Traceability

Adams, F. (1998). Traceability and analytical chemistry. Accreditation and Quality Assurance, 3(8), 308-316. https://doi.org/10.1007/s007690050252

Alexandrov, Y. I. (1996). Traceability of measurements in chemistry. Analyst, 121(8), 1137-1145. https://doi.org/10.1039/an9962101137

Alexandrov, Y. I. (1997). Is traceability an exclusive property of analytical results? An extended approach to traceability in chemical analysis - Comments. Fresenius Journal of Analytical Chemistry, 359(6), 476-476. https://doi.org/10.1007/s002160050616

Alexandrov, Y. I. (1997). Once more on the account of chemical composition analysis, traceability and calibration in chemical analysis - Response. Fresenius Journal of Analytical Chemistry, 357(6), 563-571. https://doi.org/DOI 10.1007/s002160050215

Andersson, J., Coucher, Y., Kjer, H., Linko, S., Odlund, B. M., & Volkert, E. (2004). Implementation of traceability and uncertainty in in-vitro diagnostic products - Results of the Roche workshop "In Vitro Diagnostics Directive": Practical applications of uncertainty calculations. Accreditation and Quality Assurance, 9(1-2), 47-51. https://doi.org/10.1007/s00769-003-0720-y

Andreis, E., Kullmer, K., & Appel, M. (2014). Application of the reference method isotope dilution gas chromatography mass spectrometry (ID/GC/MS) to establish metrological traceability for calibration and control of blood glucose test systems. J Diabetes Sci Technol, 8(3), 508-515. https://doi.org/10.1177/1932296814523886

Anjum, A., Bloodsworth, P., Branson, A., Habib, I., McClatchey, R., Solomonides, T., Soomro, K., & The Neugrid, C. (2010). Research traceability using provenance services for biomedical analysis. Stud Health Technol Inform, 159, 88-99. http://www.ncbi.nlm.nih.gov/pubmed/20543429

Antipin, V. P., & Grigorieva, A. A. (1999). Reference samples for analysis of gas impurities in aluminium and titanium alloys: Features of production, certification and usage to ensure traceability of results. Accreditation and Quality Assurance, 4(5), 203-206. https://doi.org/10.1007/s007690050350

Armbruster, D. (2017). Metrological Traceability of Assays and Comparability of Patient Test Results. Clin Lab Med, 37(1), 119-135. https://doi.org/10.1016/j.cll.2016.09.010

Armbruster, D. (2017). Metrological Traceability of Assays and Comparability of Patient Test Results. Clin Lab Med, 37(1), 119-+. https://doi.org/10.1016/j.cll.2016.09.010

Armbruster, D., & Miller, R. R. (2007). The Joint Committee for Traceability in Laboratory Medicine (JCTLM): a global approach to promote the standardisation of clinical laboratory test results. Clin Biochem Rev, 28(3), 105-113. http://www.ncbi.nlm.nih.gov/pubmed/17909615

Armbruster, D. A. (2009). Measurement traceability and US IVD manufacturers: the impact of metrology. Accreditation and Quality Assurance, 14(7), 393-398. https://doi.org/10.1007/s00769-009-0535-6

Armishaw, P., King, B., & Millar, R. G. (2003). Achieving traceability in chemical measurement - a metrological approach to proficiency testing. Accreditation and Quality Assurance, 8(5), 184-190. https://doi.org/10.1007/s00769-003-0625-9

Ashford, P. (2010). Traceability. Cell Tissue Bank, 11(4), 329-333. https://doi.org/10.1007/s10561-010-9195-3

Badrick, T. (2019). The role of EQA in monitoring metrological traceability – a personal view. https://www.bipm.org/en/utils/common/pdf/JCTLM/JCTLM_Newsletter_2019_Special_Report.pdf

Badrick, T., Punyalack, W., & Graham, P. (2018). Commutability and traceability in EQA programs. Clinical biochemistry, 56, 102-104. https://doi.org/10.1016/j.clinbiochem.2018.04.018

Bais, R., Armbruster, D., Jansen, R. T., Klee, G., Panteghini, M., Passarelli, J., Sikaris, K. A., & Results, I. W. G. o. A. E. f. T. (2013). Defining acceptable limits for the metrological traceability of specific measurands. Clin Chem Lab Med, 51(5), 973-979. https://doi.org/10.1515/cclm-2013-0122

Barwick, V., & Wood, S. (2010). Achieving metrological traceability in chemical and bioanalytical measurement. Journal of Analytical Atomic Spectrometry, 25(6), 785-799. https://doi.org/10.1039/b919885g

Batista, E., Sousa, J. A., Cardoso, S., & Silverio, V. (2020). Experimental testing for metrological traceability and accuracy of liquid microflows and microfluidics. Flow Measurement and Instrumentation, 71. https://doi.org/10.1016/j.flowmeasinst.2020.101691

Beck, C. M. (1998). A traceability protocol to the SI by gravimetric analysis. Accreditation and Quality Assurance, 3(12), 482-484. https://doi.org/10.1007/s007690050292

Beges, G., Drnovsek, J., Pusnik, I., & Bojkovski, J. (2002). Measurement uncertainty, traceability and evaluation of test results in testing laboratories. Measurement Science & Technology, 13(4), 565-572. https://doi.org/10.1088/0957-0233/13/4/320

Belanger, B. (2001). The measurement assurance concept in calibration and traceability at NBS/NIST. Accreditation and Quality Assurance, 6(3), 100-102. https://doi.org/10.1007/Pl00010443

Bhat, S., Curach, N., Mostyn, T., Bains, G. S., Griffiths, K. R., & Emslie, K. R. (2010). Comparison of methods for accurate quantification of DNA mass concentration with traceability to the international system of units. Anal Chem, 82(17), 7185-7192. https://doi.org/10.1021/ac100845m

Bianchi, F., Giannetto, M., & Careri, M. (2018). Analytical systems and metrological traceability of measurement data in food control assessment. Trac-Trends in Analytical Chemistry, 107, 142-150. https://doi.org/10.1016/j.trac.2018.07.024

Bich, W. (2009). Interdependence between measurement uncertainty and metrological traceability. Accreditation and Quality Assurance, 14(11), 581-586. https://doi.org/10.1007/s00769-009-0500-4

Bills, E., Mastrangelo, S., & Wu, F. (2015). Documenting medical device risk management through the risk traceability summary. Biomed Instrum Technol, Suppl, 26-33. https://doi.org/10.2345/0899-8205-49.s1.26

Blackmore, S., Hamilton, M., Lee, A., Worwood, M., Brierley, M., Heath, A., & Thorpe, S. J. (2008). Automated immunoassay methods for ferritin: recovery studies to assess traceability to an international standard. Clin Chem Lab Med, 46(10), 1450-1457. https://doi.org/10.1515/CCLM.2008.304

Botha, A., Barzev, A. I., Linsky, S. M., & Fischer, J. L. (2005). A case study for the provision of measurement traceability and measurement uncertainty for the South African reference materials. Journal of Analytical Atomic Spectrometry, 20(10), 1044-1050. https://doi.org/10.1039/b501354b

Boulo, S., Hanisch, K., Bidlingmaier, M., Arsene, C. G., Panteghini, M., Auclair, G., Sturgeon, C., Schimmel, H., & Zegers, I. (2013). Gaps in the traceability chain of human growth hormone measurements. Clin Chem, 59(7), 1074-1082. https://doi.org/10.1373/clinchem.2012.199489

Braga, F., Infusino, I., & Panteghini, M. (2015). Performance criteria for combined uncertainty budget in the implementation of metrological traceability. Clin Chem Lab Med, 53(6), 905-912. https://doi.org/10.1515/cclm-2014-1240

