Standardization

Allison, J. E., Fraser, C. G., Halloran, S. P., & Young, G. P. (2012). Comparing fecal immunochemical tests: improved standardization is needed. Gastroenterology, 142(3), 422-424. https://doi.org/10.1053/j.gastro.2012.01.015  

Ananymous, A. (1999). IFCC Committee on Standardization of Markers of Cardiac Damage: Premises and Project Presentation. JIFCC, 11(2), 19-22 https://pubmed.ncbi.nlm.nih.gov/30720255/  

Andreasson, U., Kuhlmann, J., Pannee, J., Umek, R. M., Stoops, E., Vanderstichele, H., Matzen, A., Vandijck, M., Dauwe, M., Leinenbach, A., Rutz, S., Portelius, E., Zegers, I., Zetterberg, H., & Blennow, K. (2018). Commutability of the certified reference materials for the standardization of beta-amyloid 1-42 assay in human cerebrospinal fluid: lessons for tau and beta-amyloid 1-40 measurements. Clinical Chemistry and Laboratory Medicine, 56(12), 2058-2066. https://doi.org/10.1515/cclm-2018-0147  

Apple, F. S. (2005). Standardization of cardiac markers. Scand J Clin Lab Invest Suppl, 240, 107-111. http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=16112967  

Apple, F. S., Jesse, R. L., Newby, L. K., Wu, A. H., Christenson, R. H., Cannon, C. P., Francis, G., Morrow, D. A., Ravkilde, J., Storrow, A. B., Tang, W., Damege, I. C. o. S. o. M. o. C., Jaffe, A. S., Mair, J., Ordonez-Llanos, J., Pagani, F., Panteghini, M., Tate, J., & National Academy of Clinical, B. (2007). National Academy of Clinical Biochemistry and IFCC Committee for Standardization of Markers of Cardiac Damage Laboratory Medicine Practice Guidelines: analytical issues for biochemical markers of acute coronary syndromes. Clin Chem, 53(4), 547-551. https://doi.org/10.1373/clinchem.2006.084715  

Apple, F. S., Jesse, R. L., Newby, L. K., Wu, A. H., Christenson, R. H., National Academy of Clinical, B., & Damage, I. C. f. S. o. M. o. C. (2007). National Academy of Clinical Biochemistry and IFCC Committee for Standardization of Markers of Cardiac Damage Laboratory Medicine Practice Guidelines: Analytical issues for biochemical markers of acute coronary syndromes. Circulation, 115(13), e352-355. https://doi.org/10.1161/CIRCULATIONAHA.107.182881  

Apple, F. S., Wu, A. H., Jaffe, A. S., Panteghini, M., Christenson, R. H., Committee, N., & Ifcc, C. S. (2008). National Academy of Clinical Biochemistry and IFCC Committee for Standardization of Markers of Cardiac Damage Laboratory Medicine Practice Guidelines: analytical issues for biomarkers of heart failure. Clinical biochemistry, 41(4-5), 222-226. https://doi.org/10.1016/j.clinbiochem.2007.07.001  

Arnold, D. M., Curtis, B. R., Bakchoul, T., Platelet Immunology Scientific Subcommittee of the International Society on, T., & Hemostasis. (2015). Recommendations for standardization of laboratory testing for drug-induced immune thrombocytopenia: communication from the SSC of the ISTH. J Thromb Haemost, 13(4), 676-678. https://doi.org/10.1111/jth.12852  

Aslan, D., Yilmazturk, G. C., Akalin, N., Buyukbese, M. A., Sermez, Y., & Fenkci, S. (2011). Global and national harmonization and standardization of clinical laboratory testings: The example of HbA1c. Turkish Journal of Biochemistry-Turk Biyokimya Dergisi, 36(4), 374-383 https://www.researchgate.net/publication/288131091_Global_and_national_harmonization_and_standardization_of_clinical_laboratory_testings_The_example_of_HbA1c  

Barron, A. R., Bensic, M., & Sabo, K. (2018). A note on weighted least square distribution fitting and full standardization of the empirical distribution function. Test, 27(4), 946-967. https://doi.org/10.1007/s11749-018-0578-2  

Baylis, S. A., Hanschmann, K. M., Blumel, J., Nubling, C. M., & Group, H. E. V. C. S. (2011). Standardization of hepatitis E virus (HEV) nucleic acid amplification technique-based assays: an initial study to evaluate a panel of HEV strains and investigate laboratory performance. J Clin Microbiol, 49(4), 1234-1239. https://doi.org/10.1128/JCM.02578-10  

Blirup-Jensen, S., Grubb, A., Lindstrom, V., Schmidt, C., & Althaus, H. (2008). Standardization of Cystatin C: development of primary and secondary reference preparations. Scand J Clin Lab Invest Suppl, 241, 67-70. https://doi.org/10.1080/00365510802150067  

Blirup-Jensen, S., Johnson, A. M., & Larsen, M. (2001). Protein standardization IV: Value transfer procedure for the assignment of serum protein values from a reference preparation to a target material. Clin Chem Lab Med, 39(11), 1110-1122. https://doi.org/10.1515/CCLM.2001.176  

Blirup-Jensen, S., Johnson, A. M., Larsen, M., & Proteins, I. C. o. P. (2008). Protein standardization V: value transfer. A practical protocol for the assignment of serum protein values from a Reference Material to a Target Material. Clin Chem Lab Med, 46(10), 1470-1479. https://doi.org/10.1515/CCLM.2008.289  

Blomback, M., Abildgaard, U., van den Besselaar, A. M., Clementson, K. J., Dahlback, B., Exner, T., Francis, C. W., Gaffney, P., Gralnick, H., Hoyer, L. W., & et al. (1994). Nomenclature of quantities and units in thrombosis and haemostasis (recommendation 1993). A Collaborative project of the Scientific and Standardization Committee of the International Society on Thrombosis and Haemostasis (ISTH/SSC) and the Commission/Committee on Quantities and Units (in Clinical Chemistry) of the International Union of Pure and Applied Chemistry-International Federation of Clinical Chemistry (IUPAC-IFCC/CQU(CC)). Thromb Haemost, 71(3), 375-394. https://www.ncbi.nlm.nih.gov/pubmed/8029803  

Bock, J. L., & Eckfeldt, J. H. (2011). Advances in standardization of laboratory measurement procedures: implications for measuring biomarkers of folate and vitamin B-12 status in NHANES. American Journal of Clinical Nutrition, 94(1), 332S-336S. https://doi.org/10.3945/ajcn.111.013359  

Bodor, G. S., Little, R. R., Garrett, N., Brown, W., Goldstein, D. E., & Nahm, M. H. (1992). Standardization of glycohemoglobin determinations in the clinical laboratory: three years of experience. Clin Chem, 38(12), 2414-2418. https://www.ncbi.nlm.nih.gov/pubmed/1458576

Boerma, G. J. M. (1990). Standardization of Cholesterol Determination. Journal of Clinical Chemistry and Clinical Biochemistry, 28(4), 259-260 https://pubmed.ncbi.nlm.nih.gov/2358796/

Brink, S., Cloete, H., Roberts, R., & Holm, W. (1976). [Laboratory standardization and quality control in anticoagulant therapy]. S Afr Med J, 50(7), 205-208. https://www.ncbi.nlm.nih.gov/pubmed/  

Broughton, P. M. (1971). Standardization of laboratory equipment. Ann Ist Super Sanita, 7(2), 257-264. https://www.ncbi.nlm.nih.gov/pubmed/5154645  

Camara, J. E., Wise, S. A., Hoofnagle, A. N., Williams, E. L., Carter, G. D., Jones, J., Burdette, C. Q., Hahm, G., Nalin, F., Kuszak, A. J., Merkel, J., Durazo-Arvizu, R. A., Lukas, P., Cavalier, E., Popp, C., Beckert, C., Schultess, J., Van Slooten, G., Tourneur, C., . . . Sempos, C. T. (2021). Assessment of serum total 25-hydroxyvitamin D assay commutability of Standard Reference Materials and College of American Pathologists Accuracy-Based Vitamin D (ABVD) Scheme and Vitamin D External Quality Assessment Scheme (DEQAS) materials: Vitamin D Standardization Program (VDSP) Commutability Study 2. Analytical and Bioanalytical Chemistry, 413(20), 5067-5084. https://doi.org/10.1007/s00216-021-03470-w   

Cao, Z. M., Botelho, J. C., Rej, R., Vesper, H., & Astles, J. R. (2019). Impact of testosterone assay standardization efforts assessed via accuracy-based proficiency testing. Clinical biochemistry, 68, 37-43. https://doi.org/10.1016/j.clinbiochem.2019.03.014  

Carobene, A., Ceriotti, F., Infusino, I., Frusciante, E., & Panteghini, M. (2014). Evaluation of the impact of standardization process on the quality of serum creatinine determination in Italian laboratories. Clinica Chimica Acta, 427, 100-106. https://doi.org/10.1016/j.cca.2013.10.001  

Ceriotti, F. (2014). The role of External Quality Assessment Schemes in Monitoring and Improving the Standardization Process. Clin Chim Acta. https://doi.org/S0009-8981(13)00527-5  

Chantarangkul, V., Biguzzi, E., Asti, D., Palmucci, C., & Tripodi, A. (2013). Laboratory diagnostic outcome applying detection criteria recommended by the Scientific and Standardization Committee of the ISTH on Lupus Anticoagulant. Thromb Haemost, 110(1), 46-52. https://doi.org/10.1160/TH12-11-0850  

Christenson, R. H., Duh, S. H., Apple, F. S., Bodor, G. S., Bunk, D. M., Panteghini, M., Welch, M. J., Wu, A. H., & Kahn, S. E. (2006). Toward standardization of cardiac troponin I measurements part II: assessing commutability of candidate reference materials and harmonization of cardiac troponin I assays. Clin Chem, 52(9), 1685-1692. https://doi.org/10.1373/clinchem.2006.068437  

Clemmons, D. R., Bruns, D. E., & Comm, C. (2011). The Consensus Statement on the Standardization and Evaluation of Growth Hormone and Insulin-like Growth Factor Assays Lacks a Recommendation to Attempt Efficacious Harmonization Reply. Clin Chem, 57(10), 1463-1464. https://doi.org/10.1373/clinchem.2011.170860  

Cobbaert, C. (2017). Time for a holistic approach and standardization education in laboratory medicine. Clinical Chemistry and Laboratory Medicine, 55(3), 311-313. https://doi.org/10.1515/cclm-2016-0952  

