How to compare small multivariate samples using nonparametric tests

In the life sciences and other research fields, experiments are often conducted to determine responses of subjects to various treatments. Typically, such data are multivariate, where different variables may be measured on different scales that can be quantitative, ordinal, or mixed. To analyze these...

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Vydáno v:Computational statistics & data analysis Ročník 52; číslo 11; s. 4951 - 4965
Hlavní autoři: Bathke, Arne C., Harrar, Solomon W., Madden, Laurence V.
Médium: Journal Article
Jazyk:angličtina
Vydáno: Amsterdam Elsevier B.V 15.07.2008
Elsevier Science
Elsevier
Edice:Computational Statistics & Data Analysis
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ISSN:0167-9473, 1872-7352
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Abstract In the life sciences and other research fields, experiments are often conducted to determine responses of subjects to various treatments. Typically, such data are multivariate, where different variables may be measured on different scales that can be quantitative, ordinal, or mixed. To analyze these data, we present different nonparametric (rank-based) tests for multivariate observations in balanced and unbalanced one-way layouts. Previous work has led to the development of tests based on asymptotic theory, either for large numbers of samples or groups; however, most experiments comprise only small or moderate numbers of experimental units in each individual group or sample. Here, we investigate several tests based on small-sample approximations, and compare their performance in terms of α levels and power for different simulated situations, with continuous and discrete observations. For positively correlated responses, an approximation based on [Brunner, E., Dette, H., Munk, A., 1997. Box-type approximations in nonparametric factorial designs. J. Amer. Statist. Assoc. 92, 1494–1502] ANOVA-Type statistic performed best; for responses with negative correlations, in general, an approximation based on the Lawley–Hotelling type test performed best. We demonstrate the use of the tests based on the approximations for a plant pathology experiment.
AbstractList In the life sciences and other research fields, experiments are often conducted to determine responses of subjects to various treatments. Typically, such data are multivariate, where different variables may be measured on different scales that can be quantitative, ordinal, or mixed. To analyze these data, we present different nonparametric (rank-based) tests for multivariate observations in balanced and unbalanced one-way layouts. Previous work has led to the development of tests based on asymptotic theory, either for large numbers of samples or groups; however, most experiments comprise only small or moderate numbers of experimental units in each individual group or sample. Here, we investigate several tests based on small-sample approximations, and compare their performance in terms of [alpha] levels and power for different simulated situations, with continuous and discrete observations. For positively correlated responses, an approximation based on [Brunner, E., Dette, H., Munk, A., 1997. Box-type approximations in nonparametric factorial designs. J. Amer. Statist. Assoc. 92, 1494-1502] ANOVA-Type statistic performed best; for responses with negative correlations, in general, an approximation based on the Lawley-Hotelling type test performed best. We demonstrate the use of the tests based on the approximations for a plant pathology experiment.
In the life sciences and other research fields, experiments are often conducted to determine responses of subjects to various treatments. Typically, such data are multivariate, where different variables may be measured on different scales that can be quantitative, ordinal, or mixed. To analyze these data, we present different nonparametric (rank-based) tests for multivariate observations in balanced and unbalanced one-way layouts. Previous work has led to the development of tests based on asymptotic theory, either for large numbers of samples or groups; however, most experiments comprise only small or moderate numbers of experimental units in each individual group or sample. Here, we investigate several tests based on small-sample approximations, and compare their performance in terms of α levels and power for different simulated situations, with continuous and discrete observations. For positively correlated responses, an approximation based on [Brunner, E., Dette, H., Munk, A., 1997. Box-type approximations in nonparametric factorial designs. J. Amer. Statist. Assoc. 92, 1494–1502] ANOVA-Type statistic performed best; for responses with negative correlations, in general, an approximation based on the Lawley–Hotelling type test performed best. We demonstrate the use of the tests based on the approximations for a plant pathology experiment.
Author Bathke, Arne C.
Harrar, Solomon W.
Madden, Laurence V.
Author_xml – sequence: 1
  givenname: Arne C.
  surname: Bathke
  fullname: Bathke, Arne C.
  email: arne@uky.edu
  organization: Department of Statistics, University of Kentucky, United States
– sequence: 2
  givenname: Solomon W.
  surname: Harrar
  fullname: Harrar, Solomon W.
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  givenname: Laurence V.
  surname: Madden
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  organization: Department of Plant Pathology, Ohio State University, United States
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Issue 11
Keywords Correlation
Large sample
Non parametric estimation
Multivariate analysis
Statistical test
Law of large numbers
Sample survey
Rank test
Hotelling test
Discriminant analysis
Data analysis
Non parametric test
Covariance analysis
Asymptotic behavior
Statistical association
Variance analysis
Statistical method
Statistical regression
Sampling theory
Statistical computation
Experimental unit
Correlation analysis
Experimental design
Small sample
Asymptotic approximation
Factorial design
Number theory
Language English
License https://www.elsevier.com/tdm/userlicense/1.0
CC BY 4.0
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Snippet In the life sciences and other research fields, experiments are often conducted to determine responses of subjects to various treatments. Typically, such data...
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SubjectTerms Exact sciences and technology
General topics
Mathematics
Multivariate analysis
Numerical analysis
Numerical analysis. Scientific computation
Numerical methods in probability and statistics
Parametric inference
Probability and statistics
Sciences and techniques of general use
Statistics
Title How to compare small multivariate samples using nonparametric tests
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