JOURNAL ARTICLE

Selection Strategy for Covariance Structure of Random Effects in Linear Mixed‐effects Models

Xinyu ZhangHua LiangAnna LiuDavid RuppertGuohua Zou

Year: 2015 Journal:   Scandinavian Journal of Statistics Vol: 43 (1)Pages: 275-291   Publisher: Wiley

Abstract

Abstract Linear mixed‐effects models are a powerful tool for modelling longitudinal data and are widely used in practice. For a given set of covariates in a linear mixed‐effects model, selecting the covariance structure of random effects is an important problem. In this paper, we develop a joint likelihood‐based selection criterion. Our criterion is the approximately unbiased estimator of the expected Kullback–Leibler information. This criterion is also asymptotically optimal in the sense that for large samples, estimates based on the covariance matrix selected by the criterion minimize the approximate Kullback–Leibler information. Finite sample performance of the proposed method is assessed by simulation experiments. As an illustration, the criterion is applied to a data set from an AIDS clinical trial.

Keywords:
Mathematics Covariance Estimator Best linear unbiased prediction Mixed model Covariance matrix Information Criteria Generalized linear mixed model Model selection Selection (genetic algorithm) Linear model Covariate Statistics Random effects model Applied mathematics Data set Estimation of covariance matrices Kullback–Leibler divergence Computer science Artificial intelligence

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5
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0.43
FWCI (Field Weighted Citation Impact)
37
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0.68
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Citation History

Topics

Statistical Methods and Bayesian Inference
Physical Sciences →  Mathematics →  Statistics and Probability
Statistical Methods and Inference
Physical Sciences →  Mathematics →  Statistics and Probability
Advanced Causal Inference Techniques
Physical Sciences →  Mathematics →  Statistics and Probability

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