Cobbaert, C., Weykamp, C., Franck, P., de Jonge, R., Kuypers, A., Steigstra, H., Klein Gunnewiek, J., van Loon, D., & Jansen, R. (2012). Systematic monitoring of standardization and harmonization status with commutable EQA-samples--five year experience from the Netherlands. Clin Chim Acta, 414, 234-240. https://doi.org/10.1016/j.cca.2012.09.027  

Connelly, P. W. (1989a). Laboratory standardization of lipid measurements. Cmaj, 141(4), 314. https://www.ncbi.nlm.nih.gov/pubmed/2766166

Connelly, P. W. (1989b). Laboratory Standardization of Lipid Measurements. Canadian Medical Association Journal, 141(4), 314-314. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1269504/pdf/cmaj00197-0052.pdf  

Consensus, C. (2007). Consensus statement on the worldwide standardization of the hemoglobin A1C measurement: the American Diabetes Association, European Association for the Study of Diabetes, International Federation of Clinical Chemistry and Laboratory Medicine, and the International Diabetes Federation. Diabetes Care, 30(9), 2399-2400. https://doi.org/10.2337/dc07-9925  

Cooper, G. R. (1964). Use and Standardization of Laboratory Determinations in Cardiovascular Disease. Listing Res Cardiovasc Field, 10, 808-812. https://www.ncbi.nlm.nih.gov/pubmed/24547581  

Cooper, G. R. (1986). The Need for Standardization of Lipid, Lipoprotein and Apolipoprotein Methods in Clinical Laboratories. Clin Chem, 32(6), 1221-1221 https://pubmed.ncbi.nlm.nih.gov/3042206/  

Cooper, G. R., Henderson, L. O., Smith, S. J., & Hannon, W. H. (1991). Clinical-Applications and Standardization of Apolipoprotein Measurements in the Diagnostic Workup of Lipid Disorders. Clin Chem, 37(5), 619-620 https://pubmed.ncbi.nlm.nih.gov/3042206/  

Cooper, G. R., Myers, G. L., Smith, S. J., & Sampson, E. J. (1988). Standardization of Lipid, Lipoprotein, and Apolipoprotein Measurements. Clin Chem, 34(8b), B95-B105 https://pubmed.ncbi.nlm.nih.gov/3042206/

Cornes, M. P., Church, S., van Dongen-Lases, E., Grankvist, K., Guimaraes, J. T., Ibarz, M., Kovalevskaya, S., Kristensen, G. B., Lippi, G., Nybo, M., Sprongl, L., Sumarac, Z., Simundic, A. M., Working Group for Preanalytical, P., European Federation of Clinical, C., & Laboratory, M. (2016). The role of European Federation of Clinical Chemistry and Laboratory Medicine Working Group for Preanalytical Phase in standardization and harmonization of the preanalytical phase in Europe. Ann Clin Biochem, 53(Pt 5), 539-547. https://doi.org/10.1177/0004563216643969  

Cornes, M. P., Church, S., van Dongen-Lases, E., Grankvist, K., Guimaraes, J. T., Ibarz, M., Kovalevskaya, S., Kristensen, G. B. B., Lippi, G., Nybo, M., Sprongl, L., Sumarac, Z., Simundic, A. M., Phase, W. G. P., & Chem, E. F. C. (2016). The role of European Federation of Clinical Chemistry and Laboratory Medicine Working Group for Preanalytical Phase in standardization and harmonization of the preanalytical phase in Europe. Ann Clin Biochem, 53(5), 539-547. https://doi.org/10.1177/0004563216643969  

Coskun, A., Unsal, I., Serteser, M., & Fraterman, A. (2009). Towards standardization of external quality assessment schemes by using bias values based on biological variation. Accred Qual Assur, 14, 547-552 https://link.springer.com/article/10.1007/s00769-009-0549-0  

Current status of blood cholesterol measurement in clinical laboratories in the United States: a report from the Laboratory Standardization Panel of the National Cholesterol Education Program. (1988). Clin Chem, 34(1), 193-201. https://www.ncbi.nlm.nih.gov/pubmed/3338168

Current Status of Blood Cholesterol Measurement in Clinical Laboratories in the United-States - a Report from the Laboratory Standardization Panel of the National Cholesterol Education-Program. (1988). Clin Chem, 34(1), 193-201 https://pubmed.ncbi.nlm.nih.gov/3338168/  

da Silva, P. M., Duarte, J. S., von Hafe, P., Gil, V., de Oliveira, J. N., & de Sousa, G. (2018). Standardization of laboratory and lipid profile evaluation: A call for action with a special focus in 2016 ESC/EAS dyslipidaemia guidelines - Full report. Atherosclerosis Supplements, 31. https://doi.org/10.1016/j.atherosclerosissup.2018.04.001  

Dati, F., & Brand, B. (2000). Standardization activities for harmonization of test results. Clinica Chimica Acta, 297(1-2), 239-249. https://doi.org/10.1016/S0009-8981(00)00250-3  

De Grande, L. A., Goossens, K., Van Uytfanghe, K., Das, B., MacKenzie, F., Patru, M. M., Thienpont, L. M., & Tests, I. C. f. S. o. T. F. (2016). Monitoring the stability of the standardization status of FT4 and TSH assays by use of daily outpatient medians and flagging frequencies. Clin Chim Acta. https://doi.org/10.1016/j.cca.2016.04.032  

De Grande, L. A. C., Van Uytfanghe, K., Reynders, D., Das, B., Faix, J. D., MacKenzie, F., Decallonne, B., Hishinuma, A., Lapauw, B., Taelman, P., Van Crombrugge, P., Van den Bruel, A., Velkeniers, B., Williams, P., Thienpont, L. M., & Tests, I. C. f. S. o. T. F. (2017). Standardization of Free Thyroxine Measurements Allows the Adoption of a More Uniform Reference Interval. Clin Chem, 63(10), 1642-1652. https://doi.org/10.1373/clinchem.2017.274407  

Delanghe, J. R., Cobbaert, C., Galteau, M. M., Harmoinen, A., Jansen, R., Kruse, R., Laitinen, P., Thienpont, L. M., Wuyts, B., Weykamp, C., & Panteghini, M. (2008). Trueness verification of actual creatinine assays in the European market demonstrates a disappointing variability that needs substantial improvement An international study in the framework of the EC4 creatinine standardization working group. Clinical Chemistry and Laboratory Medicine, 46(9), 1319-1325. https://doi.org/Doi 10.1515/Cclm.2008.256  

Delanghe, J. R., Cobbaert, C., Harmoinen, A., Jansen, R., Laitinen, P., & Panteghini, M. (2011). Focusing on the clinical impact of standardization of creatinine measurements: a report by the EFCC Working Group on Creatinine Standardization. Clinical Chemistry and Laboratory Medicine, 49(6), 977-982. https://doi.org/10.1515/Cclm.2011.167  

Delatour, V., Clouet-Foraison, N., Gaie-Levrel, N., Marcovina, S., Hoofnagle, A., Kuklenyik, Z., Caulfield, M., Otvos, J., Contois, J., Krauss, R., Kulkarni, K., Remaley, A., Vesper, H., Cobbaert, C., & Gillery, P. (2019). Standardization of advanced lipoprotein testing: The BioSITrace project. Clinica Chimica Acta, 493, S752-S753. https://doi.org/10.1016/j.cca.2019.03.1479  

Dempfle, C. E. (2006). D-dimer: Standardization versus harmonization. Thrombosis and Haemostasis, 95(3), 399-400. https://doi.org/10.1160/Th06-01-0043  

Dietz, A. A., & Rubinstein, H. M. (1972). Laboratory note--standardization of the Ellman reaction. Clinical biochemistry, 5(2), 136-138. https://www.ncbi.nlm.nih.gov/pubmed/5039595

Dimech, W. (2016). Where to Now for Standardization of Anti-Rubella Virus IgG Testing. J Clin Microbiol, 54(7), 1682-1683. https://doi.org/10.1128/JCM.00800-16  

Dimech, W. (2021). The Standardization and Control of Serology and Nucleic Acid Testing for Infectious Diseases. Clin Microbiol Rev, 34(4), e0003521. https://doi.org/10.1128/CMR.00035-21  

Dimech, W., Grangeot-Keros, L., & Vauloup-Fellous, C. (2016). Standardization of Assays That Detect Anti-Rubella Virus IgG Antibodies. Clin Microbiol Rev, 29(1), 163-174. https://doi.org/10.1128/CMR.00045-15  

Dummler, W. (1989). Standardization of diagnostic laboratory methods--results, experiences and future goals. Przegl Lek, 46(7), 574-577. https://www.ncbi.nlm.nih.gov/pubmed/2587783  

Eckfeldt, J. H., & Bruns, D. E. (1997). Another step toward standardization of methods for measuring hemoglobin A1c. Clin Chem, 43(10), 1811-1813. https://www.ncbi.nlm.nih.gov/pubmed/9341997

Elamathi, N., Barik, T. K., Verma, V., Velamuri, P. S., Bhatt, R. M., Sharma, S. K., & Raghavendra, K. (2014). Standardization of a bottle assay--an indigenous method for laboratory and field monitoring of insecticide resistance and comparison with WHO adult susceptibility test. Parasitology Research, 113(10), 3859-3866. https://doi.org/10.1007/s00436-014-4054-y  

Fabricant, J., & Freundt, E. A. (1967). Importance of extension and standardization of laboratory tests for the identification and classification of mycoplasma. Ann N Y Acad Sci, 143(1), 50-58. https://www.ncbi.nlm.nih.gov/pubmed/4861143

Favaloro, E. J., Plebani, M., & Lippi, G. (2014a). Standardization and Harmonization of Antiphospholipid Antibody Assays. Semin Thromb Hemost, 40(2), 161-162. https://doi.org/10.1055/s-0033-1364184  

Favaloro, E. J., Plebani, M., & Lippi, G. (2014b). Standardization and harmonization of antiphospholipid antibody assays. Semin Thromb Hemost, 40(2), 161-162. https://doi.org/10.1055/s-0033-1364184  

Flegar-Mestric, Z., Perkov, S., & Radeljak, A. (2016). Standardization in laboratory medicine: Adoption of common reference intervals to the Croatian population. World J Methodol, 6(1), 93-100. https://doi.org/10.5662/wjm.v6.i1.93  

FREEZE-DRIED B. C. G. vaccine; results of laboratory tests and of trials among schoolchildren in Middlesex; a preliminary report to the Medical Research Council by their committee on the standardization of freeze-dried B. C. G. vaccine. (1958). Br Med J, 1(5062), 79-83. https://www.ncbi.nlm.nih.gov/pubmed/13489319

Fuentes-Arderiu, X. (1989). Standardization of nomenclature in clinical chemistry. Clin Chem, 35(7), 1552. https://www.ncbi.nlm.nih.gov/pubmed/2758616  

Fuentes-Arderiu, X. (1991). Nomenclature standardization on an international basis. Clin Chim Acta, 198, 279-282. https://doi.org/10.1016/0009-8981(91)90363-H

Fuentes-Arderiu, X. (2001). [Standardization and quality in the clinical laboratory : towards an European system of clinical laboratory sciences]. Ann Biol Clin (Paris), 59(2), 225-230. https://www.ncbi.nlm.nih.gov/pubmed/11282529  (Normalisation et qualitologie au laboratoire de biologie clinique : vers un systeme europeen de biologie clinique.)