Braga, F., Infusino, I., & Panteghini, M. (2015). Role and Responsibilities of Laboratory Medicine Specialists in the Verification of Metrological Traceability of in Vitro Medical Diagnostics. Journal of Medical Biochemistry, 34(3), 282-287. https://doi.org/10.1515/jomb-2015-0004

Braga, F., & Panteghini, M. (2014). Verification of in vitro medical diagnostics (IVD) metrological traceability: responsibilities and strategies. Clin Chim Acta, 432, 55-61. https://doi.org/10.1016/j.cca.2013.11.022

Braga, F., & Panteghini, M. (2018). Defining permissible limits for the combined uncertainty budget in the implementation of metrological traceability. Clinical biochemistry, 57, 7-11. https://doi.org/10.1016/j.clinbiochem.2018.03.007

Braga, F., Pasqualetti, S., Aloisio, E., & Panteghini, M. (2020). The internal quality control in the traceability era. Clin Chem Lab Med. https://doi.org/10.1515/cclm-2020-0371

Braga, F., Pasqualetti, S., Aloisio, E., & Panteghini, M. (2021). The internal quality control in the traceability era. Clinical Chemistry and Laboratory Medicine, 59(2), 291-300. https://doi.org/10.1515/cclm-2020-0371

Braga, F., Pasqualetti, S., & Panteghini, M. (2018). The role of external quality assessment in the verification of in vitro medical diagnostics in the traceability era. Clinical biochemistry, 57, 23-28. https://doi.org/10.1016/j.clinbiochem.2018.02.004

Breuel, U., Werner, B., & Jehnert, D. (2009). Metrology in Chemistry for pH and Electrolytic Conductivity Traceability Dissemination. Chimia, 63(10), 643-646. https://doi.org/10.2533/chimia.2009.643

Bruggemann, L., & Wennrich, R. (2004). Validation steps for traceability of linear calibrated chemical measurements. Accreditation and Quality Assurance, 9(8), 493-498. https://doi.org/10.1007/s00769-004-0824-z

Buzoianu, M. (2000). Practical considerations on the traceability to conventional scales. Accred. Qual. Assur., 5, 142-150. https://link.springer.com/article/10.1007/s007690050433

Buzoianu, M., & Aboul-Enein, H. Y. (1997). The traceability of analytical measurements. Accred Qual Assur, 2, 11-17. https://link.springer.com/article/10.1007/s007690050089

Cai, Y., Li, X., Li, M., Chen, X., Hu, H., Ni, J., & Wang, Y. (2015). Traceability and Quality Control in Traditional Chinese Medicine: From Chemical Fingerprint to Two-Dimensional Barcode. Evid Based Complement Alternat Med, 2015, 251304. https://doi.org/10.1155/2015/251304

Camoes, M. F., & Anes, B. (2015). Traceability of pH to the Mole. Water, 7(8), 4247-4255. https://doi.org/10.3390/w7084247

Canalias, F., Camprubi, S., Sanchez, M., & Gella, F. J. (2006). Metrological traceability of values for catalytic concentration of enzymes assigned to a calibration material. Clin Chem Lab Med, 44(3), 333-339. https://doi.org/10.1515/CCLM.2006.058

Canalias, F., Garcia, E., & Sanchez, M. (2010). Metrological traceability of values for alpha-amylase catalytic concentration assigned to a commutable calibrator materials. Clin Chim Acta, 411(1-2), 7-12. https://doi.org/10.1016/j.cca.2009.09.029

Charlet, P., & Marschal, A. (2004). Improvement in the traceability of environmental analysis by the relevant use of certified pure solutions and a matrix certified reference material. Trac-Trends in Analytical Chemistry, 23(3), 178-184. https://doi.org/10.1016/S0165-9936(04)00308-5

Cobbaert, C., Smit, N., & Gillery, P. (2018). Metrological traceability and harmonization of medical tests: a quantum leap forward is needed to keep pace with globalization and stringent IVD-regulations in the 21st century! Clinical Chemistry and Laboratory Medicine, 56(10), 1598-1602. https://doi.org/10.1515/cclm-2018-0343

Corbisier, P., Broothaerts, W., Gioria, S., Schimmel, H., Burns, M., Baoutina, A., Emslie, K. R., Furui, S., Kurosawa, Y., Holden, M. J., Kim, H. H., Lee, Y. M., Kawaharasaki, M., Sin, D., & Wang, J. (2007). Toward metrological traceability for DNA fragment ratios in GM quantification. 1. Effect of DNA extraction methods on the quantitative determination of Bt176 corn by real-time PCR. J Agric Food Chem, 55(9), 3249-3257. https://doi.org/10.1021/jf062931l

De Bievre, P. (1999). Do interlaboratory comparisons provide traceability? Accreditation and Quality Assurance, 4(8), 342-346. https://doi.org/10.1007/s007690050378

De Bievre, P. (2000). Is not traceability about the link from value to value (anymore)? Accreditation and Quality Assurance, 5(5), 171-172. https://link.springer.com/article/10.1007/s007690050438

De Bievre, P. (2000c). The key elements of traceability in chemical measurement: agreed or still under debate? Accreditation and Quality Assurance, 5(10-11), 423-428. https://doi.org/10.1007/s007690000227

De Bievre, P. (2000). Should interlaboratory comparisons provide traceability? Accreditation and Quality Assurance, 5(3), 114-114. https://link.springer.com/article/10.1007/s007690050014

De Bievre, P. (2000). Traceability of (values carried by) reference materials. Accreditation and Quality Assurance, 5(6), 224-230. https://doi.org/10.1007/s007690050452

De Bievre, P. (2002). Establishing degree of equivalence does not mean providing traceability. Accreditation and Quality Assurance, 7(6), 227-227. https://doi.org/10.1007/s00769-002-477-8

De Bievre, P. (2003). How to disseminate traceability? A Workshop for National Measurement Institutes at CCQM. Accreditation and Quality Assurance, 8(10), 445-447. https://doi.org/10.1007/s00769-003-0679-8

De Bievre, P. (2003). Traceability is not meant to reduce uncertainty. Accreditation and Quality Assurance, 8(11), 497-497. https://doi.org/10.1007/s00769-003-0704-y

De Bievre, P. (2004). How to disseminate traceability? (II) - A workshop for National Measurement Institutes at CCQM. Accreditation and Quality Assurance, 9(1-2), 1-1. https://doi.org/10.1007/s00769-003-0714-9

De Bievre, P. (2004). Traceability and comparability of results in food measurements: a CCQM workshop at BIPM on "comparability and traceability in food analysis". Accreditation and Quality Assurance, 9(9), 521-522. https://doi.org/10.1007/s00769-004-0841-y

de Bievre, P. (2009). Manufacturing a chain logically continues by manufacturing several links, thus is realized a metrological traceability chain. Accred Qual Assur, 14, 645-646. https://link.springer.com/article/10.1007/s00769-009-0583-y

De Bievre, P. (2009). Manufacturing a chain logically starts with manufacturing the first link, thus is logically started a metrological traceability chain. Accreditation and Quality Assurance, 14(10), 517-519. https://doi.org/10.1007/s00769-009-0583-y

De Bievre, P. (2009). Manufacturing a longer chain logically requires manufacturing more than one link; thus is logically manufactured a longer metrological traceability chainaEuro broken vertical bar. Accreditation and Quality Assurance, 14(12), 645-646. https://doi.org/10.1007/s00769-009-0612-x

De Bievre, P. (2010). A metrological traceability chain prevents circular reasoning in measurement design. Accreditation and Quality Assurance, 15(9), 491-492. https://doi.org/10.1007/s00769-010-0692-7

