Variable selection and model choice in structured survival models
Benjamin Hofner (),
Torsten Hothorn and
Thomas Kneib
Computational Statistics, 2013, vol. 28, issue 3, 1079-1101
Abstract:
We aim at modeling the survival time of intensive care patients suffering from severe sepsis. The nature of the problem requires a flexible model that allows to extend the classical Cox-model via the inclusion of time-varying and nonparametric effects. These structured survival models are very flexible but additional difficulties arise when model choice and variable selection are desired. In particular, it has to be decided which covariates should be assigned time-varying effects or whether linear modeling is sufficient for a given covariate. Component-wise boosting provides a means of likelihood-based model fitting that enables simultaneous variable selection and model choice. We introduce a component-wise, likelihood-based boosting algorithm for survival data that permits the inclusion of both parametric and nonparametric time-varying effects as well as nonparametric effects of continuous covariates utilizing penalized splines as the main modeling technique. An empirical evaluation of the methodology precedes the model building for the severe sepsis data. A software implementation is available to the interested reader. Copyright Springer-Verlag 2013
Keywords: Hazard regression; Likelihood-based boosting; Model choice; P-splines; Smooth effects; Time-varying effects (search for similar items in EconPapers)
Date: 2013
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Citations: View citations in EconPapers (3)
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Persistent link: https://EconPapers.repec.org/RePEc:spr:compst:v:28:y:2013:i:3:p:1079-1101
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DOI: 10.1007/s00180-012-0337-x
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