Gabsch, H. C. (1961). [Fundamental thoughts on standardization of laboratory methods]. Dtsch Gesundheitsw, 16, 2438-2440. https://www.ncbi.nlm.nih.gov/pubmed/13896100  

Gaffney, P. J., Edgell, T., Creighton-Kempsford, L. J., Wheeler, S., & Tarelli, E. (1995). Fibrin degradation product (FnDP) assays: analysis of standardization issues and target antigens in plasma. Br J Haematol, 90(1), 187-194. https://doi.org/10.1111/j.1365-2141.1995.tb03399.x  

Galakhova, O. P., & Rozhdestvenskaya, T. B. (1975). State of Standardization of References and Methods of Dc and Ac Voltage Measurements. Measurement Techniques, 18(9), 1339-1341. https://doi.org/Doi 10.1007/Bf00824085  

Garde, A. H., Hansen, A. M., Kristiansen, J., & Knudsen, L. E. (2004). Comparison of uncertainties related to standardization of urine samples with volume and creatinine concentration. Annals of Occupational Hygiene, 48(2), 171-179. https://doi.org/10.1093/annhyg/meh019  

Gasca-Aragon, H., Balderas-Escamilla, M., Serrano-Caballero, V. M., Avila-Calderon, M. A., Pabello-Poegner, A. G., Sierra-Amor, R. I., Ruiz-Arenas, R., Cueto-Manzano, A. M., Cortes-Sanbria, L., Martinez-Ramirez, H. R., Garcia-Garcia, G., Arce-Osuna, M., & Mitani-Nakanishi, Y. (2019). Standardization and improvement program for creatinine measurement in human serum. Accreditation and Quality Assurance volume 24, pages 3–8 https://doi.org/10.1007/s00769-018-1316-x

Gimeno, I. M., Witter, R. L., Cortes, A. L., Reddy, S. M., & Pandiri, A. R. (2012). Standardization of a model to study revaccination against Marek's disease under laboratory conditions. Avian Pathol, 41(1), 59-68. https://doi.org/10.1080/03079457.2011.635636  

Gosling, J. P. (1993). Standardization of hapten immunoprocedures: total cortisol. Scand. J. Clin. Lab. Invest., 53, 3-41. https://doi.org/10.3109/00365519309086907

Graham, M., Tilson, L., Streitberg, R., Hamblin, J., & Korman, T. M. (2016). Improved standardization and potential for shortened time to results with BD Kiestra total laboratory automation of early urine cultures: A prospective comparison with manual processing. Diagn Microbiol Infect Dis, 86(1), 1-4. https://doi.org/10.1016/j.diagmicrobio.2016.06.020  

Gram, J., Kluft, C., & Jespersen, J. (2000). Standardization of Measurement of Components of the Fibrinolytic System - Introduction and Current Status. eJIFCC, 12(2), 37-41. https://www.ncbi.nlm.nih.gov/pubmed/30647553

Gratama, J. W., Kraan, J., Adriaansen, H., Hooibrink, B., Levering, W., Reinders, P., Van den Beemd, M. W., Van der Holt, B., & Bolhuis, R. L. (1997). Reduction of interlaboratory variability in flow cytometric immunophenotyping by standardization of instrument set-up and calibration, and standard list mode data analysis. Cytometry, 30(1), 10-22. http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=9056737  

Greaves, M., Control of Anticoagulation Subcommittee of the, S., Standardization Committee of the International Society of, T., & Haemostasis. (2002). Limitations of the laboratory monitoring of heparin therapy. Scientific and Standardization Committee Communications: on behalf of the Control of Anticoagulation Subcommittee of the Scientific and Standardization Committee of the International Society of Thrombosis and Haemostasis. Thromb Haemost, 87(1), 163-164. https://www.ncbi.nlm.nih.gov/pubmed/11848446  

Griffith, L. E., van den Heuvel, E., Raina, P., Fortier, I., Sohel, N., Hofer, S. M., Payette, H., Wolfson, C., Belleville, S., Kenny, M., & Doiron, D. (2016). Comparison of Standardization Methods for the Harmonization of Phenotype Data: An Application to Cognitive Measures. American Journal of Epidemiology, 184(10), 770-778. https://doi.org/10.1093/aje/kww098  

Gronlund, H., Riber, L., Vigre, H., Lofstrom, C., Folling, L., Huehn, S., Malorny, B., Radstrom, P., Rudi, K., & Hoorfar, J. (2011). Microarray-based genotyping of Salmonella: inter-laboratory evaluation of reproducibility and standardization potential. International Journal of Food Microbiology, 145 Suppl 1, S79-85. https://doi.org/10.1016/j.ijfoodmicro.2010.08.007  

Grubb, D., Rasmussen, B., Linnet, K., Olsson, S. G., & Lindberg, L. (2012). Breath alcohol analysis incorporating standardization to water vapour is as precise as blood alcohol analysis. Forensic Sci Int, 216(1-3), 88-91. https://doi.org/10.1016/j.forsciint.2011.09.001  

Gruppo di, L. d. D. W. G., Mosca, A., Iafusco, D., Meschi, F., Branca, M. T., Carta, M., Genna, M. L., Giorda, C. B., Ghidelli, R., Ghislandi, G., Lapolla, A., Buondonno Lombardi, V., Lovagnini, C. A., Marra, M., Medea, G., Pizzini, A., Rossi, F., Scalpone, R., Tofini, G., . . . Zaninotto, M. (2012). The implementation of international standardization of glycated hemoglobin. A "red-letter-day" for glycated hemoglobin in Italy: 1/1/11. Italian Recommendations of GLAD Working Group (A1c delegates WG). J Endocrinol Invest, 35(4), 353-356. https://doi.org/10.3275/7771  

Guidelines on selection of laboratory tests for monitoring the acute phase response. International Committee for Standardization in Haematology (expert panel on blood rheology). (1988). J Clin Pathol, 41(11), 1203-1212. https://www.ncbi.nlm.nih.gov/pubmed/2463272

Gumpert, N. F. (1977). Standardization of units of measurement. Am J Hosp Pharm, 34(3), 226, 229. https://www.ncbi.nlm.nih.gov/pubmed/855860  

Haeckel, R., & Kindler, M. (1999). Effect of current and forthcoming European legislation and standardization on the setting of quality specifications by laboratories. Scandinavian Journal of Clinical & Laboratory Investigation, 59(7), 569-573. https://doi.org/10.1080/00365519950185373

Hanas, R., & John, G. (2010). 2010 Consensus statement on the worldwide standardization of the hemoglobin A(1c) measurement. Diabetes Research and Clinical Practice, 90(2), 228-230. https://doi.org/10.1016/j.diabres.2010.05.011  

Hanas, R., John, G., & Comm, I. H. c. C. (2010). 2010 Consensus Statement on the Worldwide Standardization of the Hemoglobin A(1c) Measurement. Clin Chem, 56(8), 1362-1364. https://doi.org/10.1373/clinchem.2010.150540  

Hanas, R., John, W. G., & International Hb, A. c. C. C. (2014). 2013 Update on the worldwide standardization of the hemoglobin A1c measurement. Pediatr Diabetes, 15(3), e1-2. https://doi.org/10.1111/pedi.12047  

Helander, A., & Nordin, G. (2008). Insufficient standardization of a direct carbohydrate deficient transferrin immunoassay. Clin Chem, 54(6), 1090-1092. https://doi.org/10.1373/clinchem.2007.102145  

Helander, A., Wielders, J. P., Jeppsson, J. O., Weykamp, C., Siebelder, C., Anton, R. F., Schellenberg, F., Whitfield, J. B., & Transferrin, I. W. G. o. S. o. C.-D. (2010). Toward standardization of carbohydrate-deficient transferrin (CDT) measurements: II. Performance of a laboratory network running the HPLC candidate reference measurement procedure and evaluation of a candidate reference material. Clin Chem Lab Med, 48(11), 1585-1592. https://doi.org/10.1515/CCLM.2010.322  

Henderson, L. O., Hannon, W. H., Smith, S. J., & Cooper, G. R. (1987). An international collaborative study on standardization of apolipoproteins A-I and B. Part II. Evaluation of contributions of antisera to among-laboratory variance components. Clin Chem, 33(12), 2250-2256. https://www.ncbi.nlm.nih.gov/pubmed/3121215

Heuck, C. C. (1997). WHO's strategy on standardization in laboratory pathology. Rinsho Byori, 45(5), 401-406. https://www.ncbi.nlm.nih.gov/pubmed/9170966  

Heyns, A. D., Bradlow, B. A., du Toit, E. D., & Katz, J. (1977). Use of SI and standardization of laboratory reports in haematology. S Afr Med J, 52(3), 121-124. https://www.ncbi.nlm.nih.gov/pubmed/897867  

Hjelm, M. (1978). The need of European co-ordination of standardization in clinical laboratory sciences [proceedings]. Ann Biol Clin (Paris), 36(3), 198-199. https://www.ncbi.nlm.nih.gov/pubmed/707862  

Hoeltge, G. A. (2009). Laboratory standardization from the patient's point of view. Rinsho Byori, 57(6), 549-553. https://www.ncbi.nlm.nih.gov/pubmed/19621787  