De Bievre, P. (2010). Metrological traceability is a prerequisite for evaluation of measurement uncertainty. Accreditation and Quality Assurance, 15(8), 437-438. https://doi.org/10.1007/s00769-010-0680-y

De Bievre, P. (2014). Does understanding metrological traceability in analytical measurement require going "back to basics"? Accreditation and Quality Assurance, 19(2), 141-143. https://doi.org/10.1007/s00769-014-1035-x

De Bievre, P., Dybkaer, R., Fajgelj, A., & Hibbert, D. B. (2011). Metrological traceability of measurement results in chemistry: Concepts and implementation (IUPAC Technical Report). Pure and Applied Chemistry, 83(10), 1873-1935. https://doi.org/10.1351/Pac-Rep-07-09-39

De Bievre, P., Kaarls, R., Peiser, H. S., Rasberry, S. D., & Reed, W. P. (1996). Measurement principles for traceability in chemical analysis. Accred Qual Assur, 1, 3-13. https://link.springer.com/article/10.1007/s007690050026

De Bievre, P., Kaarls, R., Peiser, H. S., Rasberry, S. D., & Reed, W. P. (1997a). Protocols for traceability in chemical analysis - Part I: Definitions and terminology. Accreditation and Quality Assurance, 2(4), 168-179. https://doi.org/10.1007/s007690050126

De Bievre, P., Kaarls, R., Peiser, H. S., Rasberry, S. D., & Reed, W. P. (1997b). Protocols for traceability in chemical analysis Part II: Design and use. Accreditation and Quality Assurance, 2(6), 270-274. https://link.springer.com/chapter/10.1007/3-540-27093-0_3

De Bievre, P., & Peiser, H. S. (1997). Basic equations and uncertainties in isotope-dilution mass spectrometry for traceability to SI of values obtained by this primary method. Fresenius Journal of Analytical Chemistry, 359(7-8), 523-525 https://doi.org/10.1007/s002160050625

De Bievre, P., & Reher, D. F. G. (2000). Traceability of measurements of radioactivity and of amount of substance. Applied Radiation and Isotopes, 53(1-2), 13-21. https://doi.org/10.1016/S0969-8043(00)00172-X

De Bièvre, P., & Taylor, P. D. P. (1997). Traceability to the SI of amount-of-substance measurements: from ignoring to realizing, a chemist’s view. Metrologia, 34, 67-75 https://doi.org/10.1088/0026-1394/34/1/10

do Ceu Ferreira, M., Matos, A., & Leal, R. P. (2015). Evaluation of the role of metrological traceability in health care: a comparison study by statistical approach. Accreditation and Quality Assurance, 20, 457–464. https://link.springer.com/article/10.1007/s00769-015-1149-9

Dobrovinskii, I. E. (2009). Standard samples and metrological traceability in chemistry. Inorganic Materials, 45(14), 1648-1651. https://doi.org/10.1134/S0020168509140271

Dudley, R. A., & Ridler, N. M. (2003). Traceability via the Internet for microwave measurements using vector network analyzers. Ieee Transactions on Instrumentation and Measurement, 52(1), 130-134. https://doi.org/10.1109/Tim.2003.809482

Dybkaer, R. (1999b). From total allowable error via metrological traceability to uncertainty of measurement of the unbiased result. Accreditation and Quality Assurance, 4(9-10), 401-405. https://doi.org/10.1007/s007690050395

Dybkaer, R. (2003). Metrological traceability in laboratory medicine. Accreditation and Quality Assurance, 8(2), 46-52. https://doi.org/10.1007/s00769-002-0571-y

Ehrlich, C. D., & Rasberry, S. D. (1997). Metrological timelines in traceability. Metrologia, 34(6), 503-514. https://doi.org/10.1088/0026-1394/34/6/6

Ehrlich, C. D., & Rasberry, S. D. (1998). Metrological timelines in traceability. Journal of Research of the National Institute of Standards and Technology, 103(1), 93-105. https://doi.org/10.6028/jres.103.005

Ellison, S. L. R., King, B., Rösslein, M., Salit, M., & Williams, A. (2003a). EURACHEM / CITAC Guide Traceability in Chemical Measurement A guide to achieving comparable results in chemical measurement. https://eurachem.org/images/stories/Guides/pdf/EC_Trace_2003.pdf

Ellison, S. L. R., & Williams, A. (2003). Disseminating traceability in chemical measurement: Principles of a new EURACHEM/CITAC guide. Accreditation and Quality Assurance, 8(10), 483-485. https://doi.org/10.1007/s00769-003-0661-5

Engelhard, T., & Dreazen, O. (2004). Current best practice for traceability in testing laboratories, when certified reference materials are unavailable. Accreditation and Quality Assurance, 9(7), 397-398. https://doi.org/10.1007/s00769-004-0805-2

Ferard, G., Imbert-Bismut, F., Messous, D., Piton, A., Ueda, S., Poynard, T., & Lessinger, J. M. (2005). A reference material for traceability of aspartate aminotransferase (AST) results. Clin Chem Lab Med, 43(5), 549-553. https://doi.org/10.1515/CCLM.2005.095

Ferraro, S., Mozzi, R., & Panteghini, M. (2012). Revaluating serum ferritin as a marker of body iron stores in the traceability era. Clin Chem Lab Med, 50(11), 1911-1916. https://doi.org/10.1515/cclm-2012-0129

Ferreira, M. D., Matos, A., & Leal, R. P. (2015). Evaluation of the role of metrological traceability in health care: a comparison study by statistical approach. Accreditation and Quality Assurance, 20(6), 457-464. https://doi.org/10.1007/s00769-015-1149-9

Fisher, W. P. (2009). Invariance and traceability for measures of human, social, and natural capital: Theory and application. Measurement, 42(9), 1278-1287. https://doi.org/10.1016/j.measurement.2009.03.014

Fisher, W. P., & Stenner, A. J. (2016). Theory-based metrological traceability in education: A reading measurement network. Measurement, 92, 489-496. https://doi.org/10.1016/j.measurement.2016.06.036

Foster, L., Spendlove, R., Baker, J., & Chung, B. (1991). Serum traceability. Am Biotechnol Lab, 9(9), 26-27. http://www.ncbi.nlm.nih.gov/pubmed/1367560

Gella, F. J., & Canalias, F. (1998). Calibration and traceability of enzyme and antibody measurements. Clin Chim Acta, 278(2), 145-149. http://www.ncbi.nlm.nih.gov/pubmed/10023821

Glavic-Cindro, D., & Korun, M. (2004). Towards establishing traceability of results measured in specific counting conditions in gamma-ray spectrometry. Appl Radiat Isot, 60(2-4), 217-220. https://doi.org/10.1016/j.apradiso.2003.11.020

Glavic-Cindro, D., Korun, M., & Vodenik, B. (2002). Traceability of measurement results of the effective acquisition time in gamma-ray spectrometry implemented by the pulser method. Accreditation and Quality Assurance, 7(12), 529-537. https://doi.org/10.1007/s00769-002-0522-7

Goldschmidt, H., Libeer, J. C., De Bievre, P., Schimmel, H., Hyltoft Petersen, P., & Petersen, P. H. (2004). How far can the concepts of traceability and GUM/VIM can be applied to measurement results in laboratory medicine - Antwerp conference consensus statements on the applicability of the concepts metrological traceability, measurement uncertainty, and VIM in laboratory medicine. Accreditation and Quality Assurance, 9(3), 125-127. https://doi.org/10.1007/s00769-003-0725-6

Golze, M. (2003). Why do we need traceability and uncertainty evaluation of measurement and test results? Accreditation and Quality Assurance, 8(12), 539-540. https://doi.org/10.1007/s00769-003-0694-9

