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Widespread Incorrect Implementation of the Hoffmann Method, the Correct Approach, and Modern Alternatives
by
Holmes, Daniel T
, Buhr, Kevin A
in
Computer Simulation
/ Datasets
/ Diagnosis, Laboratory
/ Health aspects
/ Humans
/ Likelihood Functions
/ Male
/ Methods
/ Models, Statistical
/ Probability
/ Reference Values
/ Reference values (Medicine)
/ Research Design
/ Simulation
/ Statistical methods
/ Statistics as Topic
2019
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Widespread Incorrect Implementation of the Hoffmann Method, the Correct Approach, and Modern Alternatives
by
Holmes, Daniel T
, Buhr, Kevin A
in
Computer Simulation
/ Datasets
/ Diagnosis, Laboratory
/ Health aspects
/ Humans
/ Likelihood Functions
/ Male
/ Methods
/ Models, Statistical
/ Probability
/ Reference Values
/ Reference values (Medicine)
/ Research Design
/ Simulation
/ Statistical methods
/ Statistics as Topic
2019
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Do you wish to request the book?
Widespread Incorrect Implementation of the Hoffmann Method, the Correct Approach, and Modern Alternatives
by
Holmes, Daniel T
, Buhr, Kevin A
in
Computer Simulation
/ Datasets
/ Diagnosis, Laboratory
/ Health aspects
/ Humans
/ Likelihood Functions
/ Male
/ Methods
/ Models, Statistical
/ Probability
/ Reference Values
/ Reference values (Medicine)
/ Research Design
/ Simulation
/ Statistical methods
/ Statistics as Topic
2019
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Widespread Incorrect Implementation of the Hoffmann Method, the Correct Approach, and Modern Alternatives
Journal Article
Widespread Incorrect Implementation of the Hoffmann Method, the Correct Approach, and Modern Alternatives
2019
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Overview
Abstract
Objectives
The Hoffmann method is a procedure for reference interval estimation using routine clinical results. Many authors incorrectly prepare Hoffmann plots on a linear rather than normal probability scale. We explore the consequences.
Methods
This was investigated algebraically, by random number simulations (45 simulations, n = 100,000 each) and using clinical data sets. Strategies compared were: Hoffmann’s method as originally and incorrectly implemented, Bhattacharya’s method, and maximum likelihood (ML). All R source code and data sets are provided.
Results
As the proportion of healthy individuals approaches 1, the incorrect approach generates reference interval estimates of approximately μH ± 1.19 σH delineating the central 77% of the healthy subpopulation, not the central 95%. Inappropriately narrow reference interval estimates were seen on random simulations and clinical data sets. ML methods performed best.
Conclusions
The erroneous variant Hoffmann method should not be used. ML methods outperform others and are not restricted by Gaussian assumptions.
Publisher
Oxford University Press
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