Hoelzel, W., Weykamp, C., Jeppsson, J. O., Miedema, K., Barr, J. R., Goodall, I., Hoshino, T., John, W. G., Kobold, U., Little, R., Mosca, A., Mauri, P., Paroni, R., Susanto, F., Takei, I., Thienpont, L., Umemoto, M., Wiedmeyer, H. M., & Standardization, I. W. G. o. H. c. (2004). IFCC reference system for measurement of hemoglobin A1c in human blood and the national standardization schemes in the United States, Japan, and Sweden: a method-comparison study. Clin Chem, 50(1), 166-174. https://doi.org/10.1373/clinchem.2003.024802  

Hoerger, T. J., Wittenborn, J. S., & Young, W. (2011). A Cost-Benefit Analysis of Lipid Standardization in the United States. Preventing Chronic Disease, 8(6) A136. https://pubmed.ncbi.nlm.nih.gov/22005629/

Hoffmann, G., Klawonn, F., Lichtinghagen, R., & Orth, M. (2018). No mathematical shortcuts for standardization or harmonization of laboratory measurements Reply. Journal of Laboratory Medicine, 42(1-2), 63-65. https://doi.org/10.1515/labmed-2018-0011  

Houdijk, W. P. M. (1991). Warning - Simplate-Ii, Lack of Standardization in Standardized Bleeding-Time Devices - Reply - Lot-to-Lot Variation in Ejection Force Has Been Rectified. Thrombosis and Haemostasis, 66(5), 625-625. https://www.ncbi.nlm.nih.gov/pubmed/14995988

Howey, J. E., Browning, M. C., & Fraser, C. G. (1987). Assay of serum fructosamine that minimizes standardization and matrix problems: use to assess components of biological variation. Clin Chem, 33(2 Pt 1), 269-272. http://www.ncbi.nlm.nih.gov/pubmed/3802511

Huynh, H. H., Boeuf, A., Vinh, J., Delatour, V., & P, I. W. G. S. (2021). Evaluation of the necessity and the feasibility of the standardization of procalcitonin measurements: Activities of IFCC WG-PCT with involvement of all stakeholders. Clinica Chimica Acta, 515, 111-121. https://doi.org/10.1016/j.cca.2021.01.004  

Hwang, S. H., Jung, S. K., Kang, S. J., Cha, H. S., Chung, S. H., & Lee, D. H. (2013). Development of a document management system for the standardization of clinical laboratory documents. Ann Lab Med, 33(6), 441-448. https://doi.org/10.3343/alm.2013.33.6.441  

Infusino, I., Schumann, G., Ceriotti, F., & Panteghini, M. (2010). Standardization in clinical enzymology: a challenge for the theory of metrological traceability. Clin Chem Lab Med, 48(3), 301-307. https://doi.org/10.1515/CCLM.2010.075  

International Committee for Standardization in Hematology (ICSH), International Federation of Clinical Chemistry (IFCC), World Association of (Anatomic and Clinical) Pathology Societies (WAPS): Recommendation for use of SI in clinical laboratory measurements. (1973). Z Klin Chem Klin Biochem, 11(2), 93. https://www.ncbi.nlm.nih.gov/pubmed/4804162  

International Federation of Clinical, C., Laboratory Medicine Working Group for Standardization of Thyroid Function, T., Van Houcke, S. K., Van Uytfanghe, K., Shimizu, E., Tani, W., Umemoto, M., & Thienpont, L. M. (2011). IFCC international conventional reference procedure for the measurement of free thyroxine in serum: International Federation of Clinical Chemistry and Laboratory Medicine (IFCC) Working Group for Standardization of Thyroid Function Tests (WG-STFT)(1). Clin Chem Lab Med, 49(8), 1275-1281. https://doi.org/10.1515/CCLM.2011.639  

Jackson, C. M., White, G. C., 2nd, Barrowcliffe, T., Esnouf, M. P., Jespersen, J., Kluft, C., Lenahan, J., Joint Committee of the, I. S. D., the, I. S., & Standardization, C. (2002). A reference system approach to future standardization of laboratory tests for hemostasis. A position paper of the Joint Committee of the IFCC Scientific Division and the ISTH Scientific and Standardization Committee. Thromb Haemost, 87(1), 165-169. https://www.ncbi.nlm.nih.gov/pubmed/11848447  

Jackson, C. M., White, G. C., Barrowcliffe, T., Esnouf, M. P., Jespersen, J., Kluft, C., Lenahan, J., & Standar, C. I. S. D. I. S. (2002). A reference system approach to future standardization of laboratory tests for hemostasis. Thrombosis and Haemostasis, 87(1), 165-169. https://www.ncbi.nlm.nih.gov/pubmed/11848447

Jacobs, J. F. M., & Bossuyt, X. (2018). Standardization and harmonization of autoimmune diagnostics. Clinical Chemistry and Laboratory Medicine, 56(10), 1563-1567. https://doi.org/10.1515/cclm-2018-0807  

Jain, M., McCall, A., & Riddle, M. (2000). Standardization of hemoglobin A1c values. Ann Intern Med, 132(8), 676. https://www.ncbi.nlm.nih.gov/pubmed/10766691

Jassam, N., Weykamp, C., Thomas, A., Secchiero, S., Sciacovelli, L., Plebani, M., Thelen, M., Cobbaert, C., Perich, C., Ricos, C., Paula, F. A., & Barth, J. H. (2017). Post-standardization of routine creatinine assays: are they suitable for clinical applications. Ann Clin Biochem, 54(3), 386-394. https://doi.org/10.1177/0004563216664541  

Jeppsson, J. O., Arndt, T., Schellenberg, F., Wielders, J. P. M., Anton, R. F., Whitfield, J. B., & Helander, A. (2007). Toward standardization of carbohydrate-deficient transferrin (CDT) measurements: I. Analyte definition and proposal of a candidate reference method. Clinical Chemistry and Laboratory Medicine, 45(4), 558-562. https://doi.org/10.1515/Cclm.2007.107  

Jeppsson, J. O., Arndt, T., Schellenberg, F., Wielders, J. P. M., Anton, R. F., Whitfield, J. B., Helander, A., & Wg-Cdt, I. (2008). Standardization of carbohydrate-deficient transferrin: reply to the letter by Tagliaro and Bortolotti. Clinical Chemistry and Laboratory Medicine, 46(5), 727-728. https://doi.org/10.1515/Cclm.2008.143  

Johnson, R. (1998). Standardization of hemoglobin A1c. Clin Chem, 44(5), 1068-1069. https://www.ncbi.nlm.nih.gov/pubmed/9590390

Karge, W. H., Weiner, E. J., Rogers, E. J., & Nicolosi, R. J. (1989). Evaluation of Cholesterol Measurement with the Beckman System 700 Analyzer in the Centers for Disease Control National Heart, Lung and Blood Institute Lipid Standardization Program. Clin Chem, 35(8), 1790-1791. https://pubmed.ncbi.nlm.nih.gov/2758655/

Kashiwagi, A., Kasuga, M., Araki, E., Oka, Y., Hanafusa, T., Ito, H., Tominaga, M., Oikawa, S., Noda, M., Kawamura, T., Sanke, T., Namba, M., Hashiramoto, M., Sasahara, T., Nishio, Y., Kuwa, K., Ueki, K., Takei, I., Umemoto, M., . . . Soc, J. D. (2012). International clinical harmonization of glycated hemoglobin in Japan: From Japan Diabetes Society to National Glycohemoglobin Standardization Program values. Journal of Diabetes Investigation, 3(1), 39-40. https://doi.org/10.1111/j.2040-1124.2012.00207.x  

Kimberly, M. M., Caudill, S. P., Vesper, H. W., Monsell, E. A., Miller, W. G., Rej, R., Rifai, N., Dati, F., & Myers, G. L. (2009). Standardization of high-sensitivity immunoassays for measurement of C-reactive protein; II: Two approaches for assessing commutability of a reference material. Clin Chem, 55(2), 342-350. https://doi.org/10.1373/clinchem.2008.115907  

Kinoshita, S., Toyofuku, M., Iida, H., Wakiyama, M., Kurihara, M., Nakahara, M., Nakata, M., Nakashima, K., Seo, S., Hosaka, N., Yano, J., Misumoto, T., Ishihara, H., Ikeda, K., Tsuchihashi, M., Kawashima, H., Imoto, Y., Imamura, K., Urabe, Y., . . . Hamasaki, N. (2001). Standardization of laboratory data and establishment of reference intervals in the Fukuoka Prefecture: a Japanese perspective. Clin Chem Lab Med, 39(3), 256-262. https://doi.org/10.1515/CCLM.2001.040  

Kirk, R. G. (2012). "Standardization through mechanization". Germ-free life and the engineering of the ideal laboratory animal. Technol Cult, 53(1), 61-93. https://www.ncbi.nlm.nih.gov/pubmed/22530388  

Kitchen, S., & Preston, F. E. (1999). Standardization of prothrombin time for laboratory control of oral anticoagulant therapy. Semin Thromb Hemost, 25(1), 17-25. https://doi.org/10.1055/s-2007-996419  

Klee, G. G. (2010). Harmonization and Standardization of Thyroid Function Tests. Clin Chem, 56(6), 879-880. https://doi.org/10.1373/clinchem.2010.145540  

Konnert, A., & Berding, C. (2004). The statistical basis of standardization designs for diagnostic assays. Accreditation and Quality Assurance, 9(8), 457-463. https://doi.org/10.1007/s00769-004-0817-y  

Lacorn, M., & Immer, U. (2010). Standardization in allergen determination. Accreditation and Quality Assurance, 15(4), 207-216. https://doi.org/10.1007/s00769-009-0592-x  

Lacorn, M., Weiss, T., & Immer, U. (2013). How should we proceed with the standardization in case of allergen determination? Accreditation and Quality Assurance, 18(2), 119-125. https://doi.org/10.1007/s00769-013-0965-z   

Lawson, J., Switchenko, J. M., McKibbin, T., & Harvey, R. D. (2016). Impact of Isotope Dilution Mass Spectrometry (IDMS) Standardization on Carboplatin Dose and Adverse Events. Pharmacotherapy, 36(6), 617-622. https://doi.org/10.1002/phar.1759  

Lederer, A. (1920). Urgent Need for the Standardization of Laboratory Work. Am J Public Health (N Y), 10(11), 876-879. https://www.ncbi.nlm.nih.gov/pubmed/18010395