Greenberg, N. (2014). Update on current concepts and meanings in laboratory medicine --Standardization, traceability and harmonization. Clin Chim Acta, 432, 49-54. https://doi.org/10.1016/j.cca.2013.12.045

Guttler, B., & Richter, W. (2009). Traceability of Chemical Measurement Results. Chimia, 63(10), 619-623. https://doi.org/10.2533/chimia.2009.619

Hamwi, A., Endler, G., Rubi, K., Wagner, O., & Endler, A. T. (2002). Reference values for a heterogeneous ferritin assay and traceability to the 3rd International Recombinant Standard for Ferritin (NIBSC code 94/572). Clin Chem Lab Med, 40(4), 365-370. https://doi.org/10.1515/CCLM.2002.059

Hasselbarth, W. (1995). Traceability of Measurement and Calibration in Chemical-Analysis. Fresenius Journal of Analytical Chemistry, 352(3-4), 400-402. https://doi.org/10.1007/Bf00322244

Hibbert, D. B. (2006). Metrological traceability: I make it 42; you make it 42; but is it the same 42? Accreditation and Quality Assurance, 11(11), 543-549. https://doi.org/10.1007/s00769-006-0177-x

Hickey, C., & Bhatt, T. (2013). Proceedings of the November 2011 Traceability Research Summit This report is the third in a series on Traceability Summits sponsored by IFT beginning in July 2011. Journal of Food Science, 78, B15-B20. https://doi.org/10.1111/1750-3841.12042

Holcombe, G., Lawn, R., & Sargent, M. (2004). Improvements in efficiency of production and traceability for certification of reference materials. Accreditation and Quality Assurance, 9(4-5), 198-204. https://doi.org/10.1007/s00769-003-0747-0

ILAC. (2021). ILAC P10:07/2020 ILAC Policy on Metrological Traceability of Measurement Results https://ilac.org/?ddownload=123220

Imai, H. (2013). Expanding needs for metrological traceability and measurement uncertainty. Measurement, 46(8), 2942-2945. https://doi.org/10.1016/j.measurement.2013.04.046

Imai, H., & Ijima, H. (1997). The Japanese traceability system and the role of uncertainty evaluation in measurement. Accreditation and Quality Assurance, 2(3), 150-153. https://doi.org/10.1007/s007690050121

Infusino, I., Bonora, R., & Panteghini, M. (2007). Traceability in clinical enzymology. Clin Biochem Rev, 28(4), 155-161. http://www.ncbi.nlm.nih.gov/pubmed/18392126

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 Federation of Clinical, C., Laboratory, M., Working Group on Standardization of Glomerular Filtration Rate, A., Panteghini, M., Myers, G. L., Miller, W. G., & Greenberg, N. (2006). The importance of metrological traceability on the validity of creatinine measurement as an index of renal function. Clin Chem Lab Med, 44(10), 1287-1292. https://doi.org/10.1515/CCLM.2006.234

Ioan, M. R., Sahagia, M., Luca, A., Antohe, A., & Ivan, C. (2015). Measurement of Lu-177 activity and its metrological traceability. Journal of Radioanalytical and Nuclear Chemistry, 305(2), 507-512. https://doi.org/10.1007/s10967-015-4011-y

ISO 17511:2020, In vitro diagnostic medical devices — Requirements for establishing metrological traceability of values assigned to calibrators, trueness control materials and human samples. (2020). In Technical Committee : ISO/TC 212  Clinical laboratory testing and in vitro diagnostic test systems Geneva, Switzerland: International Organization for Standardization. https://www.iso.org/standard/69984.html

ISO 21151:2020, In vitro diagnostic medical devices — Requirements for international harmonisation protocols establishing metrological traceability of values assigned to calibrators and human samples. (2020). In Technical Committee : ISO/TC 212  Clinical laboratory testing and in vitro diagnostic test systems. Geneva, Switzerland: International Organization for Standardization. https://www.iso.org/standard/69985.html

Ito, S., Hachiya, H., Baba, K., Eto, M., Asano, Y., & Wada, H. (1996). Development of pH measurement system for legal traceability of pH standard solutions. Talanta, 43(9), 1421-1428. https://doi.org/10.1016/0039-9140(96)01904-2

Jansen, R., Schumann, G., Baadenhuijsen, H., Franck, P., Franzini, C., Kruse, R., Kuypers, A., Weykamp, C., & Panteghini, M. (2006). Trueness verification and traceability assessment of results from commercial systems for measurement of six enzyme activities in serum: an international study in the EC4 framework of the Calibration 2000 project. Clin Chim Acta, 368(1-2), 160-167. https://doi.org/10.1016/j.cca.2005.12.033

Jansen, R. T. P., Cobbaert, C. M., Weykamp, C., & Thelen, M. (2018). The quest for equivalence of test results: the pilgrimage of the Dutch Calibration 2.000 program for metrological traceability. Clinical Chemistry and Laboratory Medicine, 56(10), 1673-1684. https://doi.org/10.1515/cclm-2017-0796

Jones, G. R., & Jackson, C. (2016). The Joint Committee for Traceability in Laboratory Medicine (JCTLM) - its history and operation. Clin Chim Acta, 453, 86-94. https://doi.org/10.1016/j.cca.2015.11.016

Jones, G. R. D., Delatour, V., & Badrick, T. (2022). Metrological traceability and clinical traceability of laboratory results - the role of commutability in External Quality Assurance. Clinical Chemistry and Laboratory Medicine, 60(5), 669-674. https://doi.org/10.1515/cclm-2022-0038

Jorhem, L. (2000). Traceability and its role in interlaboratory comparisons (proficiency testing programmes), modeled on trace element determination in biological materials. Accred Qual Assur, 5(10-11), 449-450. https://doi.org/10.1007/Pl00013509

Josephs, R. D., Martos, G., Li, M., Wu, L. Q., Melanson, J. E., Quaglia, M., Beltrao, P. J., Prevoo-Franzsen, D., Boeuf, A., Delatour, V., Oztug, M., Henrion, A., Jeongl, J. S., & Park, S. R. (2019). Establishment of measurement traceability for peptide and protein quantification through rigorous purity assessment-a review. Metrologia, 56(4). https://doi.org/ARTN04400610.1088/1681-7575/ab27e5

Kaarls, R. (2004). The CCQM and comparability and traceability in food analysis. Accreditation and Quality Assurance, 9(9), 530-532. https://doi.org/10.1007/s00769-004-0789-y

Keith, L. H. (1994). Rethinking traceability. Environmental Science & Technology, 28(13), 590A-591A. https://doi.org/10.1021/es00062a720

Kessler, A. (2016). Mass spectrometry - a key technique for traceability in clinical chemistry. Trac-Trends in Analytical Chemistry, 84, 74-79. https://doi.org/10.1016/j.trac.2016.03.017

Khatami, Z., Dey, D., & Handley, G. (2005). In the name of traceability. Ann Clin Biochem, 42(Pt 2), 162; author reply 162-163. http://www.ncbi.nlm.nih.gov/pubmed/15832469

King, B. (1997). Traceability of chemical analysis. Analyst, 122(2), 197-204. https://doi.org/10.1039/a606557k

King, B. (1997). Traceability of trace analysis. Annali Di Chimica, 87(3-4), 199-210. https://www.osti.gov/etdeweb/biblio/20232720

King, B. (2000). The practical realization of the traceability of chemical measurements standards. Accreditation and Quality Assurance, 5(10-11), 429-436. https://doi.org/10.1007/s007690000207

King, B. (2001). Meeting the measurement uncertainty and traceability requirements of ISO/IEC standard 17025 in chemical analysis. Fresenius Journal of Analytical Chemistry, 371(6), 714-720. https://doi.org/10.1007/s002160100995

