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Original

Quality goals in external quality assessment are best based on biology

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Pages 8-9 | Published online: 29 Mar 2011

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Mia Elbek Schjørring, Tina Parkner, Cindy Soendersoe Knudsen, Lea Tybirk & Claus Vinter Bødker Hviid. (2023) Neurofilament light chain: serum reference intervals in Danish children aged 0-17 years. Scandinavian Journal of Clinical and Laboratory Investigation 83:6, pages 403-407.
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X. Fuentes-Arderiu. (2002) Variability of the biological variation. Scandinavian Journal of Clinical and Laboratory Investigation 62:7, pages 561-563.
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C. G. Fraser. (1999) General strategies to set quality specifications for reliability performance characteristics. Scandinavian Journal of Clinical and Laboratory Investigation 59:7, pages 487-490.
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J. Møller, L. Christensen & K. Rasmussen. (1997) An external quality assessment study on the analysis of methylmalonic acid and total homocysteine in plasma. Scandinavian Journal of Clinical and Laboratory Investigation 57:7, pages 613-619.
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Elin Olafsdottir, K. Hellsing, H. Steensland, R. Tenhunen & Adam Uldall. (1994) 8. Adding new scopes to traditional EQA schemes emphasizing Quality Improvement. Upsala Journal of Medical Sciences 99:3, pages 377-384.
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P. Hyltoft Petersen, O. Blaabjerg, K. Irjala, A. Icén & K. Bjøro. (1993) A model for quality achievement - the NORDKEM protein project. Scandinavian Journal of Clinical and Laboratory Investigation 53:sup212, pages 10-12.
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Tony Badrick. (2021) Biological variation: Understanding why it is so important?. Practical Laboratory Medicine 23, pages e00199.
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Murat Keleş. (2020) Evaluation of the clinical chemistry tests analytical performance by using different models and specifications. Turkish Journal of Biochemistry 45:1, pages 11-18.
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Wytze P. Oosterhuis, Hassan Bayat, David Armbruster, Abdurrahman Coskun, Kathleen P. Freeman, Anders Kallner, David Koch, Finlay Mackenzie, Gabriel Migliarino, Matthias Orth, Sverre Sandberg, Marit S. Sylte, Sten Westgard & Elvar Theodorsson. (2018) The use of error and uncertainty methods in the medical laboratory. Clinical Chemistry and Laboratory Medicine (CCLM) 56:2, pages 209-219.
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Anna Carobene, Irene Marino, Abdurrahman Coşkun, Mustafa Serteser, Ibrahim Unsal, Elena Guerra, William A Bartlett, Sverre Sandberg, Aasne Karine Aarsand, Marit Sverresdotter Sylte, Thomas Røraas, Una Ørvim Sølvik, Pilar Fernandez-Calle, Jorge Díaz-GarzónFrancesca Tosato, Mario Plebani, Niels Jonker, Gerhard Barla & Ferruccio Ceriotti. (2017) The EuBIVAS Project: Within- and Between-Subject Biological Variation Data for Serum Creatinine Using Enzymatic and Alkaline Picrate Methods and Implications for Monitoring. Clinical Chemistry 63:9, pages 1527-1536.
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Anna CarobeneThomas Røraas, Una Ørvim Sølvik, Marit Sverresdotter Sylte, Sverre SandbergElena Guerra, Irene Marino, Niels JonkerGerhard Barla, William A BartlettPilar Fernandez-CalleJorge Díaz-Garzón, Francesca Tosato, Mario Plebani, Abdurrahman CoşkunMustafa Serteser, Ibrahim Unsal & Ferruccio Ceriotti. (2017) Biological Variation Estimates Obtained from 91 Healthy Study Participants for 9 Enzymes in Serum. Clinical Chemistry 63:6, pages 1141-1150.
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Paulo Pereira & Jerard Seghatchian. (2017) Balance of the unsuccessful systematization of measurement uncertainty in medical laboratories. Transfusion and Apheresis Science 56:2, pages 103-104.
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Rainer Haeckel, Eberhard Gurr, Torsten Hoff & on behalf of the working group Guide Limits of the German So. (2016) Bias, its minimization or circumvention to simplify internal quality assurance. LaboratoriumsMedizin 40:4, pages 263-270.
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James O Westgard & Sten A Westgard. (2015) Quality control review: implementing a scientifically based quality control system. Annals of Clinical Biochemistry: International Journal of Laboratory Medicine 53:1, pages 32-50.
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E. West, D. Bardell & J. M. Senior. (2014) Comparison of the EPOC and i‐ STAT analysers for canine blood gas and electrolyte analysis . Journal of Small Animal Practice 55:3, pages 139-144.
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Jorge L. SepulvedaDonald S. Young. (2013) The Ideal Laboratory Information System. Archives of Pathology & Laboratory Medicine 137:8, pages 1129-1140.
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Wytze P Oosterhuis. (2011) Gross Overestimation of Total Allowable Error Based on Biological Variation. Clinical Chemistry 57:9, pages 1334-1336.
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Adie Viljoen, Dhruv K. Singh, Ken Farrington & Patrick J. Twomey. (2011) Analytical quality goals for 25‐vitamin D based on biological variation. Journal of Clinical Laboratory Analysis 25:2, pages 130-133.
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W S A Smellie. (2008) What is a significant difference between sequential laboratory results?Calf muscle pain can indicate localised vasculitis. Journal of Clinical Pathology 61:4, pages 419-425.
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S. Blackwell, D. St. J. O’Reilly & D. Talwar. (2007) Biological variation of asymmetric dimethylarginine and related arginine metabolites and analytical performance goals for their measurement in human plasma. European Journal of Clinical Investigation 37:5, pages 364-371.
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Per Hyltoft Petersen, Callum G Fraser, Lone Jørgensen, Ivan Brandslund, Marta Stahl, Elizabeth MS Gowans, Jean-Claude Libeer & Carmen Ricós. (2016) Combination of Analytical Quality Specifications Based on Biological Within- and Between-Subject Variation. Annals of Clinical Biochemistry: International Journal of Laboratory Medicine 39:6, pages 543-550.
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M F Ryan & H Barbour. (2016) Magnesium Measurement in Routine Clinical Practice. Annals of Clinical Biochemistry: International Journal of Laboratory Medicine 35:4, pages 449-459.
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Per Hyltoft Petersen, Dietmar Stöckl, Ole Blaabjerg, Bent Pedersen, Erling Birkemose, Linda Thienpont, Jens Flensted Lassen & Jens Kjeldsen. (1997) Graphical interpretation of analytical data from comparison of a field method with a Reference Method by use of difference plots. Clinical Chemistry 43:11, pages 2039-2046.
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Callum G Fraser, Per Hyltoft Petersen, Jean-Claude Libeer & Carmen Ricos. (2016) Proposals for Setting Generally Applicable Quality Goals Solely Based on Biology. Annals of Clinical Biochemistry: International Journal of Laboratory Medicine 34:1, pages 8-12.
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