Lee, J. I., Kim, J. Y., Choi, J. Y., Kim, H. K., Jang, H. W., Hur, K. Y., Kim, J. H., Kim, K. W., Chung, J. H., & Kim, S. W. (2010). Differences in serum thyroglobulin measurements by 3 commercial immunoradiometric assay kits and laboratory standardization using Certified Reference Material 457 (CRM-457). Head Neck, 32(9), 1161-1166. https://doi.org/10.1002/hed.21308  

Lee, K. N., Yoon, J. H., Min, W. K., Lim, H. S., Song, J., Chae, S. L., Jang, S., Ki, C. S., Bae, S. Y., Kim, J. S., Kwon, J. A., Lee, C. K., & Yoon, S. Y. (2008). Standardization of terminology in laboratory medicine II. J Korean Med Sci, 23(4), 711-713. https://doi.org/10.3346/jkms.2008.23.4.711  

Levine, D. M., Maine, G. T., Armbruster, D. A., Mussell, C., Buchholz, C., O'Connor, G., Tuck, V., Johnston, A., & Holt, D. W. (2011). The need for standardization of tacrolimus assays. Clin Chem, 57(12), 1739-1747. https://doi.org/10.1373/clinchem.2011.172080  

Lewis, S. M. (1983). Standardization of the laboratory control of oral anticoagulant therapy. Blood, 61(1), 210. https://www.ncbi.nlm.nih.gov/pubmed/6848147

Lewis, S. M. (1990). Standardization and Harmonization of the Blood-Count - the Role of International Committee for Standardization in Hematology (Icsh). European Journal of Haematology, 45, 9-13. https://doi.org/10.1111/j.1600-0609.1990.tb01520.x

Little, R., Wiedmayer, H.-M., England, J., Wilke, A., Rohlfing, C., Wians, F., Jacobson, J., Zellmer, V., Goldstein, & DE. (1992). Interlaboratory standardization of measurements of glycohemoglobins. Clin Chem, 38, 2472-2478. https://pubmed.ncbi.nlm.nih.gov/1458587/

Little, R. R. (2003). Glycated hemoglobin standardization--National Glycohemoglobin Standardization Program (NGSP) perspective. Clin Chem Lab Med, 41(9), 1191-1198. http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=14598869

Little, R. R., Rohlfing, C., & Sacks, D. B. (2019). The National Glycohemoglobin Standardization Program: Over 20 Years of Improving Hemoglobin A1c Measurement. Clin Chem, 65(7), 839-848. https://doi.org/10.1373/clinchem.2018.296962  

Little, R. R., Rohlfing, C. L., Wiedmeyer, H. M., Myers, G. L., Sacks, D. B., & Goldstein, D. E. (2001). The national glycohemoglobin standardization program: a five-year progress report. Clin Chem, 47(11), 1985-1992. http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=11673367

Loeliger, E. A. (1973). Standardization of diagnostic materials. 3. Laboratory reagents and coagulation assay procedures. Bull World Health Organ, 48(6), 727-736. https://www.ncbi.nlm.nih.gov/pubmed/4544784

Lovrencic, M. V., & Metelko, Z. (2011). Standardization of the hemoglobin A1c reporting: transferring global consensus to the local community--special report. Biochem Med (Zagreb), 21(1), 53-54. https://www.ncbi.nlm.nih.gov/pubmed/22141207

Marcovina, S., Bowsher, R. R., Miller, W. G., Staten, M., Myers, G., Caudill, S. P., Campbell, S. E., Steffes, M. W., & Insulin Standardization, W. (2007). Standardization of insulin immunoassays: report of the American Diabetes Association Workgroup. Clin Chem, 53(4), 711-716. https://doi.org/10.1373/clinchem.2006.082214  

Marcovina, S. M., Clouet-Foraison, N., Koschinsky, M. L., Lowenthal, M. S., Orquillas, A., Boffa, M. B., Hoofnagle, A. N., & Vaisar, T. (2021). Development of an LC-MS/MS Proposed Candidate Reference Method for the Standardization of Analytical Methods to Measure Lipoprotein(a). Clin Chem, 67(3), 490-499. https://doi.org/10.1093/clinchem/hvaa324  

Marshall, S. M., & Barth, J. H. (2000). Standardization of HbA1c measurements: a consensus statement. Ann. Clin. Biochem., 37(45-46). https://doi.org/10.1258/0004563001901506 

Massambu, C., & Mwangi, C. (2009). The Tanzania experience: clinical laboratory testing harmonization and equipment standardization at different levels of a tiered health laboratory system. American journal of clinical pathology, 131(6), 861-866. https://doi.org/10.1309/AJCP3ZAAFUPCIXIG  

McGuiness, C., Seccombe, D. W., Frolich, J. J., Ehnholm, C., Sundvall, J., & Steiner, G. (2000). Laboratory Standardization of a Large International Clinical Trial: The DAIS Experience. Clin. Biochem., 33, 15-24. https://doi.org/10.1016/s0009-9120(99)00081-8

McGuinness, C., Seccombe, D. W., Frohlich, J. J., Ehnholm, C., Sundvall, J., & Steiner, G. (2000). Laboratory standardization of a large international clinical trial: the DAIS experience. DAIS Project Group. Diabetes Atherosclerosis Intervention Study. Clinical biochemistry, 33(1), 15-24. https://www.ncbi.nlm.nih.gov/pubmed/10693982

McLaughlin, P. M. J., & Bakker, A. J. (2008). What's in a name? Standardization of HbA1c. Clinical Chemistry and Laboratory Medicine, 46(6), 878-879. https://doi.org/10.1515/Cclm.2008.174  

Mei, J. V., Kennedy, M., Linley, L., Hanson, D., Schiffer, J., Ethridge, S., & Branson, B. (2011). Standardization and monitoring of laboratory performance and quality assurance by use of the less-sensitive HIV incidence assay: seven years of results. J Acquir Immune Defic Syndr, 58(5), 482-488. https://doi.org/10.1097/QAI.0b013e318230dd77  

Miedema, K. (2005). Standardization of HbA1c and Optimal Range of Monitoring. Scand J Clin Lab Invest Suppl, 240, 61-72. http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=16112961  

Miller, W. G. (2009). The role of proficiency testing in achieving standardization and harmonization between laboratories. Clinical biochemistry, 42(4-5), 232-235. https://doi.org/10.1016/j.clinbiochem.2008.09.004  

Miller, W. G. (2018). The standardization journey and the path ahead. J Lab Precis Med. https://doi.org/10.21037/jlpm.2018.09.14  

Miller, W. G., Crane, P. D., & Cryer, C. (1986). Interlaboratory standardization of enzyme results: the Richmond project. Clin Chem, 32(8), 1525-1531. http://www.ncbi.nlm.nih.gov/pubmed/2426008

Miller, W. G., Thienpont, L. M., Van Uytfanghe, K., Clark, P. M., Lindstedt, P., Nilsson, G., Steffes, M. W., & Insulin Standardization Work, G. (2009). Toward standardization of insulin immunoassays. Clin Chem, 55(5), 1011-1018. https://doi.org/10.1373/clinchem.2008.118380  

Molinaro, R. J. (2008). Targeting HbA1c: standardization and clinical laboratory measurement. MLO Med Lab Obs, 40(1), 10-14, 16-19. https://www.ncbi.nlm.nih.gov/pubmed/18314846  

Moore, J. D., Caufield, W. V., & Shaw, W. A. (2007). Quantitation and standardization of lipid internal standards for mass spectroscopy. Lipidomics and Bioactive Lipids: Mass-Spectrometry-Based Lipid Analysis, 432, 351-367. https://doi.org/10.1016/S0076-6879(07)32014-4

Morris, H. A. (2009). Traceability and standardization of immunoassays: a major challenge. Clinical biochemistry, 42(4-5), 241-245. https://doi.org/10.1016/j.clinbiochem.2008.09.005  

Munteanu, M., Imbert-Bismut, F., Housset, C., Messous, D., Fellahi, S., & Poynard, T. (2010). Evaluation of FibroTest inter-laboratory variations requires standardization on analytical systems and should not be mixed with underpowered histological validation. Clin Chim Acta, 411(3-4), 292-293. https://doi.org/10.1016/j.cca.2009.11.015  

Myers, G. L. (2008a). Introduction to standardization of laboratory results. Steroids, 73(13), 1293-1296. https://doi.org/10.1016/j.steroids.2008.06.012  

Myers, G. L. (2008b). Standardization of serum creatinine measurement: Theory and practice. Scandinavian Journal of Clinical & Laboratory Investigation, 68, 57-63. https://doi.org/10.1080/00365510802149887  

Myers, G. L., Cooper, G. R., Winn, C. L., & Smith, S. J. (1989). The Centers for Disease Control-National-Heart-Lung-and-Blood-Institute Lipid Standardization Program - an Approach to Accurate and Precise Lipid Measurements. Clin Lab Med, 9(1), 105-135. https://doi.org/10.1016/S0272-2712(18)30645-0  

Myers, G. L., Kimberly, M. M., Waymack, P. P., Smith, S. J., Cooper, G. R., & Sampson, E. J. (2000). A reference method laboratory network for cholesterol: a model for standardization and improvement of clinical laboratory measurements. Clin Chem, 46(11), 1762-1772. https://www.ncbi.nlm.nih.gov/pubmed/11067811  

Myers, G. L., & Waymack, P. P. (1990). Matrix Effects in Biological Reference Materials Used in the Standardization of Cholesterol Measurements. Fresenius Journal of Analytical Chemistry, 338(4), 538-542. https://doi.org/Doi 10.1007/Bf00322533  

Nakamura, M., Fukukawa, T., Kitagawa, K., Nagai, Y., Hosomi, N., Minematsu, K., Uchiyama, S., Matsumoto, M., Miyamoto, Y., & Collaborators, J.-S. (2018). Ten-year standardization of lipids and high-sensitivity C-reactive protein in a randomized controlled trial to assess the effects of statins on secondary stroke prevention: Japan Statin Treatment Against Recurrent Stroke. Ann Clin Biochem, 55(1), 128-135. https://doi.org/10.1177/0004563217693651  

Nakamura, M., Iso, H., Kitamura, A., Imano, H., Noda, H., Kiyama, M., Sato, S., Yamagishi, K., Nishimura, K., Nakai, M., Vesper, H. W., Teramoto, T., & Miyamoto, Y. (2016). Comparison between the triglycerides standardization of routine methods used in Japan and the chromotropic acid reference measurement procedure used by the CDC Lipid Standardization Programme. Ann Clin Biochem, 53(6), 632-639. https://doi.org/10.1177/0004563215624461  