King, B. (2003). Meeting ISO/IEC 17025 traceability requirements - A new guide with worked examples. Accreditation and Quality Assurance, 8(7-8), 380-382. https://doi.org/10.1007/s00769-003-0655-4

Kipphardt, H., Matschat, R., Rienitz, O., Schiel, D., Gernand, W., & Oeter, D. (2006). Traceability system for elemental analysis. Accreditation and Quality Assurance, 10(11), 633-639. https://doi.org/10.1007/s00769-005-0084-6

Kniel, K., Flugge, J., & Bosse, H. (2019). New ways of metrological traceability in length and coordinate metrology. Tm-Technisches Messen, 86(9), 487-501. https://doi.org/10.1515/teme-2019-0092

Koeber, R., Linsinger, T. P. J., & Emons, H. (2010). An approach for more precise statements of metrological traceability on reference material certificates. Accreditation and Quality Assurance, 15(4), 255-262. https://doi.org/10.1007/s00769-010-0644-2

Kose, V. (1995). Dissemination of Units in Europe - Traceability and Its Assurance in a National and Regional Context. Metrologia, 31(6), 457-466. https://doi.org/10.1088/0026-1394/31/6/005

Koumantakis, G. (2008). Traceability of measurement results. Clin Biochem Rev, 29 Suppl 1, S61-66. http://www.ncbi.nlm.nih.gov/pubmed/18852860

Kristiansen, J., & Christensen, J. M. (1998). Traceability and uncertainty in analytical measurements. Ann Clin Biochem, 35 ( Pt 3), 371-379. http://www.ncbi.nlm.nih.gov/pubmed/9635102

Kuselman, I., Anisimov, B., & Goldfeld, I. (2001). Lifetime of the traceability chain in chemical measurement. Accreditation and Quality Assurance, 6(3), 107-110. https://doi.org/10.1007/Pl00010445

Kuselman, I., Weisman, A., & Wegscheider, W. (2003). Traceability without uncertainty: current situation in the pharmaceutical industry. Accreditation and Quality Assurance, 8(11), 530-531. https://doi.org/10.1007/s00769-003-0686-9

Kytzia, H. J. (2008). How to implement traceability of creatinine results: a manufacturer's experience. Scand J Clin Lab Invest Suppl, 241, 64-66. https://doi.org/10.1080/00365510802149937

Lawn, R., & Wood, S. (2003). Meeting the traceability requirements of ISO 17025 : an analyst's guide. LGC. https://www.lgcgroup.com/media/1733/meeting-the-traceability-requirements-of-17025_an-analysts-guide.pdf

Le Goff, T., & Wood, S. (2009). Improvement of the traceability of reference materials certified for purity: evaluation of a semi-preparative high-performance liquid chromatography approach. Analytical and Bioanalytical Chemistry, 394(8), 2183-2192. https://doi.org/10.1007/s00216-009-2893-7

Lequin, R. M. (2002). Standardization: comparability and traceability of laboratory results. Clin Chem, 48(2), 391-393. http://www.clinchem.org/cgi/content/full/48/2/391

Li, C., Yang, S. C., Guo, Q. S., Zheng, K. Y., Wang, P. L., & Meng, Z. G. (2016). Geographical traceability of Marsdenia tenacissima by Fourier transform infrared spectroscopy and chemometrics. Spectrochimica Acta Part a-Molecular and Biomolecular Spectroscopy, 152, 391-396. https://doi.org/10.1016/j.saa.2015.07.086

Lim, J., Song, K. E., Song, S. H., Choi, H. J., Koo, S. H., & Kwon, G. C. (2016). Traceability Assessment and Performance Evaluation of Results for Measurement of Abbott Clinical Chemistry Assays on 4 Chemistry Analyzers. Arch Pathol Lab Med, 140(5), 467-472. https://doi.org/10.5858/arpa.2015-0088-OA

Lorefice, S. (2009). Traceability and uncertainty analysis in volume measurements. Measurement, 42(10), 1510-1515. https://doi.org/10.1016/j.measurement.2009.07.016

Lotz, J., Hafner, G., & Prellwitz, W. (1999). Reference values for a homogeneous Ferritin assay and traceability to the 3rd International Recombinant Standard for Ferritin (NIBSC code 94/572). Clin Chem Lab Med, 37(8), 821-825. https://doi.org/10.1515/CCLM.1999.123

Lovis, C. (2008). Traceability in healthcare: crossing boundaries. Yearb Med Inform, 105-113. http://www.ncbi.nlm.nih.gov/pubmed/18660885

Mari, L., & Sartori, S. (2007). A relational theory of measurement: Traceability as a solution to the non-transitivity of measurement results. Measurement, 40(2), 233-242. https://doi.org/10.1016/j.measurement.2006.06.014

Markiewicz, B., Komorowicz, I., Sajnog, A., Belter, M., & Baralkiewicz, D. (2015). Chromium and its speciation in water samples by HPLC/ICP-MS--technique establishing metrological traceability: a review since 2000. Talanta, 132, 814-828. https://doi.org/10.1016/j.talanta.2014.10.002

Matschat, R., Hinrichs, J., & Kipphardt, H. (2006). Application of glow discharge mass spectrometry to multielement ultra-trace determination in ultrahigh-purity copper and iron: a calibration approach achieving quantification and traceability. Analytical and Bioanalytical Chemistry, 386(1), 125-141. https://doi.org/10.1007/s00216-006-0645-5

Mester, C. (2018). The role of national metrology institutes, the International System of Units and the concept of traceability https://doi.org/10.23919/SMAGRIMET.2018.8369829

Middle, J. G. (2013). Journal Editors' requirements for full descriptions of laboratory methods need to include information on metrological traceability and analytical specificity. Ann Clin Biochem, 50(Pt 1), 87-88. https://doi.org/10.1177/0004563212472604

Miller, W. G., Greenberg, N., Budd, J., Delatour, V., & Met, I. W. G. C. (2021). The evolving role of commutability in metrological traceability. Clinica Chimica Acta, 514, 84-89. https://doi.org/10.1016/j.cca.2020.12.021

Mitani, Y., & Perez-Castorena, A. (2003). Practical ways in establishing traceability in chemical and other measurements in Mexico. Accreditation and Quality Assurance, 8(10), 461-466. https://doi.org/10.1007/s00769-003-0684-y

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

Muller, M. M. (2003). Traceability in laboratory medicine. Accreditation and Quality Assurance, 8(7-8), 340-345. https://doi.org/10.1007/s00769-003-0666-0

Naumann, R., Alexander-Weber, C., Eberhardt, R., Giera, J., & Spitzer, P. (2002). Traceability of pH measurements by glass electrode cells: performance characteristic of pH electrodes by multi-point calibration. Analytical and Bioanalytical Chemistry, 374(5), 778-786. https://doi.org/10.1007/s00216-002-1506-5

Neukammer, J., Gohlke, C., Kramer, B., & Roos, M. (2005). Concept for the traceability of fluorescence (beads) in flow cytometry: exploiting saturation and microscopic single molecule bleaching. J Fluoresc, 15(3), 433-441. https://doi.org/10.1007/s10895-005-2635-y

NIST. (2020). Traceability. Retrieved 2020-10-18 from https://www.nist.gov/traceability/traceability-table-contents

NIST. (2021). Supplementary Materials related to NIST Policy on Metrological Traceability. https://www.nist.gov/traceability/supplementary-materials-related-nist-policy-metrological-traceability

Nogueira, R. (2015). Metrological Traceability of Measurement Results in Pharmaceutical and Chemical Sciences: Selection and Use of Certified Reference Materials. Journal of the Brazilian Chemical Society, 26(2), 209-217. https://doi.org/10.5935/0103-5053.20140259

