Have a personal or library account? Click to login
Simultaneous determination of iron and copper in children's sera by FAAS Cover

Simultaneous determination of iron and copper in children's sera by FAAS

Open Access
|Mar 2011

References

  1. P. J. Parsons and F. Barbosa, Jr., Atomic spectrometry and trends in clinical laboratory medicine, Spectrochim. Acta Part B: At. Spectr. 62 (2007) 992-1003; DOI: 10.1016/j.sab.2007.03.007.10.1016/j.sab.2007.03.007
  2. N. Weinstock and M. Uhlemann, Automated determination of copper in undiluted serum by atomic-absorption spectroscopy, Clin. Chem. 27 (1981) 1438-1440.10.1093/clinchem/27.8.1438
  3. T. Makino and K. Takahara, Direct determination of plasma copper and zinc in infants by atomic absorption with discrete nebulization, Clin. Chem. 27 (1981) 1445-1447.10.1093/clinchem/27.8.1445
  4. T. Makino and K. Takahara, Reference values: Accurate determination of plasma iron in infants by discrete nebulization in atomic absorption, Clin. Chem. 27 (1981) 2073.
  5. S. Salmela and E. Vuori, Improved direct determination of copper and zinc in a single serum dilution by atomic absorption spectrophotometry, At. Spectrosc. 5 (1984) 146-149.
  6. C. Terrés-Martos, M. Navarro-Alarcón, F. Martín-Lagos, H. L. G. de la Serrana and M. C. López-Martínez, Determination of copper levels in serum of healthy subjects by atomic absorption spectrometry, Sci. Total Environ. 198 (1997) 97-103; DOI: 10.1016/S0048-9697(97)05448-X.10.1016/S0048-9697(97)05448-X
  7. C. M. P. V. Lopes, A. A. Almeida, J. L. M. Santos and J. L. F. C. Lima, Automatic flow system for the sequential determination of copper in serum and urine by flame atomic absorption spectrometry, Anal. Chim. Acta 555 (2006) 370-376; DOI: 10.1016/j.aca.2005.09.013.10.1016/j.aca.2005.09.013
  8. Analytical Methods for Atomic Absorption Spectrometry, PerkinElmer Bodenseewerk, Überlingen, Germany, August 2000, pp. 157, 160.
  9. S. Luterotti and T. Vukman, Acidic method for determination of copper in blood serum by FAAS, Acta Pharm. 52 (2002) 143-148.
  10. R. L. Plackett and J. P. Burman, The design of optimum multifactorial experiments, Biometrika 33 (1946) 305-325; DOI: 10.1093/biomet/33.4.305.10.1093/biomet/33.4.305
  11. W. J. Youden and E. H. Steiner, Statistical Manual of the Association of Official Analytical Chemists, Association of Official Analytical Chemists, Washington (DC) 1975.
  12. B. V. Fisher, Statistics in chemistry - collaborative trials, Anal. Proc. 21 (1984) 443-448; DOI: 10.1039/ap9842100443.10.1039/ap9842100443
  13. L. D. Torbeck, Assay validation: Ruggedness and robustness with designed experiments, Pharm. Technol. 20 (1996) 169-172.
  14. L. D. Torbeck and R. C. Branning, Designed experiments - A vital role in validation, Pharm. Technol. 20 (1996) 108-114.
  15. Z. Flegar-Meštrić, N. Jagarinec, B. Šurina, D. Vrhovski-Hebrang, V. Preden-Kereković, S. Perkov and B. Smuđ-Makalouš, Reference intervals for biochemistry analytes determined in the sera of children and adolescents from Zagreb, Croatia, Biochem. Med. 6 (1996) 277-288.
  16. G. Lockitch, A. C. Halstead, L. Wadsworth, G. Quigley, L. Reston and B. Jacobson, Age- and sex-specific pediatric reference intervals and correlations for zinc, copper, selenium, iron, vitamins A and E, and related proteins, Clin. Chem. 34 (1988) 1625-1628.10.1093/clinchem/34.8.1625
DOI: https://doi.org/10.2478/v10007-011-008-4 | Journal eISSN: 1846-9558 | Journal ISSN: 1330-0075
Language: English
Page range: 93 - 102
Published on: Mar 15, 2011
Published by: Croatian Pharmaceutical Society
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year
Related subjects:

© 2011 Svjetlana Luterotti, Tončica Kordić, Slavica Dodig, published by Croatian Pharmaceutical Society
This work is licensed under the Creative Commons License.

Volume 61 (2011): Issue 1 (March 2011)