Nakamura, M., Koyama, I., Iso, H., Sato, S., Okazaki, M., Kayamori, Y., Kiyama, M., Kitamura, A., Shimamoto, T., & Ishikawa, Y. (2010). Ten-year evaluation of homogeneous low-density lipoprotein cholesterol methods developed by Japanese manufacturers. Application of the Centers for Disease Control and Prevention/Cholesterol Reference Method Laboratory Network lipid standardization protocol. J Atheroscler Thromb, 17(12), 1275-1281. https://www.ncbi.nlm.nih.gov/pubmed/20885070

Nakamura, M., Koyama, I., Iso, H., Sato, S., Okazaki, M., Kiyama, M., Shimamoto, T., & Konishi, M. (2009). Measurement Performance of Reagent Manufacturers by Centers for Disease Control and Prevention/Cholesterol Reference Method Laboratory Network Lipid Standardization Specified for Metabolic Syndrome-Focused Health Checkups Program in Japan. Journal of Atherosclerosis and Thrombosis, 16(6), 756-763. https://www.jstage.jst.go.jp/article/jat/16/6/16_1503/_pdf  

Nordin, G. (2011). Coefficient of variation for hemoglobin A1c results that are traceable to national glycohemoglobin standardization program must be distinguished from coefficient of variation for results traceable to International Federation of Clinical Chemistry and Laboratory Medicine. Diabetes Technol Ther, 13(12), 1271-1272. https://doi.org/10.1089/dia.2011.0106  

Panteghini, M. (1998). IFCC Committee on Standardization of Markers of Cardiac Damage: premises and project presentation. International Federation of Clinical Chemistry and Laboratory Medicine. Clin Chem Lab Med, 36(11), 887-893. https://doi.org/10.1515/CCLM.1998.155  

Panteghini, M. (2009). Traceability as a unique tool to improve standardization in laboratory medicine. Clinical biochemistry, 42(4-5), 236-240. https://doi.org/10.1016/j.clinbiochem.2008.09.098  

Panteghini, M. (2012). Implementation of standardization in clinical practice: not always an easy task. Clinical Chemistry and Laboratory Medicine, 50(7), 1237-1241. https://doi.org/10.1515/Cclm.2011.791  

Panteghini, M., & Forest, J. C. (2005). Standardization in laboratory medicine: new challenges. Clin Chim Acta, 355(1-2), 1-12. https://doi.org/10.1016/j.cccn.2004.12.003  

Panteghini, M., Linsinger, T., Wu, A. H. B., Dati, F., Apple, F. S., Christenson, R. H., Mair, J., & Schimmel, H. (2004). Standardization of immunoassays for measurement of myoglobin in serum. Phase 1: Evaluation of candidate secondary reference materials. Clinica Chimica Acta, 341(1-2), 65-72. https://doi.org/10.1016/j.cccn.2003.10.030  

Partridge, S. A., & Zschoche, D. (1980). Standardization of laboratory and bedside monitors. Crit Care Update, 7(1), 2. https://www.ncbi.nlm.nih.gov/pubmed/6898189  

Perich, C., Ricos, C., Alvarez, V., Biosca, C., Boned, B., Cava, F., Domenech, M. V., Fernandez-Calle, P., Fernandez-Fernandez, P., Garcia-Lario, J. V., Minchinela, J., Simon, M., & Jansen, R. (2014). External quality assurance programs as a tool for verifying standardization of measurement procedures: Pilot collaboration in Europe. Clinica Chimica Acta, 432, 82-89. https://doi.org/10.1016/j.cca.2013.11.005  

Pessoa, G. C., Pinheiro, L. C., Ferraz, M. L., de Mello, B. V., & Diotaiuti, L. (2015). Standardization of laboratory bioassays for the study of Triatoma sordida susceptibility to pyrethroid insecticides. Parasit Vectors, 8, 109. https://doi.org/10.1186/s13071-015-0726-4  

Peter, T. F., Shimada, Y., Freeman, R. R., Ncube, B. N., Khine, A. A., & Murtagh, M. M. (2009). The need for standardization in laboratory networks. American journal of clinical pathology, 131(6), 867-874. https://doi.org/10.1309/AJCPCBMOHM7SM3PJ  

Phinney, K. W., Sempos, C. T., Tai, S. S. C., Camara, J. E., Wise, S. A., Eckfeldt, J. H., Hoofnagle, A. N., Carter, G. D., Jones, J., Myers, G. L., Durazo-Arvizu, R., Miller, W. G., Bachmann, L. M., Young, I. S., Pettit, J., Caldwell, G., Liu, A., Brooks, S. P. J., Sarafin, K., . . . Prentice, A. (2017). Baseline Assessment of 25-Hydroxyvitamin B Reference Material and Proficiency Testing/External Quality Assurance Material Commutability: A Vitamin B Standardization Program Study. Journal of Aoac International, 100(5), 1288-1293. https://doi.org/10.5740/jaoacint.17-0291  

Pieroni, L., Bargnoux, A.-S., Christol, J.-P., Cavalieri, R., & Delanaye, P. (2017). Did creatinine standardization give benefits to the evaluation of glomerular filtration rate? eJIFCC, 28(4), 251-257. https://pubmed.ncbi.nlm.nih.gov/29333144/

Poege, U., Gerhardt, T. M., Stoffel-Wagner, B., & Woitas, R. P. (2008). Need of standardization for creatinine and cystatin C-based GFR equations in renal transplantation. Nephrology Dialysis Transplantation, 23(5), 1763-1763. https://doi.org/10.1093/ndt/gfn024  

Pudek, M., England, T., Friesen, H., & Vallance, H. (1992). Standardization of Selected Polypeptide Hormone Measurements. Clinical biochemistry, 25, 415-424. https://doi.org/10.1016/0009-9120(92)90030-v

Rapi, S., Rubeca, T., & Fraser, C. G. (2015). How to improve the performances of Fecal Immunological Tests (FIT): Need for standardization of the sampling and pre-analytical phases and revision of the procedures for comparison of methods. Int J Biol Markers, 30(1), e127-131. https://doi.org/10.5301/jbm.5000093  

Reber, G., Boehlen, F., & de Moerloose, P. (2008). Technical aspects in laboratory testing for antiphospholipid antibodies: is standardization an impossible dream? Semin Thromb Hemost, 34(4), 340-346. https://doi.org/10.1055/s-0028-1085476  

Reber, G., Schousboe, I., Tincani, A., Sanmarco, M., Kveder, T., de Moerloose, P., Boffa, M. C., & Arvieux, J. (2002). Inter-laboratory variability of anti-beta2-glycoprotein I measurement. A collaborative study in the frame of the European Forum on Antiphospholipid Antibodies Standardization Group. Thromb Haemost, 88(1), 66-73. https://www.ncbi.nlm.nih.gov/pubmed/12152681  

Recommendation for use of SI in clinical laboratory measurements. International Committee for Standardization in Hematology (ICSH) International Federation of Clinical Chemistry (IFCC) World Association of (Anatomic and Clinical) Pathology Societies (WAPS). (1973). Thromb Diath Haemorrh, 29(1), 213-214. https://www.ncbi.nlm.nih.gov/pubmed/4708597  

Report of the Committee of the Laboratory Section of the American Public Health Association on Standardization of Disinfectants. (1912). Am J Public Health (N Y), 2(10), 802-808. https://www.ncbi.nlm.nih.gov/pubmed/18008736

Ritchie, R. F. (1991). Immunoanalytical Standardization - a Global Science. Scandinavian Journal of Clinical & Laboratory Investigation, 51, 3-10. https://doi.org/Doi 10.3109/00365519109104597  

Robichaux, E. B. (1965). Standardization of Laboratory Control of Oral Long Term Anticoagulant Therapy. Vasc Dis, 2, 34-38. https://www.ncbi.nlm.nih.gov/pubmed/14252942  

Ross, H. A., Lentjes, E., & Menheere, P. P. C. A. (2011). The Consensus Statement on the Standardization and Evaluation of Growth Hormone and Insulin-like Growth Factor Assays Lacks a Recommendation to Attempt Efficacious Harmonization. Clin Chem, 57(10), 1463-1463. https://doi.org/10.1373/clinchem.2011.169771  

Saitou, A., Kugiya, F., & Kodama, N. (2013). Standardization & Application Expansion Activity of Removable HDD (iVDR). Ieice Transactions on Electronics, E96c(12), 1508-1514. https://doi.org/10.1587/transele.E96.C.1508  

Schleicher, E. D., & Vogt, B. W. (1990). Standardization of serum fructosamine assays. Clin Chem, 36(1), 136-139. https://www.ncbi.nlm.nih.gov/pubmed/2297905  

Second International Symposium on Standardization and Quality Control of Coagulation Tests: Implications for the Clinical Laboratory. Rome, September 28-29, 1989. Proceedings. (1989). Ric Clin Lab, 19(4), 327-402. https://www.ncbi.nlm.nih.gov/pubmed/2633300  

Shabalova, I. P., Morozova, V. T., & Dzhangirova, T. V. (2010). [Proposals for standardization of clinical laboratory studies: technology "cytological study of lymph node specimens"]. Klin Lab Diagn(11), 35-40. https://www.ncbi.nlm.nih.gov/pubmed/21313753  

Shinohara, K., Hamasaki, N., Takagi, Y., Yatomi, Y., Kikuchi, H., Hosogaya, S., Kawai, Y., Miyachi, H., Kaneko, K., Miyajima, Y., Matsumoto, H., Yamamoto, Y., Iwagami, M., Osawa, S., Umeda, M., Koide, H., Yoshimura, D., Kato, H., Japanese Committee for Clinical Laboratory, S., & the Japanese Association of Medical, T. (2016). Multianalyte Conventional Reference Material (MacRM): A Useful Tool for Nationwide Standardization of Laboratory Measurements for Medical Care-A Model Study in Japan. Clin Chem, 62(2), 392-406. https://doi.org/10.1373/clinchem.2015.245621  

Shinton, K. (1999). Standardization of quality management in the medical laboratory. Accred. Qual. Assur., 4, 442-445. https://link.springer.com/article/10.1007/s007690050407

Siekmann, L. (2013). Metrological traceability - a concept for standardization in laboratory medicine. Clin Chem Lab Med, 51(5), 953-957. https://doi.org/10.1515/cclm-2012-0710  