Nogueira, R., Silva, G. E. B., Queiroz, S. M., Mello, M. G., & Rocha, W. F. C. (2012). Traceability of measurement results in chemistry: a case study of certification of three new pharmaceutical reference materials. Accreditation and Quality Assurance, 17(5), 497-510. https://doi.org/10.1007/s00769-012-0918-y

Oussoren, W., & Visser, R. (2000). Should interlaboratory comparisons provide traceability? Accred Qual Assur, 5, 68. https://link.springer.com/article/10.1007/s007690050014

Panteghini, M. (2007). Traceability, reference systems and result comparability. Clin Biochem Rev, 28(3), 97-104. http://www.ncbi.nlm.nih.gov/pubmed/17909614

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. (2010). Application of traceability concepts to analytical quality control may reconcile total error with uncertainty of measurement. Clin Chem Lab Med, 48(1), 7-10. https://doi.org/10.1515/CCLM.2010.020

Panteghini, M., & Braga, F. (2020). Implementation of metrological traceability in laboratory medicine: where we are and what is missing. Clinical Chemistry and Laboratory Medicine, 58(8), 1200-1204. https://doi.org/10.1515/cclm-2019-1128

Panteghini, M., Braga, F., Camara, J. E., Delatour, V., Van Uytfanghe, K., Vesper, H. W., Zhang, T. J., & Measure, J. T. F. R. (2021). Optimizing Available Tools for Achieving Result Standardization: Value Added by Joint Committee on Traceability in Laboratory Medicine (JCTLM). Clin Chem, 67(12), 1590-1605. https://doi.org/10.1093/clinchem/hvab178

Panteghini, M., Myers, G. L., Miller, W. G., & Greenberg, N. (2006). The importance of metrological traceability on the validity of creatinine measurement as an index of renal function. Clinical Chemistry and Laboratory Medicine, 44(10), 1287-1292. https://doi.org/10.1515/Cclm.2006.234

Pauwels, J., & Squirrell, A. (2000). "Virtual traceability". Accreditation and Quality Assurance, 5(2), 67-67. https://doi.org/10.1007/s007690050013

Peiser, H. S., & De Bievre, P. (1999). Traceability in measurement - time for an update? Accreditation and Quality Assurance, 4(4), 154-155. https://doi.org/10.1007/s007690050337

Pendrill, L. R. (2005). Meeting future needs for metrological traceability - a physicist's view. Accreditation and Quality Assurance, 10(4), 133-139. https://doi.org/10.1007/s00769-004-0894-y

Peres, B., Barlet, N., Loiseau, G., & Montet, D. (2007). Review of the current methods of analytical traceability allowing determination of the origin of foodstuffs. Food Control, 18(3), 228-235. https://doi.org/10.1016/j.foodcont.2005.09.018

Philipona, R. (2015). Comment on "A new absolute reference for atmospheric longwave irradiance measurements with traceability to SI units" by Grobner et al. Journal of Geophysical Research-Atmospheres, 120(14), 6882-6884. https://doi.org/10.1002/2014jd022990

Possolo, A., Bruce, S. S., & Watters, R. L. (2021). Metrological Traceability Frequently Asked Questions and NIST Policy. https://nvlpubs.nist.gov/nistpubs/TechnicalNotes/NIST.TN.2156.pdf

Prenesti, E., Fisicaro, P., Berto, S., Ferrara, E., & Daniele, P. G. (2007). Monitoring the traceability of the pH of a primary tetraborate buffer: comparison of results from primary and secondary apparatus. Analytical and Bioanalytical Chemistry, 387(7), 2595-2600. https://doi.org/10.1007/s00216-007-1117-2

Price, G. (2003). Traceability to units. Accreditation and Quality Assurance, 8(10), 475-476. https://doi.org/10.1007/s00769-003-0599-7

Priel, M., Amarouche, S., & Fisicaro, P. (2009). Metrological traceability is not always a straight line. Accreditation and Quality Assurance, 14(11), 593-599. https://doi.org/10.1007/s00769-009-0540-9

Quevauviller, P. (2004). Challenges for achieving traceability of environmental measurements. Trac-Trends in Analytical Chemistry, 23(3), Xi-Xii. https://doi.org/10.1016/S0165-9936(04)00315-2

Quevauviller, P. (2005). Traceability of environmental chemical analyses: can theory match practice? Analytical and Bioanalytical Chemistry, 382(8), 1800-1807. https://doi.org/10.1007/s00216-005-3384-0

Quinn, T. J. (1994). Traceability of Mass Standards among 39 Member States of the Convention-Du-Meter. Metrologia, 31(4), 337-337. https://doi.org/10.1088/0026-1394/31/4/008

Quinn, T. J. (1995). Base Units of the Systeme-International-Dunites, Their Accuracy, Dissemination and International Traceability. Metrologia, 31(6), 515-527. https://doi.org/10.1088/0026-1394/31/6/011

Rasberry, S. (2001). Proficiency evaluation as a traceability link in chemical metrology. Accreditation and Quality Assurance, 6(6), 252-256. https://doi.org/10.1007/s007690000299

Reed, W. P. (1995). Quality and the Development of Reference Materials, Including the Role of Traceability and Comparability. Fresenius Journal of Analytical Chemistry, 352(1-2), 250-254. https://doi.org/10.1007/Bf00322337

Reed, W. P. (1998). Traceability, is it what we really want in our chemical measurements? Accreditation and Quality Assurance, 3(9), 350-350. https://doi.org/10.1007/s007690050259

Richter, W., & Guttler, B. (2003). A national traceability system for chemical measurements. Accreditation and Quality Assurance, 8(10), 448-453. https://doi.org/10.1007/s00769-003-0682-0

Ricos, C., Juvany, R., Simon, M., Hernandez, A., Alvarez, V., Jimenez, C. V., Minchinela, J., & Perich, C. (1999). Commutability and traceability: their repercussions on analytical bias and inaccuracy. Clin Chim Acta, 280(1-2), 135-145. http://www.ncbi.nlm.nih.gov/pubmed/10090531

Ricos, C., Serrano, M., Alvarez, V., Minchinela, J., Perich, C., Jimenez, C. V., Simon, M., & Hernandez, A. (1996). A practical approach to minimizing inaccuracy through traceability, using limited resources. Ann Clin Biochem, 33 ( Pt 2), 139-145. http://www.ncbi.nlm.nih.gov/pubmed/8729722

Ridler, N., Lee, B., Martens, J., & Wong, K. (2007). Measurement, uncertainty, traceability, and the GUM. Ieee Microwave Magazine, 8(4), 44-53. https://doi.org/10.1109/Mmm.2007.900114

Ridler, N. M., & Clarke, R. G. (2016). Establishing Traceability to the International System of Units for Scattering Parameter Measurements From 750 GHz to 1.1 THz. Ieee Transactions on Terahertz Science and Technology, 6(1), 2-11. https://doi.org/10.1109/Tthz.2015.2502068

Ridler, N. M., & Medley, J. C. (1996). Improving the traceability of coaxial impedance measurements at lower RF in the UK. Iee Proceedings-Science Measurement and Technology, 143(4), 241-245. https://doi.org/10.1049/ip-smt:19960524

Rigo-Bonnin, R., Alia, P., & Canalias, F. (2018). Measurement uncertainty and metrological traceability of whole blood cyclosporin A mass concentration results obtained by UHPLC-MS/MS. Clinical Chemistry and Laboratory Medicine, 56(9), 1458-1468. https://doi.org/10.1515/cclm-2018-0120

