-made vitreous fibers on the rate of dissolution in vitro at different pHs. , 1994, Environmental health perspectives.
[15] K. Savolainen,et al. Dissolution of man-made vitreous fibers in rat alveolar macrophage culture and Gamble's saline solution: influence of different media and chemical composition of the fibers. , 1994, Environmental health perspectives.
[16] H. Yamato,et al. Effects of inhaled ceramic fibres on macrophage function of rat lungs. , 1994, Occupational and environmental medicine.
[17] R. D. Hamilton,et al. Fiber diameter measurement of bulk man-made vitreous fiber , 1993 .
[18] R. D. Hamilton,et al. FIBER DIAMETER DISTRIBUTIONS IN TYPICAL MMVF WOOL INSULATION PRODUCTS , 1993 .
[19] W G Kreyling,et al. Intracellular particle dissolution in alveolar macrophages. , 1992, Environmental health perspectives.
[20] K. Savolainen,et al. Dissolution of man-made vitreous fibres in rat alveolar macrophage culture and Gamble saline solution , 1992 .
[21] P. Camner,et al. Phagolysosomal pH and location of particles in alveolar macrophages , 1991 .
[22] R. Potter,et al. Glass fiber dissolution in a physiological saline solution , 1991 .
[23] W G Kreyling,et al. In vitro dissolution of uniform cobalt oxide particles by human and canine alveolar macrophages. , 1990, American journal of respiratory cell and molecular biology.
[24] P. Camner,et al. Intraphagosomal pH in alveolar macrophages studied with fluorescein-labeled amorphous silica particles. , 1989, Experimental lung research.
[25] R. Conradt,et al. AN IN VITRO STUDY OF THE CHEMICAL DURABILITY OF SILICEOUS FIBRES , 1987 .
[26] A. Eklund,et al. Dissolution of metals by human and rabbit alveolar macrophages. , 1985, British journal of industrial medicine.
[27] T. H. Elmer,et al. Leaching of E‐Glass , 1984 .
[28] P. Camner,et al. Ability of rabbit alveolar macrophages to dissolve metals. , 1984, Experimental lung research.
[29] A. Youssefi,et al. Influence of complexing agents and nature of buffer solution on the chemical durability of glass. Part 2. Effect of EDTA, ethyl alcohol, and sugar in the leach solution , 1978 .
[30] G. Kanapilly. Alveolar microenvironment and its relationship to the retention and transport into blood of aerosols deposited in the alveoli. , 1977, Health physics.
[31] A. Ringbom. Complexation in analytical chemistry , 1963 .