Simundic, A. M., Cornes, M., Grankvist, K., Lippi, G., & Nybo, M. (2014). Standardization of collection requirements for fasting samples: for the Working Group on Preanalytical Phase (WG-PA) of the European Federation of Clinical Chemistry and Laboratory Medicine (EFLM). Clin Chim Acta, 432, 33-37. https://doi.org/10.1016/j.cca.2013.11.008  

Singh, R. H., & Mourya, S. P. (1972). Development and standardization of a new apparatus for accurate measurement of swelling in paw of small laboratory animals. Indian J Med Res, 60(3), 488-490. https://www.ncbi.nlm.nih.gov/pubmed/4659928  

Sorensen, C. M., Ding, J., Zhang, Q. B., Alquier, T., Zhao, R., Mueller, P. W., Smith, R. D., & Metz, T. O. (2010). Perturbations in the lipid profile of individuals with newly diagnosed type 1 diabetes mellitus: Lipidomics analysis of a Diabetes Antibody Standardization Program sample subset. Clinical biochemistry, 43(12), 948-956. https://doi.org/10.1016/j.clinbiochem.2010.04.075  

Stelzer, G. T., Marti, G., Hurley, A., McCoy, P., Jr., Lovett, E. J., & Schwartz, A. (1997). U.S.-Canadian Consensus recommendations on the immunophenotypic analysis of hematologic neoplasia by flow cytometry: standardization and validation of laboratory procedures. Cytometry, 30(5), 214-230. https://www.ncbi.nlm.nih.gov/pubmed/9383095

Stenman, U. H. (2004). Standardization of assays for human chorionic gonadotropin. Clin Chem, 50(5), 798-800. http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=15105346   

Stepman, H. C., Tiikkainen, U., Stockl, D., Vesper, H. W., Edwards, S. H., Laitinen, H., Pelanti, J., Thienpont, L. M., & Participating, L. (2014). Measurements for 8 common analytes in native sera identify inadequate standardization among 6 routine laboratory assays. Clin Chem, 60(6), 855-863. https://doi.org/10.1373/clinchem.2013.220376  

Stevens, L. A., & Stoycheff, N. (2008). Standardization of serum creatinine and estimated GFR in the Kidney Early Evaluation Program (KEEP). American Journal of Kidney Diseases, 51(4), S77-S82. https://doi.org/10.1053/j.ajkd.2008.01.001  

Stevens, S. R., Ke, M. S., Birol, A., Terhune, M. H., Parry, E. J., Ross, C., Mostow, E. N., Gilliam, A. C., Cooper, K. D., & Interdisciplinary Cutaneous Lymphoma, P. (2003). A simple clinical scoring system to improve the sensitivity and standardization of the diagnosis of mycosis fungoides type cutaneous T-cell lymphoma: logistic regression of clinical and laboratory data. Br J Dermatol, 149(3), 513-522. https://www.ncbi.nlm.nih.gov/pubmed/14510983

Sturgeon, C. M., & Ellis, A. R. (2007). Standardization of FSH, LH and hCG - Current position and future prospects. Molecular and Cellular Endocrinology, 260, 301-309. https://doi.org/10.1016/j.mce.2006.09.004  

Tagliaro, F., & Bortolotti, F. (2008). Criticism to the article: "Toward standardization of carbohydrate-deficient transferrin (CDT) measurements: I. Analyte definition and proposal of a candidate reference method." - Authors: J.O. Jeppsson et al. Clin Chem Lab Med 2007;45(4): 558-562. Clinical Chemistry and Laboratory Medicine, 46(5), 725-726. https://doi.org/10.1515/Cclm.2008.128  

Takahashi, Y., Noda, M., Tsugane, S., Kimura, S., Akanuma, Y., Kuzuya, T., Ohashi, Y., & Kadowaki, T. (2001). Importance of standardization of hemoglobin A1c in the analysis of factors that predict hemoglobin A1c levels in non-diabetic residents of three distinct areas of Japan. Diabetes Res Clin Pract, 53(2), 91-97. https://www.ncbi.nlm.nih.gov/pubmed/11403857

Talstad, I. (2000). Why is the standardization of prothrombin time a problem? Haemostasis, 30(5), 258-267. https://doi.org/54142  

Tate, J. R., Berg, K., Couderc, R., Dati, F., Kostner, G. M., Marcovina, S. M., Rifai, N., Sakurabayashi, I., & Steinmetz, A. (1999). International Federation of Clinical Chemistry and Laboratory Medicine (IFCC) Standardization Project for the Measurement of Lipoprotein(a). Phase 2: selection and properties of a proposed secondary reference material for lipoprotein(a). Clin Chem Lab Med, 37(10), 949-958. https://doi.org/10.1515/CCLM.1999.140  

Thienpont, L. M., Faix, J. D., & Beastall, G. (2015a). Standardization of Free T4 and Harmonization of TSH Measurements: A Request for Input from Endocrinologists and Other Physicians. Eur Thyroid J, 4(4), 271-272. https://doi.org/10.1159/000440614  

Thienpont, L. M., Faix, J. D., & Beastall, G. (2015b). Standardization of Free T-4 and Harmonization of TSH Measurements: A Request for Input from Endocrinologists and Other Physicians. European Thyroid Journal, 4(4), 271-272. https://doi.org/10.1159/000440614  

Thienpont, L. M., Faix, J. D., & Beastall, G. (2015c). Standardization of Free Thyroxine and Harmonization of Thyrotropin Measurements: A Request for Input from Endocrinologists and Other Physicians. Thyroid, 25(12), 1379-1380. https://doi.org/10.1089/thy.2015.0309  

Thienpont, L. M., Faix, J. D., & Beastall, G. (2015d). Standardization of FT4 and harmonization of TSH measurements - a request for input from endocrinologists and other physicians. Endocrine Journal, 62(10), 855-856. https://doi.org/DOI 10.1507/endocrj.EJ15-0382  

Thienpont, L. M., Faix, J. D., & Beastall, G. (2015e). Standardization of FT4 and harmonization of TSH measurements - a request for input from endocrinologists and other physicians. Endocr J, 62(10), 855-856. https://doi.org/10.1507/endocrj.EJ15-0382  

Thienpont, L. M., Faix, J. D., & Beastall, G. (2015f). Standardization of FT4 and harmonization of TSH measurements - a request for input from endocrinologists and other physicians [Opinion]. Endocr J, 62(10), 855-856. https://doi.org/10.1507/endocrj.EJ15-0382  

Thienpont, L. M., Faix, J. D., & Beastall, G. (2015g). Standardization of FT4 and harmonization of TSH measurements: a request for input from endocrinologists and other physicians. Endocrine, 50(3), 826-827. https://doi.org/10.1007/s12020-015-0752-1  

Thienpont, L. M., Faix, J. D., & Beastall, G. (2015h). Standardization of FT4 and harmonization of TSH measurements: a request for input from endocrinologists and other physicians. Endocrine, 50(3), 826-827. https://doi.org/10.1007/s12020-015-0752-1  

Thienpont, L. M., Faix, J. D., & Beastall, G. (2016a). Standardization of FT4 and harmonization of TSH measurements - a request for input from endocrinologists and other physicians. Clinical Endocrinology, 84(2), 305-306. https://doi.org/10.1111/cen.12861  

Thienpont, L. M., Faix, J. D., & Beastall, G. (2016b). Standardization of FT4 and Harmonization of TSH Measurements--A Request for Input from Endocrinologists and Other Physicians. Exp Clin Endocrinol Diabetes, 124(1), 61-62. https://doi.org/10.1055/s-0035-1564102  

Thienpont, L. M., Stepman, H. C., & Vesper, H. W. (2012). Standardization of measurements of 25-hydroxyvitamin D3 and D2. Scand J Clin Lab Invest Suppl, 243, 41-49. https://doi.org/10.3109/00365513.2012.681950  

Thienpont, L. M., Van Uytfanghe, K., Beastall, G., Faix, J. D., Ieiri, T., Miller, W. G., Nelson, J. C., Ronin, C., Ross, H. A., Thijssen, J. H., Toussaint, B., & Standardization, I. W. G. (2010a). Report of the IFCC Working Group for Standardization of Thyroid Function Tests; Part 2: Free Thyroxine and Free Triiodothyronine. Clin Chem, 56(6), 912-920. https://doi.org/10.1373/clinchem.2009.140194  

Thienpont, L. M., Van Uytfanghe, K., Beastall, G., Faix, J. D., Ieiri, T., Miller, W. G., Nelson, J. C., Ronin, C., Ross, H. A., Thijssen, J. H., Toussaint, B., & Standardization, I. W. G. (2010b). Report of the IFCC Working Group for Standardization of Thyroid Function Tests; Part 3: Total Thyroxine and Total Triiodothyronine. Clin Chem, 56(6), 921-929. https://doi.org/10.1373/clinchem.2009.140228  

Thienpont, L. M., Van Uytfanghe, K., Beastall, G., Faix, J. D., Ieiri, T., Miller, W. G., Nelson, J. C., Ronin, C., Ross, H. A., Thijssen, J. H., Toussaint, B., & Tests, I. W. G. o. S. o. T. F. (2010a). Report of the IFCC Working Group for Standardization of Thyroid Function Tests; part 1: thyroid-stimulating hormone. Clin Chem, 56(6), 902-911. https://doi.org/10.1373/clinchem.2009.140178  

Thienpont, L. M., Van Uytfanghe, K., Beastall, G., Faix, J. D., Ieiri, T., Miller, W. G., Nelson, J. C., Ronin, C., Ross, H. A., Thijssen, J. H., Toussaint, B., & Tests, I. W. G. o. S. o. T. F. (2010b). Report of the IFCC Working Group for Standardization of Thyroid Function Tests; part 2: free thyroxine and free triiodothyronine. Clin Chem, 56(6), 912-920. https://doi.org/10.1373/clinchem.2009.140194  

Thienpont, L. M., Van Uytfanghe, K., Beastall, G., Faix, J. D., Ieiri, T., Miller, W. G., Nelson, J. C., Ronin, C., Ross, H. A., Thijssen, J. H., Toussaint, B., & Tests, I. W. G. o. S. o. T. F. (2010c). Report of the IFCC Working Group for Standardization of Thyroid Function Tests; part 3: total thyroxine and total triiodothyronine. Clin Chem, 56(6), 921-929. https://doi.org/10.1373/clinchem.2009.140228  