Sargent, M. (2020a). The provision and use of traceability statements for reference materials. Accreditation and Quality Assurance, 25(5-6), 367-372. https://doi.org/10.1007/s00769-020-01450-8

Sargent, M. (2020b). Traceability in analytical atomic spectrometry: elemental analysis comes full circle. Journal of Analytical Atomic Spectrometry, 35(11), 2479-2486. https://doi.org/10.1039/d0ja00236d

Schwagele, F. (2005). Traceability from a European perspective. Meat Sci, 71(1), 164-173. https://doi.org/10.1016/j.meatsci.2005.03.002

Sega, M., Plassa, M., & de Meane, E. A. (2001). Traceability in routine chemical measurements: an example of application in the determination of CO2 at atmospheric concentration. Accreditation and Quality Assurance, 6(7), 306-309. https://doi.org/10.1007/s007690100315

Serta Fraga, I. C., Ribeiro, C. M., Sobral, S. P., Dias, J. C., Goncalves, M. A., Borges, P. P., & Gonzaga, F. B. (2012). Certified reference material of bioethanol for metrological traceability in electrochemical parameters analyses. Talanta, 99, 99-103. https://doi.org/10.1016/j.talanta.2012.05.024

Siekmann, L. (2004). Establishing measurement traceability in clinical chemistry. Accreditation and Quality Assurance, 9(1-2), 5-17. https://doi.org/10.1007/s00769-003-0718-5

Siekmann, L. (2006). Networks of reference measurement laboratories in laboratory medicine - activities of the Joint Committee on Traceability (JCTLM, WG-2). Accreditation and Quality Assurance, 11(5), 224-230. https://doi.org/10.1007/s00769-006-0120-1

Siekmann, L. (2009). Implementation of the concept of traceability in laboratory medicine in external quality assessment. Clinical biochemistry, 42(4-5), 293-294. https://doi.org/10.1016/j.clinbiochem.2008.09.014

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

Smit, N. P., Romijn, F. P., van den Broek, I., Drijfhout, J. W., Haex, M., van der Laarse, A., van der Burgt, Y. E., & Cobbaert, C. M. (2014). Metrological traceability in mass spectrometry-based targeted protein quantitation: a proof-of-principle study for serum apolipoproteins A-I and B100. J Proteomics, 109, 143-161. https://doi.org/10.1016/j.jprot.2014.06.015

Smith, G. C., Tatum, J. D., Belk, K. E., Scanga, J. A., Grandin, T., & Sofos, J. N. (2005). Traceability from a US perspective. Meat Sci, 71(1), 174-193. https://doi.org/10.1016/j.meatsci.2005.04.002

Sperlingova, I., Dabrowska, L., Tichy, M., & Kucera, J. (2001). Problems of traceability of total protein and catecholamine determinations in human urine. Accreditation and Quality Assurance, 6, 302-305. https://doi.org/10.1007/3-540-27093-0_36

Spitzer, P., Eberhardt, R., Schmidt, I., & Sudmeier, U. (1996). Improved traceability of pH measurements. Analytical and Bioanalytical Chemistry, 356(3-4), 178-181. https://doi.org/10.1007/s0021663560178

Stephan, C., Kahrs, A. M., Klotzek, S., Reiche, J., Muller, C., Lein, M., Deger, S., Miller, K., & Jung, K. (2008). Toward metrological traceability in the determination of prostate-specific antigen (PSA): calibrating Beckman Coulter Hybritech Access PSA assays to WHO standards compared with the traditional Hybritech standards. Clin Chem Lab Med, 46(5), 623-629. http://www.ncbi.nlm.nih.gov/pubmed/18839463

Straub, M., Pittet, P. A., Amzalag, G., Bochud, F., Baechler, S., & Froidevaux, P. (2018). Determination of Ra-226 at low levels in environmental, urine, and human bone samples and Ra-223 in bone biopsy using alpha-spectrometry and metrological traceability to Th-229/Ra-225 or Ra-226. Anal Chim Acta, 1031, 178-184. https://doi.org/10.1016/j.aca.2018.05.007

Szoke, D., Carnevale, A., Pasqualetti, S., Braga, F., Paleari, R., & Panteghini, M. (2015). More on the accuracy of the Architect enzymatic assay for hemoglobin A1c and its traceability to the IFCC reference system. Clin Chem Lab Med. https://doi.org/10.1515/cclm-2015-0550

Takatsuji, T., Watanabe, H., & Yamashita, Y. (2019). Blockchain technology to visualize the metrological traceability. Precision Engineering-Journal of the International Societies for Precision Engineering and Nanotechnology, 58, 1-6. https://doi.org/10.1016/j.precisioneng.2019.04.016

Tanimoto, H., Mukai, H., Sawa, Y., Matsueda, H., Yonemura, S., Wang, T., Poon, S., Wong, A., Lee, G., Jung, J. Y., Kim, K. R., Lee, M. H., Lin, N. H., Wang, J. L., Ou-Yang, C. F., Wu, C. F., Akimoto, H., Pochanart, P., Tsuboi, K., . . . Klausen, J. (2007). Direct assessment of international consistency of standards for ground-level ozone: strategy and implementation toward metrological traceability network in Asia. J Environ Monit, 9(11), 1183-1193. https://doi.org/10.1039/b701230f

Taverniers, I., Van Bockstaele, E., & De Loose, M. (2004). Trends in quality in the analytical laboratory. I. Traceability and measurement uncertainty of analytical results. Trac-Trends in Analytical Chemistry, 23(7), 480-490. https://doi.org/10.1016/s0165-9936(04)00733-2

Taylor, P. (2004). One way of disseminating reference values with demonstrated traceability and demonstrated uncertainty to field laboratories: IMEP. Accreditation and Quality Assurance, 9(1-2), 24-32. https://doi.org/10.1007/s00769-003-0715-8

Thelen, M., Vanstapel, F., Brguljan, P. M., Gouget, B., Boursier, G., Barrett, E., Kroupis, C., Lohmander, M., Sprongl, L., Vodnik, T., Bernabeu-Andreu, F., Vukasovic, I., Sonmez, C., Linko, S., Brugnoni, D., Vaubourdolle, M., Huisman, W., Panteghini, M., & Lab, E. F. C. C. (2019). Documenting metrological traceability as intended by ISO 15189:2012: A consensus statement about the practice of the implementation and auditing of this norm element. Clinical Chemistry and Laboratory Medicine, 57(4), 459-464. https://doi.org/10.1515/cclm-2018-1212

Thienpont, L. M., & Van Houcke, S. K. (2010). Traceability to a common standard for protein measurements by immunoassay for in-vitro diagnostic purposes. Clin Chim Acta, 411(23-24), 2058-2061. https://doi.org/10.1016/j.cca.2010.09.001

Thienpont, L. M., Van Uytfanghe, K., Marriot, J., Stokes, P., Siekmann, L., Kessler, A., Bunk, D., & Tai, S. (2005). Metrologic traceability of total thyroxine measurements in human serum: Efforts to establish a network of reference measurement laboratories. Clin Chem, 51(1), 161-168. https://doi.org/10.1373/clinchem.2004.041772 

Thienpont, L. M., Van Uytfanghe, K., & Rodriguez Cabaleiro, D. (2004). Metrological traceability of calibration in the estimation and use of common medical decision-making criteria. Clin Chem Lab Med, 42(7), 842-850. https://doi.org/10.1515/CCLM.2004.138

Thompson, M. (1996). Sense and traceability. Analyst, 121(3), 285-288. https://doi.org/10.1039/an9962100285

Thompson, M. (1997). Comparability and traceability in analytical measurements and reference materials. Analyst, 122(11), 1201-1205. https://doi.org/10.1039/a704906d

