Quantitative analysis of ammonia on the breath of patients in end-stage renal failure.
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[1] P Rolfe,et al. The selected ion flow tube (SIFT)--a novel technique for biological monitoring. , 1996, The Annals of occupational hygiene.
[2] Patrik Španěl,et al. Application of ion chemistry and the SIFT technique to the quantitative analysis of trace gases in air and on breath , 1996 .
[3] P. Španěl,et al. The novel selected-ion flow tube approach to trace gas analysis of air and breath. , 1996, Rapid communications in mass spectrometry : RCM.
[4] Werner Lindinger,et al. Proton transfer reaction mass spectrometry: on-line trace gas analysis at the ppb level , 1995 .
[5] P. Španěl,et al. Reactions of Hydrated Hydronium Ions and Hydrated Hydroxide Ions with Some Hydrocarbons and Oxygen-Bearing Organic Molecules , 1995 .
[6] R. Atkins,et al. Kt/V in CAPD by different estimations of V. , 1995, Kidney international.
[7] P. Španěl,et al. Reactions of H3O+ and OH− ions with some organic molecules; applications to trace gas analysis in air , 1995 .
[8] P. Fürst,et al. Protein and energy intake, nitrogen balance and nitrogen losses in patients treated with continuous ambulatory peritoneal dialysis. , 1993, Kidney international.
[9] K. McColl,et al. Effect of Helicobacter pylori infection on intragastric urea and ammonium concentrations in patients with chronic renal failure. , 1993, Journal of clinical pathology.
[10] S. Davies,et al. Clinical evaluation of the peritoneal equilibration test: a population-based study. , 1993, Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association.
[11] M. Danielsen,et al. Limits of adaptation to a diet low in protein in normal man: urea kinetics. , 1992, Clinical science.
[12] M. Phillips,et al. Ion-trap detection of volatile organic compounds in alveolar breath. , 1992, Clinical chemistry.
[13] A. Jackson,et al. The non-invasive measurement of urea kinetics in normal man by a constant infusion of 15N15N-urea. , 1984, Human nutrition. Clinical nutrition.
[14] A. Manolis,et al. The diagnostic potential of breath analysis. , 1983, Clinical chemistry.
[15] N. Madias,et al. Protein restriction in chronic renal failure. , 1982, Kidney international.
[16] G. Ghiggeri,et al. Brain metabolism of amino acids and ammonia in patients with chronic renal insufficiency. , 1981, Kidney international.
[17] P. Watson,et al. Total body water volumes for adult males and females estimated from simple anthropometric measurements. , 1980, The American journal of clinical nutrition.
[18] J. French,et al. Real-time analysis of breath using an atmospheric pressure ionization mass spectrometer. , 1979, Biomedical mass spectrometry.
[19] R. Doty,et al. Biochemical profile or uremic breath. , 1977, The New England journal of medicine.
[20] O. Wrong,et al. The origin and fate of salivary urea and ammonia in man. , 1977, Clinical science and molecular medicine.
[21] A. Vince,et al. Generation of ammonia from non-urea sources in a faecal incubation system. , 1976, Clinical science and molecular medicine.
[22] E. Carson,et al. Efficiency of utilization of urea nitrogen for albumin synthesis by chronically uraemic and normal man. , 1975, Clinical science and molecular medicine.
[23] Simenhoff Ml. Metabolism and toxicity of aliphatic amines. , 1975 .
[24] M. Walser. Urea metabolism in chronic renal failure. , 1974, The Journal of clinical investigation.
[25] J. Maher,et al. Uremia : biochemistry, pathogenesis and treatment , 1961 .