Thienpont, L. M., Van Uytfanghe, K., Van Houcke, S., Das, B., Faix, J. D., MacKenzie, F., Quinn, F. A., Rottmann, M., Van den Bruel, A., & Tests, I. C. f. S. o. T. F. (2014). A Progress Report of the IFCC Committee for Standardization of Thyroid Function Tests. Eur Thyroid J, 3(2), 109-116. https://doi.org/10.1159/000358270  

Thorpe, S. M., & Koenders, A. (1986). Standardization of steroid receptor assays in human breast cancer--III. Selection of reference material for intra- and inter-laboratory quality control. Eur J Cancer Clin Oncol, 22(8), 939-944. https://www.ncbi.nlm.nih.gov/pubmed/3770051

Tichy, M., Maisnar, V., Palicka, V., Friedecky, B., Vavrova, J., Novotna, H., Cermakova, Z., Dastych, M., Cechak, P., Vogtova, D., Jarolimkova, E., Benakova, H., Hachova, L., Bezdickova, D., Kouril, F., Zabranska, E. A., Zenkova, J., Slaby, P., Scudla, V., . . . Hajek, R. (2006). International Staging System required standardization of biochemical laboratory testing in multiple myeloma. Neoplasma, 53(6), 492-494. https://www.ncbi.nlm.nih.gov/pubmed/17167717  

Trevino, G. (2007). Consensus statement on the Worldwide Standardization of the Hemoglobin A1C Measurement: the American Diabetes Association, European Association for the Study of Diabetes, International Federation of Clinical Chemistry and Laboratory Medicine, and the International Diabetes Federation: response to the Consensus Committee. Diabetes Care, 30(12), e141. https://doi.org/10.2337/dc07-1752  

Tripodi, A., Chantarangkul, V., Braga, M., Poller, L., ten Cate, J. W., van den Besselaar, A. M., & Mannucci, P. M. (1994). Results of a multicenter study assessing the status of standardization of a recombinant thromboplastin for the control of oral anticoagulant therapy. Thromb Haemost, 72(2), 261-267. https://www.ncbi.nlm.nih.gov/pubmed/7831663  

Ulmer, C. Z., Koelmel, J. P., Jones, C. M., Garrett, T. J., Aristizabal-Henao, J. J., Vesper, H. W., & Bowden, J. A. (2020). A Review of Efforts to Improve Lipid Stability during Sample Preparation and Standardization Efforts to Ensure Accuracy in the Reporting of Lipid Measurements. Lipids. https://doi.org/10.1002/lipd.12263  

Unsal, I., Coskun, A., Serteser, M., Inal, T. C., & Ozpinar, A. (2010). Toward standardization of quality assessment in laboratory medicine by using the same matrix samples for both internal and external quality assessments. Accred Qual Assur, 15, 621-627. https://doi.org/10.1007/s00769-010-0694-5

Van Biesen, W., Vanholder, R., Veys, N., Verbeke, F., Delanghe, J., De Bacquer, D., & Lameire, N. (2006). The importance of standardization of creatinine in the implementation of guidelines and recommendations for CKD: implications for CKD management programmes. Nephrology Dialysis Transplantation, 21(1), 77-83. https://doi.org/10.1093/ndt/gfi185  

van den Besselaar, A. M. (1985). Standardization of the prothrombin time in oral anticoagulant control. Haemostasis, 15(4), 271-277. https://www.ncbi.nlm.nih.gov/pubmed/4043828  

van den Besselaar, A. M. (1989). Standardization of the activated partial thromboplastin time for monitoring of heparin therapy: where should we go? Ric Clin Lab, 19(4), 371-377. https://www.ncbi.nlm.nih.gov/pubmed/2633305  

van den Besselaar, A. M. (1990). Recommended method for reporting therapeutic control of oral anticoagulant therapy. Control of Anticoagulation Subcommittee of the Scientific and Standardization Committee of the International Society on Thrombosis and Haemostasis. Thromb Haemost, 63(2), 316-317. https://www.ncbi.nlm.nih.gov/pubmed/2363132  

van den Besselaar, A. M. (1993). International standardization of laboratory control of oral anticoagulant therapy: a survey of thromboplastin reagents used for prothrombin time testing. J Heart Valve Dis, 2(1), 42-52. http://www.ncbi.nlm.nih.gov/pubmed/8269109  

van den Besselaar, A. M., Evatt, B. L., Brogan, D. R., & Triplett, D. A. (1984). Proficiency testing and standardization of prothrombin time: effect of thromboplastin, instrumentation, and plasma. American journal of clinical pathology, 82(6), 688-699. https://www.ncbi.nlm.nih.gov/pubmed/6548869

van der Burgt, Y. E. M., & Cobbaert, C. M. (2018). Proteoform Analysis to Fulfill Unmet Clinical Needs and Reach Global Standardization of Protein Measurands in Clinical Chemistry Proteomics. Clin Lab Med, 38(3), 487-+. https://doi.org/10.1016/j.cll.2018.05.001  

van Dyke, H. B., & Li, R. C. (1935). A Study of the Standardization of Digitalis. Ii. The Relationship between Laboratory Methods of Assay and Potency as Determined by Experimental Cumulative Poisoning and Clinical Standardization. J Clin Invest, 14(6), 733-737. https://doi.org/10.1172/JCI100721  

Van Houcke, S. K., & Thienpont, L. M. (2013). "Good samples make good assays" - the problem of sourcing clinical samples for a standardization project. Clin Chem Lab Med, 51(5), 967-972. https://doi.org/10.1515/cclm-2012-0617  

Van Houcke, S. K., Van Aelst, S., Van Uytfanghe, K., & Thienpont, L. M. (2013). Harmonization of immunoassays to the all-procedure trimmed mean - proof of concept by use of data from the insulin standardization project. Clin Chem Lab Med, 51(5), e103-105. https://doi.org/10.1515/cclm-2012-0661  

Verbrugge, S. E., & Huisman, A. (2015). Verification and standardization of blood cell counters for routine clinical laboratory tests. Clin Lab Med, 35(1), 183-196. https://doi.org/10.1016/j.cll.2014.10.008  

Vervoort, G., Klein Gunnewiek, J. M. T., Willems, H. L., & Wetzels, J. F. M. (2006). Effect of creatinine assay standardization on the performance of Cockcroft-Gault and MDRD formula in predicting GFR. Nephrology Dialysis Transplantation, 21(10), 2998-2999. https://doi.org/10.1093/ndt/gf276  

Vesper, H. W., & Botelho, J. C. (2010). Standardization of testosterone measurements in humans. Journal of Steroid Biochemistry and Molecular Biology, 121(3-5), 513-519. https://doi.org/10.1016/j.jsbmb.2010.03.032  

Vesper, H. W., Myers, G. L., & Miller, W. G. (2016a). Current practices and challenges in the standardization and harmonization of clinical laboratory tests. American Journal of Clinical Nutrition, 104 Suppl 3, 907S-912S. https://doi.org/10.3945/ajcn.115.110387  

Vesper, H. W., Myers, G. L., & Miller, W. G. (2016b). Current practices and challenges in the standardization and harmonization of clinical laboratory tests. American Journal of Clinical Nutrition, 104(3), 907s-912s. https://doi.org/10.3945/ajcn.115.110387  

Vidali, M., Carobene, A., Esposito, S. A., Napolitano, G., Caracciolo, A., Seghezzi, M., Previtali, G., Lippi, G., & Buoro, S. (2020). Standardization and harmonization in hematology: Instrument alignment, quality control materials, and commutability issue. International Journal of Laboratory Hematology. https://doi.org/10.1111/ijih.13379  

Wadsworth, A. B. (1920). Standardization of Laboratory Methods. Am J Public Health (N Y), 10(12), 932-935. https://www.ncbi.nlm.nih.gov/pubmed/18010408

Waymack, P. P., Miller, W. G., & Myers, G. L. (1993). Assay instrument-dependent matrix effects in standardization of cholesterol measurements. Clin Chem, 39(10), 2058-2062. http://www.ncbi.nlm.nih.gov/pubmed/8403391

Weykamp, C., Wielders, J. P. M., Helander, A., Anton, R. F., Bianchi, V., Jeppsson, J. O., Siebelder, C., Whitfield, J. B., Schellenberg, F., & C, I. W. G. S. (2013). Toward standardization of carbohydrate-deficient transferrin (CDT) measurements: III. Performance of native serum and serum spiked with disialotransferrin proves that harmonization of CDT assays is possible. Clinical Chemistry and Laboratory Medicine, 51(5), 991-996. https://doi.org/10.1515/cclm-2012-0767  

Weykamp, C. W., Mosca, A., Gillery, P., & Panteghini, M. (2011). The analytical goals for hemoglobin A(1c) measurement in IFCC units and National Glycohemoglobin Standardization Program Units are different. Clin Chem, 57(8), 1204-1206. https://doi.org/10.1373/clinchem.2011.162719  

Winter, C., Ganslandt, T., & Bietenbeck, A. (2018). No mathematical shortcuts for standardization or harmonization of laboratory measurements. Journal of Laboratory Medicine, 42(1-2), 59-62. https://doi.org/10.1515/labmed-2017-0122  

Wu, A. H. (2010). Standardization of assays for clinically important enzymes that have high biologic variation: what is all the fuss about? Clin Chem Lab Med, 48(3), 299-300. https://doi.org/10.1515/CCLM.2010.084   

Yoon, S. Y., Yoon, J. H., Min, W. K., Lim, H. S., Song, J., Chae, S. L., Lee, C. K., Kwon, J. A., & Lee, K. N. (2007). Standardization of ternuinology in laboratory medicine I. Korean Journal of Laboratory Medicine, 27(2), 151-155. https://doi.org/DOI 10.3343/kjlm.2007.27.2.151  

Young, C. C., & Long, E. R. (1926). Laboratory: The Preparation and Standardization of Tuberculin. Am J Public Health (N Y), 16(10), 1046-1048. https://www.ncbi.nlm.nih.gov/pubmed/18011981

Zahran, A., & Shoker, A. (2008). Need of standardization for creatinine and cystatin C-based GFR equations in renal transplantation - Reply. Nephrology Dialysis Transplantation, 23(5), 1763-1764. https://doi.org/10.1093/ndt/gfn027  

Zucker, S., Cathey, M. H., Sox, P. J., & Hall, E. C. (1970). Standardization of laboratory tests for controlling anticoagulent therapy. American journal of clinical pathology, 53(3), 348-354. https://www.ncbi.nlm.nih.gov/pubmed/5416772