Thompson, M. (2012). Traceability in perspective. Accreditation and Quality Assurance, 17(3), 353-354. https://doi.org/10.1007/s00769-011-0866-y

Toussaint, B., Emons, H., Schimmel, H. G., Bossert-Reuther, S., Canalias, F., Ceriotti, F., Ferard, G., Ferrero, C. A., Franck, P. F., Gella, F. J., Henny, J., Jorgensen, P. J., Klauke, R., Lessinger, J. M., Mazziotta, D., Panteghini, M., Ueda, S., & Schumann, G. (2010). Traceability of values for catalytic activity concentration of enzymes: a Certified Reference Material for aspartate transaminase. Clin Chem Lab Med, 48(6), 795-803. https://doi.org/10.1515/CCLM.2010.146

Usui, S., Nakamura, M., Jitsukata, K., Nara, M., Hosaki, S., & Okazaki, M. (2000). Assessment of between-instrument variations in a HPLC method for serum lipoproteins and its traceability to reference methods for total cholesterol and HDL-cholesterol. Clin Chem, 46(1), 63-72. http://www.ncbi.nlm.nih.gov/pubmed/10620573

Valcarcel, M., & Rios, A. (1995). Traceability in Analytical-Chemistry. Analyst, 120(8), 2291-2297. https://doi.org/10.1039/an9952002291

Valcarcel, M., & Rios, A. (1997). Is traceability an exclusive property of analytical results? An extended approach to traceability in chemical analysis. Fresenius Journal of Analytical Chemistry, 359(6), 473-475. https://doi.org/10.1007/s002160050615

Valcárel, M., & Rícos, A. (1999). Traceability in chemical measurements for the end users. Trends Analyt. Chem., 18(9+10), 570-576. https://doi.org/10.1016/S0165-9936(99)00157-0

van der Hagen, E. A. E., Weykamp, C., Sandberg, S., Stavelin, A. V., MacKenzie, F., & Miller, W. G. (2021). Feasibility for aggregation of commutable external quality assessment results to evaluate metrological traceability and agreement among results. Clinical Chemistry and Laboratory Medicine, 59(1), 117-125. https://doi.org/10.1515/cclm-2020-0736

van der Veen, A. M. H. (2004). Measurement uncertainty and doping control in sport. Part 2: Metrological traceability aspects. Accreditation and Quality Assurance, 9(6), 311-316. https://doi.org/10.1007/s00769-004-0774-5

van Rijswijk, W., Frewer, L. J., Menozzi, D., & Faioli, G. (2008). Consumer perceptions of traceability: A cross-national comparison of the associated benefits. Food Quality and Preference, 19(5), 452-464. https://doi.org/10.1016/j.foodqual.2008.02.001

Velichko, O. N. (2009). Traceability of Measurement Results at Different Levels of Metrological Work. Measurement Techniques, 52(11), 1242-1248. https://link.springer.com/article/10.1007/s11018-010-9428-7

Vermeer, N. S., Straus, S. M., Mantel-Teeuwisse, A. K., Domergue, F., Egberts, T. C., Leufkens, H. G., & De Bruin, M. L. (2013). Traceability of biopharmaceuticals in spontaneous reporting systems: a cross-sectional study in the FDA Adverse Event Reporting System (FAERS) and EudraVigilance databases. Drug Saf, 36(8), 617-625. https://doi.org/10.1007/s40264-013-0073-3

Vesper, H. W., & Thienpont, L. M. (2009). Traceability in laboratory medicine. Clin Chem, 55(6), 1067-1075. https://doi.org/10.1373/clinchem.2008.107052

Volkert, E. (2004). Implementation of traceability - needs and perspective of the in-vitro-diagnosticum industry. Accreditation and Quality Assurance, 9(4-5), 237-238. https://doi.org/10.1007/s00769-003-0748-z

Voorhuijzen, M. M., van Dijk, J. P., Prins, T. W., Van Hoef, A. M., Seyfarth, R., & Kok, E. J. (2012). Development of a multiplex DNA-based traceability tool for crop plant materials. Analytical and Bioanalytical Chemistry, 402(2), 693-701. https://doi.org/10.1007/s00216-011-5534-x

Wallard, A. (2003). Traceability issues in measurement. Accreditation and Quality Assurance, 8(7-8), 319-322. https://doi.org/10.1007/s00769-002-0567-7

Wang, L. Z., & Han, Q. (2002). Primary reference materials and traceability chain for gas composition. Accreditation and Quality Assurance, 7(5), 217-219. https://doi.org/10.1007/s00769-001-0428-9

Weykamp, C. (2010). The traceability chain in medical laboratories: a long and winding road, the example of HbA(1c). Accreditation and Quality Assurance, 15(1), 3-7. https://doi.org/10.1007/s00769-009-0597-5

White, G. H. (2011). Metrological traceability in clinical biochemistry. Ann Clin Biochem, 48(Pt 5), 393-409. https://doi.org/10.1258/acb.2011.011079

Williams, A. (2000). What can we learn from traceability in physical measurements? Accreditation and Quality Assurance, 5(10-11), 414-417. https://doi.org/10.1007/s007690000218

Williams, A. (2001). Traceability and uncertainty - A comparison of their application in chemical and physical measurement. Accreditation and Quality Assurance, 6(2), 73-75. https://doi.org/10.1007/s007690000255

Witt, K., Wolf, H. U., Heuck, C., Kammel, M., Kummrow, A., & Neukammer, J. (2013). Establishing traceability of photometric absorbance values for accurate measurements of the haemoglobin concentration in blood. Metrologia, 50(5), 539-548. https://doi.org/10.1088/0026-1394/50/5/539

Wölkert, E. (2004). Implementation of traceability - needs and perspective of the in-vitro-diagnosticum industry. Accred Qual Assur, 9, 237-238. https://link.springer.com/article/10.1007/s00769-003-0748-z

Woods, M. J. (1998). Traceability, equivalence and quality assurance. Applied Radiation and Isotopes, 49(9-11), 1445-1447. https://doi.org/10.1016/S0969-8043(97)10089-6

Wuyts, B., Bernard, D., Van den Noortgate, N., Van de Walle, J., Van Vlem, B., De Smet, R., De Geeter, F., Vanholder, R., Libeer, J. C., & Delanghe, J. (2004). The impact of metrological traceability on the validity of creatinine measurement as an index of renal function. Accreditation and Quality Assurance, 10(1-2), 15-19. https://doi.org/10.1007/s00769-004-0867-1

Xia, C., Tong, Q., Wang, Q., Tang, Z., Qi, L., Chi, S., Zhang, M., Wang, X., Li, H., & Xu, G. (2010). Application of five frozen human-pooled serum samples assigned by the International Federation of Clinical Chemistry and Laboratory Medicine reference procedure in a traceability investigation of gamma-glutamyltransferase catalytic concentration measurements in China. Ann Clin Biochem, 47(Pt 3), 189-194. https://doi.org/10.1258/acb.2009.009210

Xia, C. Y., Tong, Q., Wang, Q. T., Tang, Z. L., Qi, L. L., Chi, S., Zhang, M., Wang, X. J., Li, H. X., & Xu, G. B. (2010). Application of five frozen human-pooled serum samples assigned by the International Federation of Clinical Chemistry and Laboratory Medicine reference procedure in a traceability investigation of gamma-glutamyltransferase catalytic concentration measurements in China. Ann Clin Biochem, 47, 189-194. https://doi.org/10.1258/acb.2009.009210

Zeleny, R., & Schimmel, H. (2012). Influence of the approach to calibration on the accuracy and the traceability of certified values in certified reference materials. Trac-Trends in Analytical Chemistry, 33, 107-116. https://doi.org/10.1016/j.trac.2011.10.009