Literature DB >> 28796637

The use of error and uncertainty methods in the medical laboratory.

Wytze P Oosterhuis1, Hassan Bayat2, David Armbruster3, Abdurrahman Coskun4, Kathleen P Freeman5, Anders Kallner6, David Koch7, Finlay Mackenzie8, Gabriel Migliarino9, Matthias Orth10, Sverre Sandberg11, Marit S Sylte12, Sten Westgard13, Elvar Theodorsson14.   

Abstract

Error methods - compared with uncertainty methods - offer simpler, more intuitive and practical procedures for calculating measurement uncertainty and conducting quality assurance in laboratory medicine. However, uncertainty methods are preferred in other fields of science as reflected by the guide to the expression of uncertainty in measurement. When laboratory results are used for supporting medical diagnoses, the total uncertainty consists only partially of analytical variation. Biological variation, pre- and postanalytical variation all need to be included. Furthermore, all components of the measuring procedure need to be taken into account. Performance specifications for diagnostic tests should include the diagnostic uncertainty of the entire testing process. Uncertainty methods may be particularly useful for this purpose but have yet to show their strength in laboratory medicine. The purpose of this paper is to elucidate the pros and cons of error and uncertainty methods as groundwork for future consensus on their use in practical performance specifications. Error and uncertainty methods are complementary when evaluating measurement data.

Keywords:  measurement uncertainty; performance specification; quality control; total error

Mesh:

Year:  2018        PMID: 28796637     DOI: 10.1515/cclm-2017-0341

Source DB:  PubMed          Journal:  Clin Chem Lab Med        ISSN: 1434-6621            Impact factor:   3.694


  8 in total

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Authors:  Wing-Sum Chan; George Fai Wong; Chi-Wai Hung; Yau-Nga Wong; Kit-Mai Fung; Wai-Kit Lee; Kwok-Leung Dao; Chung-Wing Leung; Kam-Moon Lo; Wing-Man Lee; Bobbie Kwok-Keung Cheung
Journal:  Forensic Sci Int       Date:  2020-05-23       Impact factor: 2.395

2.  Biochemical screening of intellectually disabled and healthy children in Punjab, Pakistan: differences in liver function test and lipid profiles.

Authors:  Muhammad Wasim; Haq Nawaz Khan; Hina Ayesha; Fazli Rabbi Awan
Journal:  Int J Dev Disabil       Date:  2019-01-15

3.  Comparison between Sigma metrics in four accredited Egyptian medical laboratories in some biochemical tests: an initiative towards sigma calculation harmonization.

Authors:  Rania El Sharkawy; Sten Westgard; Ahmed M Awad; AbdelKarem Omneya I Ahmed; El Hadidi Iman; Ahmed Gaballah; Eman Shaheen
Journal:  Biochem Med (Zagreb)       Date:  2018-06-15       Impact factor: 2.313

Review 4.  Sigma metrics in laboratory medicine revisited: We are on the right road with the wrong map.

Authors:  Wytze P Oosterhuis; Abdurrahman Coskun
Journal:  Biochem Med (Zagreb)       Date:  2018-06-15       Impact factor: 2.313

Review 5.  Analytical Sigma metrics: A review of Six Sigma implementation tools for medical laboratories.

Authors:  Sten Westgard; Hassan Bayat; James O Westgard
Journal:  Biochem Med (Zagreb)       Date:  2018-06-15       Impact factor: 2.313

6.  Uncertainty of Measurement in Laboratory Medicine.

Authors:  Neda Milinković; Svetlana Ignjatović; Zorica Šumarac; Nada Majkić-Singh
Journal:  J Med Biochem       Date:  2018-07-01       Impact factor: 3.402

Review 7.  Estimation of the measurement uncertainty and practical suggestion for the description of the metrological traceability in clinical laboratories.

Authors:  Raúl Rigo-Bonnin; Noelia Díaz-Troyano; Laura García-Tejada; Albert Marcè-Galindo; Míriam Valbuena-Asensio; Francesca Canalias
Journal:  Biochem Med (Zagreb)       Date:  2020-12-15       Impact factor: 2.313

8.  Unsupervised Hierarchical Classification Approach for Imprecise Data in the Breast Cancer Detection.

Authors:  Mario Fordellone; Paolo Chiodini
Journal:  Entropy (Basel)       Date:  2022-07-03       Impact factor: 2.738

  8 in total

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